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Adding heat pipes and coolant loop models to finite element and/or finite difference thermal/structural models

机译:将热管和冷却液换档模型添加到有限元和/或有限差异热/结构模型中

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Active cooling technologies such as heat pipes, loop heat pipes (LHPs), thermosyphons, loop thermosyphons (LTSs), and pumped single- or two-phase coolant loops require specialized modelling treatment. However, these 1D ducted systems are largely overlooked in 3D thermal modelling tools. The increasing popularity of CFD and FEM models and generation of analysis data from 3D CAD data are strong trends in the thermal analysis community, but most software answering such demands has not provided linear modelling elements appropriate for the simulation of heat pipes and coolant loops. This paper describes techniques whereby CAD line-drawing methods can be used to quickly generate 1D fluid models of heat pipes and coolant loops within a 3D thermal model. These arcs and lines can be attached intimately or via linear contact or saddle resistances to plates and other surfaces, whether those surfaces are modeled using thermal finite difference methods (FDM), or finite element methods (FEM), or combinations of both. The fluid lines can also be manifolded and customized as needed to represent complex heat exchangers and plumbing arrangements. Furthermore, the assumption of 1D flow can be combined with 2D/3D models of walls, including advanced methods of extruding a complex 2D cross-section along a curved or mitered centerline. To demonstrate these concepts, several distinct examples are developed and discussed.
机译:主动冷却技术,如热管,环热管(LHPS),热悬浮孔,环热循环(LTS),以及泵送的单相冷却剂环,需要专门的建模处理。然而,这些1D管道系统主要忽略3D热建模工具。 CFD和FEM模型的越来越普及以及3D CAD数据的产生数据是热分析界的强劲趋势,但大多数软件应答这些需求都没有提供适合于模拟热管和冷却剂环的线性建模元件。本文介绍了CAD线绘制方法的技术,可用于在3D热模型中快速生成热管和冷却剂环的1D流体模型。这些弧和线可以密切地或通过线性触点或鞍座电阻连接到板和其他表面,是否使用热有限差分方法(FDM)或有限元方法(FEM)或两者的组合来建模这些表面。通常,流体管线也可以根据需要呈歧管和定制,以表示复杂的热交换器和管道布置。此外,1D流程的假设可以与2D / 3D模型的壁组合,包括沿着弯曲或斜线中心线挤出复合2D横截面的先进方法。为了展示这些概念,开发并讨论了几个不同的例子。

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