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EFFECT OF LOW REYNOLDS NUMBER MIXED CONVECTION ON THE FLOW DEVELOPMENT INSIDE CHANNEL

机译:低雷诺数混合对流对频道内流动发展的影响

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The development of low Reynolds number channel flow during mixed convection has been investigated experimentally. The measurements were taken at five different locations along the heating section of the channel. The experiments were conducted at bottom wall temperatures of 35, 45 and 55 °C at a flow rate of 0.0315 kg/s (corresponding to the unheated Reynolds number of 450). Grashof number ranged from 9.8 × 10~6 to 3.9 × 10~7. The results showed that the buoyancy-driven secondary flow was generated right from the upstream tip of the channel heated section and was enhanced in the downstream direction. Accordingly, turbulence was generated and enhanced in the same direction. The mean streamwise velocity accelerated in the region close to the bottom heated wall in the downstream direction and the rate of acceleration increased with an increase in the bottom wall temperature. The turbulent streamwise and vertical velocities approximately reached close to the development state near the end of the channel heated section for the lowest bottom wall temperature while at the higher two bottom wall temperatures, the turbulent velocities were found to progress along the channel heated section.
机译:在实验上研究了混合对流期间低雷诺数信道流动的发展。沿着通道的加热部分拍摄测量值在五个不同的位置。该实验以0.0315kg / s的流速(对应于未加热的雷诺数450),在35,45和55℃的底壁温度下进行。 Grashof编号范围从9.8×10〜6到3.9×10〜7。结果表明,浮力驱动的二次流动从通道加热部分的上游尖端产生,并在下游方向上增强。因此,在相同方向上产生并增强湍流。在下游方向上靠近底部加热壁的区域中加速的平均流速,并且加速速率随底壁温度的增加而增加。湍流流动和垂直速度近乎达到靠近沟道加热部分的端部的显影状态,用于最低底壁温度,而在较高的两个底壁温度下,发现湍流速度沿着通道加热部分进展。

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