首页> 外文会议>International Symposium on Heat Transfer Enhancement and Energy Conservation >THE STUDY OF THE ENHANCEMENT OF HEAT TRANSFER DUE TO BUOYANCY UNDER THE CONDITION OF MIXED CONVECTION IN A VERTICAL ANNULAR PASSAGE
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THE STUDY OF THE ENHANCEMENT OF HEAT TRANSFER DUE TO BUOYANCY UNDER THE CONDITION OF MIXED CONVECTION IN A VERTICAL ANNULAR PASSAGE

机译:垂直环形通道混合对流条件下浮力引起的热传递增强研究

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In this paper, the enhancement of heat transfer due to buoyancy is studied under the condition of mixed convection of water flowing downwards or upwards through a long vertical passage of annular cross-section with a uniformly heated inner surface and an adiabatic outer one. Measurements of heat transfer have been reported in addition to the results of velocity and turbulence using LDA. Under buoyancy-opposed conditions, the velocity near the heated surface is reduced, turbulence is increased and the effectiveness of heat transfer is enhanced. Computational simulations of the experiments have been performed and some results are presented and compared with measurements. The formulation used solved the Reynolds-averaged equations for two-dimensional buoyancy-influenced, axi-symmetric turbulent flow and energy transfer in conjunction with a low Reynolds number k-ε model. Observed behavior is satisfactorily reproduced.
机译:在本文中,在通过具有均匀加热的内表面和绝热外部的环形横截面的长垂直通道的水中流动或向上流动的水的混合对流引起的热传递增强。除了使用LDA的速度和湍流的结果之外还报道了传热的测量。在浮力相反的条件下,减少了加热表面附近的速度,增加了湍流,增强了热传递的有效性。已经进行了实验的计算模拟,并与测量结果进行了一些结果。制剂用来解决了对二维浮力影响的轴对称湍流流量和能量转移的雷诺平均方程,以及低雷诺数k-ε模型。观察到的行为是令人满意的复制。

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