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Review of databases and predictive methods for pressure drop in adiabatic, condensing and boiling mini/micro-channel flows

机译:审查绝热,冷凝和沸腾微型/微通道流压降的数据库和预测方法

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摘要

Two-phase flow in mini/micro-channels has been the flow configuration of choice for many cooling applications demanding very high rates of heat dissipation per unit volume. Past research aimed at predicting the factional pressure drop in mini/micro-channels includes a large number of studies that rely on either the Homogeneous Equilibrium Model (HEM) or semi-empirical correlations. But as the number of published studies continues to rise, thermal design engineers are confronted with tremendous confusion when selecting a suitable model or correlation. The primary reason behind this confusion is limited validity of most published methods to a few working fluids and narrow ranges of operating conditions. The present study addresses this limitation by discussing the development of two consolidated mini/ micro-channel databases. The first is for adiabatic and condensing flows, and consists of 7115 frictional pressure gradient data points from 36 sources, and the second for boiling flow, and consists of 2378 data points from 16 sources. These consolidated databases are used to assess the accuracy of previous models and correlations as well as to develop 'universal' correlations that are applicable to a large number of fluids and very broad ranges of operating conditions.
机译:微型/微通道中的两相流已成为许多要求每单位体积散热速率很高的制冷应用的首选流量配置。过去旨在预测微型/微通道中的派生压降的研究包括大量依赖均质均衡模型(HEM)或半经验相关性的研究。但是,随着已发表研究的数量不断增加,热设计工程师在选择合适的模型或相关性时面临着巨大的困惑。造成这种混乱的主要原因是,大多数已公开方法的有效性仅限于少数几种工作液,并且工作条件范围狭窄。本研究通过讨论两个合并的迷你/微通道数据库的开发来解决此限制。第一个用于绝热和冷凝流,由来自36个源的7115个摩擦压力梯度数据点组成,第二个用于沸腾流,由来自16个源的2378个数据点组成。这些整合的数据库用于评估先前模型和相关性的准确性,并开发适用于大量流体和非常宽范围工作条件的“通用”相关性。

著录项

  • 来源
  • 作者

    Sung-Min Kim; Issam Mudawar;

  • 作者单位

    Purdue University Boiling and Two-Phase Flow Laboratory (PU-BTPFL), Mechanical Engineering Building, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

    Purdue University Boiling and Two-Phase Flow Laboratory (PU-BTPFL), Mechanical Engineering Building, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pressure drop; Flow boiling; Condensation; Mini-channel; Micro-channel;

    机译:压力下降;流沸腾;缩合;迷你频道;微信;

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