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Development of a Compact Heat Exchanger consisting of tubes and interconnecting struts forming parallel plate arrays: Part II Prototype assessment

机译:开发由管子和互连支柱组成的紧凑型热交换器,形成平行板阵列:第二部分原型评估

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Part I of this study centred on a flow visualisation of an alternative heat exchanger design. The heat exchanger consists of a conventional tube bundle having flat tubes as used in typical radiator cores. However instead of fins, there are interconnecting rows of heat conducting struts which collectively form a parallel plate array. The purpose of the struts is twofold. They provide a much larger number of leading edges, and since they are arranged in a parallel plate array, they facilitate the generation of streamwise vortices at certain Reynolds Numbers. The visualisation indicated that at certain strut spacings and inlet flow velocities, stream wise vortices were present. These stream wise vortices could be expected to improve heat transfer. In this paper we report on the measured heat transfer and pressure drop performance of prototypes based on the three-visualisation models tested. It was found that the measured performances agreed well with the suppositions put forward from the flow visualisation results.
机译:本研究的第I部分以替代换热器设计的流动可视化为中心。热交换器由具有典型散热器芯中使用的扁平管的传统管束组成。然而,代替翅片,存在互连的导热支柱,其共同形成平行板阵列。支柱的目的是双重的。它们提供了更大量的前缘,并且由于它们布置在平行板阵列中,因此它们有助于在某些雷诺数处产生流动涡旋的产生。可视化表明,在某些支柱间距和入口流速下,存在流明智的涡流。可以预期这些流明智的涡流来改善传热。本文在基于测试的三维可视化模型的原型的测量热传递和压降性能报告。结果发现,测量的性能与从流动可视化结果提出的假设相同。

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