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Heat transfer in a U-Bend pipe: Dean number versus Reynolds number

机译:U型弯管中的传热:迪恩数与雷诺数

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摘要

The performance of ground source and surface water heat pumps relies greatly on the heat transfer efficiency throughout the ground loop configuration. Typically these are vertical loops and consist of two pipes connected by a U-Bend at the bottom end. The U-Bend section generates vortical structures and turbulence, enhancing the heat transfer process. Two parameters that affect the flow turbulence and vortical structures are the Reynolds number and the Dean number. The isolated effects of the Reynolds and the Dean number are studied. It was found that while the Reynolds number has the greater effect on the average heat flux of the system; the Dean number's influence on the heat flux is greater in the curved section of the pipe. The large vortex structures can last for many diameters downstream of the U-Bend. For the high Reynolds number flow it was shown that increasing the Dean number significantly enhances the longevity of vortex structures. This indicates that enhancing the Dean number in an already turbulent flow will further augment the heat transfer process.
机译:地源热泵和地表水热泵的性能在很大程度上取决于整个接地回路配置的传热效率。通常,这些是垂直回路,由两根通过底端的U型弯管连接的管道组成。 U形弯曲部分会产生涡旋结构和湍流,从而增强了传热过程。影响流动湍流和涡旋结构的两个参数是雷诺数和迪安数。研究了雷诺和迪安数的孤立效应。发现雷诺数对系统的平均热通量有较大影响;迪恩数对热通量的影响在管道的弯曲部分更大。大涡旋结构可以在U形弯头下游持续许多直径。对于高雷诺数流,已表明增加迪安数可显着提高涡旋结构的寿命。这表明在已经湍流的流动中提高迪安数将进一步增加传热过程。

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