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Transient three-dimensional modeling of flat heat pipes with discrete heat sources.

机译:具有离散热源的扁平热管的瞬态三维建模。

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摘要

A stable numerical procedure is developed to analyze the transient performance of flat heat pipes for large input heat fluxes and high wick conductivity in the incompressible flow limit. Computation of flow and heat transfer in a heat pipe is complicated by the strong coupling among the velocity, pressure and temperature fields with phase change at the interface between the vapor and wick. A structured collocated finite volume scheme is used in conjunction with the SIMPLE algorithm to solve the continuity, energy and momentum equations. A numerical scheme is devised to compute system pressurization in the incompressible limit using overall mass balance. The stability of the standard sequential procedure is improved by accounting for the coupling between the evaporator/condenser mass flow rate and the interface temperature and pressure as well as the system pressure. One-dimensional, two-dimensional and three-dimensional models have been developed using the improved and standard numerical scheme to analyze the transient and steady-state performance of flat heat pipes. The model predictions are validated by comparing the heat pipe wall temperatures against experimental measurements. Numerical wall and vapor temperature predictions in a cylindrical heat pipe are also benchmarked with experimental and model results in the literature. Two-dimensional simulations of vapor chambers are performed to analyze the heat spreading characteristics of typical flat heat pipes. Comparisons are made with experimental measurements of the cold and hot wall temperature profiles, as well as with simulations of solid copper spreaders.; In the three-dimensional analysis with discrete heat sources, predictions are made of the magnitude of heat flux at which dry-out would occur in a flat heat pipe. The input heat flux and the spacing between the discrete heat sources are studied as parameters. The location in the heat pipe at which dry-out is initiated is found to be different from that of the maximum temperature.; The algorithm that has been developed to analyze the transient and steady-state performance of flat heat pipes is implemented into a commercial software package through user defined functions, for ease of use in practical applications.
机译:开发了一个稳定的数值程序来分析扁平热管在不可压缩的流量极限内对于大输入热通量和高芯吸电导率的瞬态性能。热管中流动和传热的计算非常复杂,这是因为速度,压力和温度场之间的强耦合以及蒸汽和油芯之间界面处的相变。结构化的并置有限体积方案与SIMPLE算法结合使用,可以求解连续性,能量和动量方程。设计了一种数值方案,以使用整体质量平衡来计算不可压缩极限内的系统增压。通过考虑蒸发器/冷凝器质量流量与界面温度和压力以及系统压力之间的耦合,可以提高标准顺序过程的稳定性。使用改进的标准数值方案开发了一维,二维和三维模型,以分析扁平热管的瞬态和稳态性能。通过将热管壁温与实验测量值进行比较,可以验证模型预测。圆柱形热管中的数值壁和蒸汽温度预测也以文献中的实验和模型结果为基准。进行了蒸汽室的二维模拟,以分析典型扁平热管的散热特性。通过对冷壁和热壁温度曲线的实验测量,以及对固态铜散布器的模拟进行比较。在使用离散热源进行三维分析时,将对扁平热管中发生干燥的热通量进行预测。研究了输入热通量和离散热源之间的间距作为参数。发现在热管中开始变干的位置与最高温度不同。已开发出用于分析扁平热管的瞬态和稳态性能的算法,该算法通过用户定义的功能实现到商业软件包中,以便于在实际应用中轻松使用。

著录项

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.; Engineering Packaging.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;包装工程;
  • 关键词

  • 入库时间 2022-08-17 11:44:19

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