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Numerical investigation of heat transfer performance of various coiled square tubes for heat exchanger application

机译:用于热交换器应用的各种卷绕方向管的传热性能的数值研究

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In heat exchanger application, working fluid inside the tubes is subjected to considerable temperature changes. In order to improve heat transfer performance, various strategies are proposed and evaluated; one of them is the application of coiled tubes. Coiled tubes have been used widely in heat exchanger application mainly due to the presence of secondary flow which enhances heat transfer considerably. This study addresses heat transfer performance of three configurations of coiled tubes with square cross-section, i.e. in-plane, helical and conical coiled tubes, subjected to large temperature difference. Their heat transfer performance is numerically evaluated and compared with that of a straight tube with identical cross-section and length. A concept of Figure of Merit (FoM) is introduced and utilized to fairly asses the heat transfer performance of the coiled tube configurations. The results indicate that FoM increase as the wall temperature increase. In addition, combination of temperature-induced buoyancy flow and curvature-induced secondary flow considerably affect the flow behavior and heat transfer performance inside the tubes.
机译:在热交换器应用中,管内的工作流体受到相当大的温度变化。为了提高传热性能,提出和评估各种策略;其中一个是卷绕管的应用。卷绕管在热交换器应用中广泛使用,主要是由于存在二次流动,这显着增强了热传递。该研究解决了三个带有方形横截面的三个配置的传热性能,即面内,螺旋和圆锥形卷绕管,经受大的温差。它们的传热性能在数值上进行了数值评价,并与具有相同横截面和长度的直管相比。引入并利用了优异(FOM)的概念,以公平地抑制卷绕管配置的传热性能。结果表明,随着壁温度的增加,FOM增加。另外,温度诱导的浮力流和曲率诱导的二次流动的组合显着影响管内的流动行为和传热性能。

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