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An analytical and numerical investigation of asymmetrical flat-shaped heat pipes.

机译:不对称扁平形热管的分析和数值研究。

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摘要

The present study centers around a comprehensive modeling and theoretical investigation of the transient and steady-state operation and performance characteristics of asymmetrical flat-shaped heat pipes. These consist of a disk-shaped and a flat-plate heat pipes. A comprehensive analytical model based on an in-depth integral analysis and the method of matched asymptotic expansions has been developed to simulate the steady-state vapor and liquid flow for these types of heat pipes. This model incorporates the incompressible vapor flow in the core region of each channel, the liquid flow in the top, bottom and vertical wicks, the liquid-vapor and liquid-liquid hydrodynamic coupling, and the phase change at the vapor-liquid interfaces. The effects of non-Darcian transport through the porous wicks, vapor flow reversal, and the gravitational effects are also included in the model. The heat transfer capability of the flat-shaped heat pipes has been studied extensively and the criteria for the capillary limitation and the boiling limitation have been established. The influence of design parameters on the heat transfer capability of the flat-shaped heat pipes has been investigated comprehensively based on the capillary limitation. An optimization method for the flat-shaped heat pipe design has been proposed based on the parametric study and the boiling limitation. An optimized flat-shaped heat pipe design was obtained for removing high heat fluxes generated during the proton bombardment of the lithium target in a BNCT (Boron Neutron Capture Therapy) device.; The complete problem of the three-dimensional vapor flow in the asymmetrical flat-shaped heat pipe has also been studied numerically using a finite element scheme based on the Galerkin method of weighted residuals. The nonlinear differential elliptical equations of motion are solved over the entire vapor flow channel in order to allow all of the features of the incompressible laminar vapor flow to be taken into account. The three-dimensional effects and the effects of the secondary flow formation have been investigated. A very good agreement was found between the numerical results and the analytical results.; The analytical model has been extended to simulate the startup operation of the flat-shaped heat pipes. The conjugate heat transfer through the heat pipe wall, the liquid-wick structure, and the vapor region as well as the phase change at the vapor-liquid interfaces have been incorporated in the transient model. Analytical results covering the entire startup transient and the steady-state operation have been obtained.
机译:本研究的重点是对非对称扁平形热管的瞬态和稳态运行以及性能特征进行全面的建模和理论研究。它们由盘形和平板式热管组成。建立了基于深入积分分析和匹配渐近展开法的综合分析模型,以模拟这些类型热管的稳态蒸汽和液体流动。该模型包含了每个通道核心区域中不可压缩的蒸气流,顶部,底部和垂直油芯中的液体流,液-汽和液-液流体动力耦合以及汽-液界面处的相变。该模型还包括非Darcian穿过多孔芯的传输,蒸气流逆转和重力效应的影响。对扁平形热管的传热能力进行了广泛的研究,并建立了毛细管极限和沸腾极限的标准。基于毛细管的局限性,全面研究了设计参数对平板形热管传热能力的影响。基于参数研究和沸腾限制,提出了扁平形热管设计的优化方法。获得了优化的扁平形热管设计,以消除在BNCT(硼中子俘获治疗)设备中对锂靶进行质子轰击时产生的高热通量。还使用基于加权残差的Galerkin方法的有限元方案,对非对称扁平形热管中三维蒸气流的完整问题进行了数值研究。在整个蒸汽流动通道上求解非线性微分椭圆运动方程,以便考虑不可压缩层流的所有特征。研究了三维效应和二次流形成的效应。在数值结果和分析结果之间找到了很好的一致性。该分析模型已扩展为模拟扁平形热管的启动操作。通过热管壁,液芯结构和蒸气区域的共轭传热以及在气液界面处的相变已纳入瞬态模型中。已获得涵盖整个启动瞬态和稳态操作的分析结果。

著录项

  • 作者

    Zhu, Nanqiang.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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