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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >A radial integration boundary element method for solving transient heat conduction problems with heat sources and variable thermal conductivity
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A radial integration boundary element method for solving transient heat conduction problems with heat sources and variable thermal conductivity

机译:一种径向积分边界元法,用于求解热源和可变导热率的瞬态导热问题

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摘要

A new radial integration boundary element method (RIBEM) for solving transient heat conduction problems with heat sources and variable thermal conductivity is presented in this article. The Green's function for the Laplace equation is served as the fundamental solution to derive the boundarydomain integral equation. The transient terms are first discretized before applying the weighted residual technique that is different from the previous RIBEM for solving a transient heat conduction problem. Due to the strategy for dealing with the transient terms, temperature, rather than transient terms, is approximated by the radial basis function; this leads to similar mathematical formulations as those in RIBEM for steady heat conduction problems. Therefore, the present method is very easy to code and be implemented, and the strategy enables the assembling process of system equations to be very simple. Another advantage of the new RIBEM is that only 1D boundary line integrals are involved in both 2D and 3D problems. To the best of the authors' knowledge, it is the first time to completely transform domain integrals to boundary line integrals for a 3D problem. Several 2D and 3D numerical examples are provided to show the effectiveness, accuracy, and potential of the present RIBEM.
机译:本文提出了一种新的用于求解热源和可变导热性的瞬态导热问题的新的径向积分边界元法(Ribem)。 LAPLACE方程的绿色功能被用作导出边界域积分方程的基本解决方案。在应用与前一个Ribem不同的加权残留技术之前,首先离散术语,以解决瞬态导热问题。由于处理瞬态术语的策略,温度而不是瞬态术语,由径向基函数近似;这导致与用于稳定的导热问题的核武器中的数学制剂相似。因此,本方法非常易于编码并实现,并且策略使系统方程的组装过程能够非常简单。新Ribem的另一个优点是仅在2D和3D问题中仅涉及1D边界线积分。据作者所知,这是第一次将域完全转换为3D问题的边界线积分。提供了几个2D和3D数值示例以显示目前RIBEM的有效性,准确性和潜力。

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