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Modeling tools and prototype design of loop heat pipe for electronics cooling.

机译:用于电子冷却的环路热管的建模工具和原型设计。

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摘要

In this dissertation, a set of modeling tools for loop heat pipe (LHP) design is developed, and original analytical models for annular two-phase flow are proposed.;LHPs are promising two-phase thermal transport devices for electronics cooling. The developed modeling tools include a system level model, criteria of selecting working fluids, and individual component models for modularized design of LHP condenser and evaporator. Based on these tools, new figures of merit for measuring capillary limit and heat leak effects are defined, the condensation pressure drop is shown to be always dominating the loop pressure drop in air-cooled LHPs, and a published LHP prototype for laptop computer cooling is simulated. The modeling results agree well with the available experimental data and reveal that the air flow is the bottleneck of this prototype.;The analytical models for annular two-phase flow presented in this work is fundamentally different from the previous two-phase flow models in that both the velocity and temperature distributions for the liquid and gas/vapor phases are represented based on the governing equations for laminar flows and based on the universal profiles for turbulent flows. As a result, analytical relations of void fraction, frictional pressure gradient, acceleration pressure gradient, and heat transfer coefficient for all possible flow regimes are derived on a self-contained and self-consistent basis, with the classical single-phase relations as their extreme limits. Detailed comparison with the modeling results shows that the prevailing empirical correlations in engineering practice generally fail to provide reliable and accurate predictions for annular two-phase flows.
机译:本文开发了一套环热管设计的建模工具,并提出了环形两相流的原始分析模型。开发的建模工具包括系统级模型,选择工作流体的标准以及用于LHP冷凝器和蒸发器模块化设计的单个组件模型。在这些工具的基础上,定义了用于测量毛细管极限和热泄漏效应的新品质因数,显示冷凝压降始终主导着风冷LHP的环路压降,而已发布的用于笔记本电脑冷却的LHP原型是模拟。建模结果与现有的实验数据吻合良好,表明气流是该原型机的瓶颈。这项工作中提出的环形两相流的分析模型与以前的两相流模型有根本的不同。液相和气相/蒸气相的速度和温度分布都基于层流的控制方程式和湍流的通用曲线表示。结果,在一个自包含且自洽的基础上,以经典的单相关系为极端,得出了所有可能流态的空隙率,摩擦压力梯度,加速压力梯度和热传递系数的解析关系。限制。与建模结果的详细比较表明,工程实践中普遍存在的经验相关性通常无法为环形两相流提供可靠,准确的预测。

著录项

  • 作者

    Wang, Shimin.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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