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Experimental determination of shell side heat transfer coefficient and pressure drop for an oil cooler shell-and-tube heat exchanger with three different tube bundles

机译:具有三种不同管束的油冷却器壳管式热交换器的壳侧传热系数和压降的实验确定

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摘要

In this paper, the heat transfer coefficient and pressure drop on the shell side of a shell-and-tube heat exchanger have been experimentally obtained for three different types of copper tubes (smooth, corrugated and with micro-fins). Also, experimental data has been compared with theoretical data available. Correlations have been suggested for both pressure drop and Nusselt number for the three tube types. A shell-and-tube heat exchanger of an oil cooler used in a power transformer has been modeled and built for this experimental work in order to investigate the effect of surface configuration on the shell side heat transfer as well as the pressure drop of the three types of tube bundles. The bundles with the same geometry, configuration, number of baffles and length, but with different external tube surfaces inside the same shell were used for the experiment. Corrugated and micro-fin tubes have shown degradation of performance at a Reynolds number below a certain value (Re < 400). At a higher Reynolds number the performance of the heat exchanger greatly improved for micro-finned tubes.
机译:在本文中,已经通过实验获得了三种不同类型的铜管(光滑,波纹形和带微翅片)的管壳式热交换器的传热系数和压降。而且,实验数据已经与可用的理论数据进行了比较。已经提出了三种管的压降和努塞尔数之间的相关性。为了研究表面构造对壳体侧传热的影响以及这三个装置的压降,已为该实验工作建模并构建了用于电力变压器的油冷却器的管壳式热交换器。管束的类型。实验使用具有相同几何形状,配置,挡板数量和长度,但在同一壳体内具有不同外管表面的管束。波纹管和微翅片管在雷诺数低于一定值(Re <400)时表现出性能下降。在更高的雷诺数下,用于微翅片管的热交换器的性能大大提高。

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