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首页> 外文期刊>Journal of Thermal Engineering >Numerical Investigation of Flow and Heat Transfer in Communicating Converging and Diverging Channels
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Numerical Investigation of Flow and Heat Transfer in Communicating Converging and Diverging Channels

机译:汇流和分流通道内流动和传热的数值研究

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摘要

Fluid flow and heat transfer in communicating converging and diverging channel has been numerically investigated. Channels are assumed to be at constant wall temperature and the flow is assumed to be steady state and incompressible. Since the flow and temperature fields to repeat periodically after a certain developing length, periodic boundary conditions are used for the calculations. Finite volume method is used to solve the governing differential equations numerically. Computations are performed for different values of the plate angles and Reynolds numbers. Moreover, velocity distributions along the flow field are illustrated. It was found that the converging- diverging channels destroy the boundary layer significantly and Nusselt number is found to be about 400% higher than those of parallel plate channels, whereas due to vortex formation, pressure drop increases also .
机译:对连通汇流和扩散流道中的流体流动和传热进行了数值研究。假定通道的壁温恒定,并且假定流量稳定且不可压缩。由于流场和温度场在一定显影长度后会周期性重复,因此使用周期性边界条件进行计算。有限体积法用于数值求解控制微分方程。针对板角和雷诺数的不同值执行计算。此外,示出了沿着流场的速度分布。结果发现,会聚-发散通道显着破坏了边界层,发现努塞尔特数比平行板通道高出约400%,而由于涡流的形成,压降也增加了。

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