query_id stringlengths 26 53 | case_id stringlengths 17 44 | raw_text stringlengths 334 505 | parsed_text stringlengths 590 778 | video video 9.5 23.5 |
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buoyancy2d_Re1025_s033__full__0 | buoyancy2d_Re1025_s033 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9845 by 0.9777, the Reynolds number is about 1025, the reference velocity is about 0.00743, the kinematic viscosity is about 0.0004878, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1100_s013_r2__full__0 | buoyancy2d_Re1100_s013_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.002 by 1.005, the Reynolds number is about 1100, the reference velocity is about 0.02434, the kinematic viscosity is about 0.0004545, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1100_s034__full__0 | buoyancy2d_Re1100_s034 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.044 by 0.9478, the Reynolds number is about 1100, the reference velocity is about 0.01457, the kinematic viscosity is about 0.0004545, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1175_s035__full__0 | buoyancy2d_Re1175_s035 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.033 by 0.995, the Reynolds number is about 1175, the reference velocity is about 0.003578, the kinematic viscosity is about 0.0004255, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1250_s014_r2__full__0 | buoyancy2d_Re1250_s014_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.007 by 1.073, the Reynolds number is about 1250, the reference velocity is about 0.002064, the kinematic viscosity is about 0.0004, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re125_s000__full__0 | buoyancy2d_Re125_s000 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.035 by 0.9885, the Reynolds number is about 125, the reference velocity is about 0.02469, the kinematic viscosity is about 0.004, colors encode velocity mag... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re125_s000_r2__full__0 | buoyancy2d_Re125_s000_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.086 by 1.054, the Reynolds number is about 125, the reference velocity is about 0.0145, the kinematic viscosity is about 0.004, colors encode velocity magni... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1275_s036__full__0 | buoyancy2d_Re1275_s036 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9203 by 1, the Reynolds number is about 1275, the reference velocity is about 0.0273, the kinematic viscosity is about 0.0003922, colors encode velocity mag... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re130_s001__full__0 | buoyancy2d_Re130_s001 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.041 by 1.058, the Reynolds number is about 130, the reference velocity is about 0.02294, the kinematic viscosity is about 0.003846, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re135_s002__full__0 | buoyancy2d_Re135_s002 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9691 by 0.9819, the Reynolds number is about 135, the reference velocity is about 0.002028, the kinematic viscosity is about 0.003704, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1375_s037__full__0 | buoyancy2d_Re1375_s037 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9342 by 1.089, the Reynolds number is about 1375, the reference velocity is about 0.004894, the kinematic viscosity is about 0.0003636, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1450_s038__full__0 | buoyancy2d_Re1450_s038 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.03 by 0.9826, the Reynolds number is about 1450, the reference velocity is about 0.01596, the kinematic viscosity is about 0.0003448, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re145_s001_r2__full__0 | buoyancy2d_Re145_s001_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9639 by 0.9647, the Reynolds number is about 145, the reference velocity is about 0.007995, the kinematic viscosity is about 0.003448, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re145_s003__full__0 | buoyancy2d_Re145_s003 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9728 by 1.091, the Reynolds number is about 145, the reference velocity is about 0.03787, the kinematic viscosity is about 0.003448, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1550_s015_r2__full__0 | buoyancy2d_Re1550_s015_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9462 by 1.064, the Reynolds number is about 1550, the reference velocity is about 0.01644, the kinematic viscosity is about 0.0003226, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1550_s039__full__0 | buoyancy2d_Re1550_s039 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.061 by 0.9994, the Reynolds number is about 1550, the reference velocity is about 0.00899, the kinematic viscosity is about 0.0003226, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re155_s004__full__0 | buoyancy2d_Re155_s004 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.06 by 1.014, the Reynolds number is about 155, the reference velocity is about 0.01229, the kinematic viscosity is about 0.003226, colors encode velocity ma... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1575_s016_r2__full__0 | buoyancy2d_Re1575_s016_r2 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.021 by 1.061, the Reynolds number is about 1575, the reference velocity is about 0.008763, the kinematic viscosity is about 0.0003175, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1575_s040__full__0 | buoyancy2d_Re1575_s040 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.096 by 1.048, the Reynolds number is about 1575, the reference velocity is about 0.02462, the kinematic viscosity is about 0.0003175, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re170_s005__full__0 | buoyancy2d_Re170_s005 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9463 by 0.9915, the Reynolds number is about 170, the reference velocity is about 0.02, the kinematic viscosity is about 0.002941, colors encode velocity ma... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1725_s041__full__0 | buoyancy2d_Re1725_s041 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.059 by 0.9532, the Reynolds number is about 1725, the reference velocity is about 0.006702, the kinematic viscosity is about 0.0002899, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re175_s006__full__0 | buoyancy2d_Re175_s006 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.023 by 0.9895, the Reynolds number is about 175, the reference velocity is about 0.03444, the kinematic viscosity is about 0.002857, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re185_s007__full__0 | buoyancy2d_Re185_s007 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9399 by 1.059, the Reynolds number is about 185, the reference velocity is about 0.01896, the kinematic viscosity is about 0.002703, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re1900_s042__full__0 | buoyancy2d_Re1900_s042 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.103 by 0.9255, the Reynolds number is about 1900, the reference velocity is about 0.01455, the kinematic viscosity is about 0.0002632, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re190_s008__full__0 | buoyancy2d_Re190_s008 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9388 by 0.9848, the Reynolds number is about 190, the reference velocity is about 0.03478, the kinematic viscosity is about 0.002632, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re215_s009__full__0 | buoyancy2d_Re215_s009 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1 by 1.007, the Reynolds number is about 215, the reference velocity is about 0.037, the kinematic viscosity is about 0.002326, colors encode velocity magnitu... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re2175_s043__full__0 | buoyancy2d_Re2175_s043 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9325 by 0.9491, the Reynolds number is about 2175, the reference velocity is about 0.006034, the kinematic viscosity is about 0.0002299, colors encode veloc... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re220_s010__full__0 | buoyancy2d_Re220_s010 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.011 by 1.056, the Reynolds number is about 220, the reference velocity is about 0.01091, the kinematic viscosity is about 0.002273, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re240_s011__full__0 | buoyancy2d_Re240_s011 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9968 by 1.07, the Reynolds number is about 240, the reference velocity is about 0.02988, the kinematic viscosity is about 0.002083, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re2425_s044__full__0 | buoyancy2d_Re2425_s044 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9256 by 1.12, the Reynolds number is about 2425, the reference velocity is about 0.007446, the kinematic viscosity is about 0.0002062, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re250_s012__full__0 | buoyancy2d_Re250_s012 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9288 by 1.075, the Reynolds number is about 250, the reference velocity is about 0.004542, the kinematic viscosity is about 0.002, colors encode velocity ma... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re2675_s045__full__0 | buoyancy2d_Re2675_s045 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.006 by 1.039, the Reynolds number is about 2675, the reference velocity is about 0.02018, the kinematic viscosity is about 0.0001869, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re275_s013__full__0 | buoyancy2d_Re275_s013 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9745 by 1.092, the Reynolds number is about 275, the reference velocity is about 0.0008934, the kinematic viscosity is about 0.001818, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re280_s014__full__0 | buoyancy2d_Re280_s014 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.054 by 1.071, the Reynolds number is about 280, the reference velocity is about 0.001058, the kinematic viscosity is about 0.001786, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re2975_s046__full__0 | buoyancy2d_Re2975_s046 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.036 by 1.094, the Reynolds number is about 2975, the reference velocity is about 0.02272, the kinematic viscosity is about 0.0001681, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re310_s015__full__0 | buoyancy2d_Re310_s015 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9627 by 1.006, the Reynolds number is about 310, the reference velocity is about 0.02114, the kinematic viscosity is about 0.001613, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re3300_s047__full__0 | buoyancy2d_Re3300_s047 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9363 by 0.9309, the Reynolds number is about 3300, the reference velocity is about 0.03114, the kinematic viscosity is about 0.0001515, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re330_s016__full__0 | buoyancy2d_Re330_s016 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.011 by 1.057, the Reynolds number is about 330, the reference velocity is about 0.003233, the kinematic viscosity is about 0.001515, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re340_s017__full__0 | buoyancy2d_Re340_s017 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9957 by 0.9307, the Reynolds number is about 340, the reference velocity is about 0.02398, the kinematic viscosity is about 0.001471, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re360_s018__full__0 | buoyancy2d_Re360_s018 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.015 by 1.101, the Reynolds number is about 360, the reference velocity is about 0.02187, the kinematic viscosity is about 0.001389, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re3625_s048__full__0 | buoyancy2d_Re3625_s048 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9276 by 1.029, the Reynolds number is about 3625, the reference velocity is about 0.02281, the kinematic viscosity is about 0.0001379, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re400_s019__full__0 | buoyancy2d_Re400_s019 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.004 by 1.034, the Reynolds number is about 400, the reference velocity is about 0.03623, the kinematic viscosity is about 0.00125, colors encode velocity ma... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re4125_s049__full__0 | buoyancy2d_Re4125_s049 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9707 by 0.9482, the Reynolds number is about 4125, the reference velocity is about 0.03326, the kinematic viscosity is about 0.0001212, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re420_s020__full__0 | buoyancy2d_Re420_s020 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9389 by 0.9523, the Reynolds number is about 420, the reference velocity is about 0.00326, the kinematic viscosity is about 0.00119, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re430_s021__full__0 | buoyancy2d_Re430_s021 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.114 by 0.9248, the Reynolds number is about 430, the reference velocity is about 0.03766, the kinematic viscosity is about 0.001163, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re440_s022__full__0 | buoyancy2d_Re440_s022 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.075 by 1.013, the Reynolds number is about 440, the reference velocity is about 0.01798, the kinematic viscosity is about 0.001136, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re480_s023__full__0 | buoyancy2d_Re480_s023 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9491 by 0.9875, the Reynolds number is about 480, the reference velocity is about 0.007814, the kinematic viscosity is about 0.001042, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re510_s024__full__0 | buoyancy2d_Re510_s024 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.103 by 0.9271, the Reynolds number is about 510, the reference velocity is about 0.004197, the kinematic viscosity is about 0.0009804, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re540_s025__full__0 | buoyancy2d_Re540_s025 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9518 by 0.9266, the Reynolds number is about 540, the reference velocity is about 0.009183, the kinematic viscosity is about 0.0009259, colors encode veloci... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re590_s026__full__0 | buoyancy2d_Re590_s026 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.033 by 0.9698, the Reynolds number is about 590, the reference velocity is about 0.00155, the kinematic viscosity is about 0.0008475, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re620_s027__full__0 | buoyancy2d_Re620_s027 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9357 by 1.069, the Reynolds number is about 620, the reference velocity is about 0.02958, the kinematic viscosity is about 0.0008065, colors encode velocity... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re670_s028__full__0 | buoyancy2d_Re670_s028 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 0.9982 by 0.9784, the Reynolds number is about 670, the reference velocity is about 0.03971, the kinematic viscosity is about 0.0007463, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re760_s029__full__0 | buoyancy2d_Re760_s029 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.093 by 1.05, the Reynolds number is about 760, the reference velocity is about 0.02494, the kinematic viscosity is about 0.0006579, colors encode velocity m... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re800_s030__full__0 | buoyancy2d_Re800_s030 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.112 by 1.114, the Reynolds number is about 800, the reference velocity is about 0.0163, the kinematic viscosity is about 0.000625, colors encode velocity ma... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re860_s031__full__0 | buoyancy2d_Re860_s031 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.058 by 0.9661, the Reynolds number is about 860, the reference velocity is about 0.007513, the kinematic viscosity is about 0.0005814, colors encode velocit... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
buoyancy2d_Re960_s032__full__0 | buoyancy2d_Re960_s032 | Identify the fluid mechanics benchmark video showing buoyancy-driven convection above a heated patch, the view is 2D, the flow is laminar, the domain spans about 1.069 by 0.942, the Reynolds number is about 960, the reference velocity is about 0.03564, the kinematic viscosity is about 0.0005208, colors encode velocity ... | Find the 2D fluid mechanics video of buoyancy-driven convection above a heated patch, showing warm fluid rising from the heated region in buoyant plumes. Physically, heated fluid becomes lighter and rises, entraining cooler fluid and forming unsteady thermal plumes. The color map represents velocity magnitude, so risin... | |
rayleighBenard2d_Re10000_s049__full__0 | rayleighBenard2d_Re10000_s049 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 1.904 by 0.9884, the Reynolds number is about 10000, the reference velocity is about 0.0131, the kinematic viscosity is about 5e-05, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1200_s028__full__0 | rayleighBenard2d_Re1200_s028 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.117 by 0.9328, the Reynolds number is about 1200, the reference velocity is about 0.01455, the kinematic viscosity is about 0.0004167, colors en... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1225_s029__full__0 | rayleighBenard2d_Re1225_s029 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.004 by 0.9452, the Reynolds number is about 1225, the reference velocity is about 0.01824, the kinematic viscosity is about 0.0004082, colors en... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1350_s030__full__0 | rayleighBenard2d_Re1350_s030 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.107 by 1.048, the Reynolds number is about 1350, the reference velocity is about 0.02094, the kinematic viscosity is about 0.0003704, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re140_s000__full__0 | rayleighBenard2d_Re140_s000 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.114 by 0.9635, the Reynolds number is about 140, the reference velocity is about 0.01754, the kinematic viscosity is about 0.003571, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1475_s031__full__0 | rayleighBenard2d_Re1475_s031 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.98 by 0.9263, the Reynolds number is about 1475, the reference velocity is about 0.0272, the kinematic viscosity is about 0.000339, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re155_s001__full__0 | rayleighBenard2d_Re155_s001 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.848 by 1.103, the Reynolds number is about 155, the reference velocity is about 0.02645, the kinematic viscosity is about 0.003226, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1625_s032__full__0 | rayleighBenard2d_Re1625_s032 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.885 by 0.9848, the Reynolds number is about 1625, the reference velocity is about 0.01798, the kinematic viscosity is about 0.0003077, colors en... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re165_s002__full__0 | rayleighBenard2d_Re165_s002 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.15 by 0.9381, the Reynolds number is about 165, the reference velocity is about 0.001136, the kinematic viscosity is about 0.00303, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re175_s003__full__0 | rayleighBenard2d_Re175_s003 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.847 by 1.052, the Reynolds number is about 175, the reference velocity is about 0.02344, the kinematic viscosity is about 0.002857, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re1850_s033__full__0 | rayleighBenard2d_Re1850_s033 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.919 by 1.115, the Reynolds number is about 1850, the reference velocity is about 0.01823, the kinematic viscosity is about 0.0002703, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re190_s004__full__0 | rayleighBenard2d_Re190_s004 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.045 by 1.078, the Reynolds number is about 190, the reference velocity is about 0.01383, the kinematic viscosity is about 0.002632, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re2050_s034__full__0 | rayleighBenard2d_Re2050_s034 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.881 by 1.062, the Reynolds number is about 2050, the reference velocity is about 0.01386, the kinematic viscosity is about 0.0002439, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re205_s005__full__0 | rayleighBenard2d_Re205_s005 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.04 by 1.07, the Reynolds number is about 205, the reference velocity is about 0.02311, the kinematic viscosity is about 0.002439, colors encode ... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re2150_s035__full__0 | rayleighBenard2d_Re2150_s035 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.974 by 1.029, the Reynolds number is about 2150, the reference velocity is about 0.0166, the kinematic viscosity is about 0.0002326, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re235_s007__full__0 | rayleighBenard2d_Re235_s007 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.156 by 1.108, the Reynolds number is about 235, the reference velocity is about 0.01978, the kinematic viscosity is about 0.002128, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re2425_s036__full__0 | rayleighBenard2d_Re2425_s036 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.162 by 1.011, the Reynolds number is about 2425, the reference velocity is about 0.02181, the kinematic viscosity is about 0.0002062, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re250_s008__full__0 | rayleighBenard2d_Re250_s008 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.844 by 0.9505, the Reynolds number is about 250, the reference velocity is about 0.008644, the kinematic viscosity is about 0.002, colors encode... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re2550_s037__full__0 | rayleighBenard2d_Re2550_s037 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.094 by 1.119, the Reynolds number is about 2550, the reference velocity is about 0.01093, the kinematic viscosity is about 0.0001961, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re285_s009__full__0 | rayleighBenard2d_Re285_s009 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.176 by 0.9534, the Reynolds number is about 285, the reference velocity is about 0.01798, the kinematic viscosity is about 0.001754, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re2900_s038__full__0 | rayleighBenard2d_Re2900_s038 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.08 by 1.03, the Reynolds number is about 2900, the reference velocity is about 0.01068, the kinematic viscosity is about 0.0001724, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re3025_s039__full__0 | rayleighBenard2d_Re3025_s039 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.975 by 1.041, the Reynolds number is about 3025, the reference velocity is about 0.024, the kinematic viscosity is about 0.0001653, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re310_s010__full__0 | rayleighBenard2d_Re310_s010 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.066 by 0.9223, the Reynolds number is about 310, the reference velocity is about 0.009093, the kinematic viscosity is about 0.001613, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re3125_s040__full__0 | rayleighBenard2d_Re3125_s040 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.05 by 1.049, the Reynolds number is about 3125, the reference velocity is about 0.01229, the kinematic viscosity is about 0.00016, colors encode... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re320_s011__full__0 | rayleighBenard2d_Re320_s011 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.954 by 1.07, the Reynolds number is about 320, the reference velocity is about 0.01744, the kinematic viscosity is about 0.001563, colors encode... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re3500_s041__full__0 | rayleighBenard2d_Re3500_s041 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.956 by 0.9826, the Reynolds number is about 3500, the reference velocity is about 0.005738, the kinematic viscosity is about 0.0001429, colors e... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re360_s013__full__0 | rayleighBenard2d_Re360_s013 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.982 by 1.028, the Reynolds number is about 360, the reference velocity is about 0.02432, the kinematic viscosity is about 0.001389, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re3825_s042__full__0 | rayleighBenard2d_Re3825_s042 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 1.903 by 0.9249, the Reynolds number is about 3825, the reference velocity is about 0.02012, the kinematic viscosity is about 0.0001307, colors ... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re430_s015__full__0 | rayleighBenard2d_Re430_s015 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.19 by 0.9614, the Reynolds number is about 430, the reference velocity is about 0.02156, the kinematic viscosity is about 0.001163, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re4425_s043__full__0 | rayleighBenard2d_Re4425_s043 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 1.846 by 1.105, the Reynolds number is about 4425, the reference velocity is about 0.0224, the kinematic viscosity is about 0.000113, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re450_s016__full__0 | rayleighBenard2d_Re450_s016 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.864 by 1.105, the Reynolds number is about 450, the reference velocity is about 0.01099, the kinematic viscosity is about 0.001111, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re490_s017__full__0 | rayleighBenard2d_Re490_s017 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.883 by 1.118, the Reynolds number is about 490, the reference velocity is about 0.0171, the kinematic viscosity is about 0.00102, colors encode ... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re5100_s044__full__0 | rayleighBenard2d_Re5100_s044 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 2.047 by 0.9827, the Reynolds number is about 5100, the reference velocity is about 0.01514, the kinematic viscosity is about 9.804e-05, colors ... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re520_s018__full__0 | rayleighBenard2d_Re520_s018 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.235 by 1.015, the Reynolds number is about 520, the reference velocity is about 0.008456, the kinematic viscosity is about 0.0009615, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re580_s019__full__0 | rayleighBenard2d_Re580_s019 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.04 by 1.042, the Reynolds number is about 580, the reference velocity is about 0.02752, the kinematic viscosity is about 0.0008621, colors encod... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re6050_s045__full__0 | rayleighBenard2d_Re6050_s045 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 1.894 by 0.9357, the Reynolds number is about 6050, the reference velocity is about 0.01873, the kinematic viscosity is about 8.264e-05, colors ... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re630_s021__full__0 | rayleighBenard2d_Re630_s021 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 2.019 by 0.9205, the Reynolds number is about 630, the reference velocity is about 0.02275, the kinematic viscosity is about 0.0007937, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re6800_s046__full__0 | rayleighBenard2d_Re6800_s046 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 2.122 by 1.096, the Reynolds number is about 6800, the reference velocity is about 0.01878, the kinematic viscosity is about 7.353e-05, colors e... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re700_s022__full__0 | rayleighBenard2d_Re700_s022 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.875 by 1.113, the Reynolds number is about 700, the reference velocity is about 0.003376, the kinematic viscosity is about 0.0007143, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re7650_s047__full__0 | rayleighBenard2d_Re7650_s047 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 1.856 by 1.025, the Reynolds number is about 7650, the reference velocity is about 0.0142, the kinematic viscosity is about 6.536e-05, colors en... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re770_s023__full__0 | rayleighBenard2d_Re770_s023 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.976 by 1.025, the Reynolds number is about 770, the reference velocity is about 0.02749, the kinematic viscosity is about 0.0006494, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re820_s024__full__0 | rayleighBenard2d_Re820_s024 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.902 by 0.9637, the Reynolds number is about 820, the reference velocity is about 0.02498, the kinematic viscosity is about 0.0006098, colors enc... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re8600_s048__full__0 | rayleighBenard2d_Re8600_s048 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is turbulent, the domain spans about 2.111 by 0.9741, the Reynolds number is about 8600, the reference velocity is about 0.005024, the kinematic viscosity is about 5.814e-05, colors... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... | |
rayleighBenard2d_Re910_s025__full__0 | rayleighBenard2d_Re910_s025 | Identify the fluid mechanics benchmark video showing Rayleigh-Benard convection between heated and cooled plates, the view is 2D, the flow is laminar, the domain spans about 1.89 by 0.9998, the Reynolds number is about 910, the reference velocity is about 0.01264, the kinematic viscosity is about 0.0005495, colors enco... | Find the 2D fluid mechanics video of Rayleigh-Benard convection between heated and cooled plates, showing convection cells circulating between the bottom and top plates. Physically, the unstable temperature stratification drives organized convection rolls between the plates. The color map represents velocity magnitude,... |
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Physics Bench Fluid Eval 700
This dataset is ordered to match the Physics Bench fluid hard-negative metadata and uses the v2 fluid query style.
- each high-level family is a separate dataset config directory;
- each config contains
train-00000-of-00001.parquet; - parquet columns are
query_id,case_id,raw_text,parsed_text, and embeddedvideo; - each config contains exactly 100 rows;
- family order is
buoyancy,cavity,external_aero,external_wake,internal_step,jet_axi,scalar_transport; raw_textis the structured Identify-style query generated from case metadata;parsed_textis the natural Find/Physically-style retrieval caption aligned withgowitheflowlab/physics-bench-fluid-train.
Family counts:
buoyancy: 100 rowscavity: 100 rowsexternal_aero: 100 rowsexternal_wake: 100 rowsinternal_step: 100 rowsjet_axi: 100 rowsscalar_transport: 100 rows
Total rows: 700
Text version: fluid_eval_queries_v2_dynamics_aligned_raw_parsed
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