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Temperature Distribution in Flux Channels with Discrete Contact Boundary Conditions

机译:具有离散接触边界条件的通量通道中的温度分布

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摘要

An analytical approach for the thermal behavior of two-dimensional rectangular flux channels with arbitrary boundary conditions on the source plane is presented. The boundary condition along the source plane can be a combination of the first kind boundary condition (Dirichlet or prescribed temperature) and the second kind boundary condition (Neumann or prescribed heat flux). To model the boundary conditions along the source plane, the method of least squares is used. The proposed solution is in the form of Fourier series expansion and can be applied to both symmetrical and nonsymmetrical channels. This method is more general than other approaches and there is no need to use equivalent heat flux distributions to model isothermal heat sources. The general approach for obtaining the multidimensional temperature profile in flux channels and the advantages of the least-square method is discussed. The proposed solution can be used to calculate the temperature at any specified point in the flux channel. Two case studies are presented. The first case study is a flux channel with five discretely specified contact temperatures along the source plane. The second case study has both of the first kind and second kind boundary conditions on the source plane. The analytical results for both systems are compared with finite element method using a commercial software package. It is shown that the proposed approach can precisely model the temperature profile over the flux channel.
机译:提出了一种在源平面上具有任意边界条件的二维矩形通量通道热行为的解析方法。沿源平面的边界条件可以是第一种边界条件(狄利克雷或规定的温度)和第二种边界条件(Neumann或规定的热通量)的组合。为了沿源平面建模边界条件,使用最小二乘法。所提出的解决方案采用傅立叶级数展开的形式,并且可以应用于对称和非对称通道。该方法比其他方法更通用,无需使用等效的热通量分布来模拟等温热源。讨论了获得通量通道多维温度分布图的一般方法以及最小二乘法的优点。提出的解决方案可用于计算通量通道中任何指定点的温度。介绍了两个案例研究。第一个案例研究是沿源平面具有五个离散指定接触温度的磁通通道。第二个案例研究在源平面上同时具有第一类和第二类边界条件。使用商业软件包,将这两个系统的分析结果与有限元方法进行比较。结果表明,所提出的方法可以精确地模拟通量通道上的温度分布。

著录项

  • 来源
    《Heat Transfer Engineering》 |2018年第12期|946-956|共11页
  • 作者单位

    Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada;

    Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada;

    Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada;

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

  • 入库时间 2022-08-18 04:07:11

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