| タイトル | Computation of three-dimensional mixed convective boundary layer flow |
| 本文(外部サイト) | https://ntrs.nasa.gov/citations/19950020926 |
| 著者(英) | Prashandt Gadepalli; Muhammad M Rahman |
| 著者所属(英) | University of South Florida; University of South Florida |
| 発行日 | 1995-01-01 |
| 発行機関など | National Aeronautics and Space Administration |
| 刊行物名 | The Sixth Annual Thermal and Fluids Analysis Workshop |
| 抄録 | The paper presents the numerical solution of heat and mass transfer during cross-flow (orthogonal) mixed convection. In this class of flow, a buoyancy-driven transport in the vertical direction and a forced convective flow in the horizontal direction results in a three-dimensional boundary layer structure adjacent to the plate. The rates of heat and mass transfer are determined by a combined influence of the two transport processes. The equations for the conservation of mass, momentum, energy, and species concentration were solved along with appropriate boundary conditions to determine the distributions of velocity components, temperature, and concentration across the thickness of the boundary layer at different locations on the plate. Results were expressed in dimensionless form using Reynolds number, Richardson number for heat transfer, Richardson number for mass transfer, Prandtl number, and Schmidt number as parameters. It was found that the transport is dominated by buoyancy at smaller vertical locations and at larger distances away from the forced convection leading edge. Effects of forced convection appeared to be very strong at smaller horizontal distances from the leading edge. The cross stream forced convection enhanced the rate of heat and mass transfer by a very significant amount. |
| NASA分類 | Fluid Mechanics and Thermodynamics |
| レポートNO | NASA-CP-10161 |
| URI | https://repository.exst.jaxa.jp/dspace/handle/a-is/107276 |