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Reynolds Number Dependency of the Heat and Mass Transfer in Mixed Convective Duct Flow with Condensation at a Cooled Wall

机译:混合对流管道中的热量和传质的雷诺数依赖性与冷却壁冷凝的混合对流管道流动

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Temperature and humidity measurements are performed in mixed convective moist-air duct flows for the Reynolds numbers Re = 2000, 4000 and 6000 with condensation at a cooled wall in a vertical rectangular duct. The width-to-height ratio is 10.66:1. A comparison of experimental results obtained with passive insulation on the wall opposite to the cooled wall for Re = 2000 with results of direct numerical simulations performed under adiabatic boundary conditions reveals large differences. The latter are significantly reduced by realising an active insulation with isothermal boundary conditions. Using this set-up, it is shown that the heat and mass transfer in terms of the Nusselt and Sherwood number increase with the Reynolds number.
机译:温度和湿度测量在混合的对流湿气管道中进行,用于雷诺数RE = 2000,4000和6000,在垂直矩形管道中的冷却壁处的冷凝。宽度到高度比率为10.66:1。在与冷却壁相对的壁上获得的实验结果比较与Re = 2000的冷却壁相对的,在绝热边界条件下进行的直接数值模拟结果显示出大的差异。通过实现具有等温边界条件的活性绝缘的后者显着降低。使用此设置,表明在NUSELET和SHERWOOD数量方面随着雷诺数而增加的热量和传质。

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