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首页> 外文期刊>International Journal of Refrigeration >Exergy analysis of a hot cascade type Ranque-Hilsch vortex tube using turbulence model
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Exergy analysis of a hot cascade type Ranque-Hilsch vortex tube using turbulence model

机译:用湍流模型分析热级联式兰克-希尔施涡管的火用

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摘要

Ranque-Hilsch vortex tube (RHVT) is a simple device capable of splitting a compressed inlet gas stream into a cold and a hot outlet stream without any external source of energy supply. In hot cascade type RHVT the hot gas stream emerging out of the first stage vortex tube is supplied to the inlet of second stage vortex tube and thus producing higher heating effect. This paper presents results of a series of numerical simulation carried out using standard k-ε turbulence model focusing on exergy analysis on second stage of RHVT for different cold fractions. The results obtained from numerical simulations compare favorably with available experimental measurements, which demonstrate successful use of turbulence model for a cascade type RHVT.
机译:Ranque-Hilsch涡流管(RHVT)是一种简单的设备,能够将压缩的进气流分为冷的和热的排气流,而无需任何外部能源供应。在热级联式RHVT中,从第一级涡流管出来的热气流被供应到第二级涡流管的入口,从而产生更高的加热效果。本文介绍了使用标准k-ε湍流模型进行的一系列数值模拟的结果,重点是针对不同冷量的RHVT第二阶段的火用分析。从数值模拟获得的结果与可用的实验测量结果相吻合,这表明湍流模型已成功用于级联式RHVT。

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