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The development of irregular elements for differential quadrature element method steady-state heat conduction analysis

机译:微分求积法稳态热传导分析中不规则元素的发展

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A new numerical approach for solving steady-state heat conduction problems by using the irregular elements of the differential quadrature element method (DQEM) is proposed. The mapping technique is used to transform the governing partial differential equation, the natural transition condition of two adjacent elements and the Newmann boundary condition defined on the irregular physical element into the parent space. The differential quadrature technique is used to discretize the transformed relation equations defined on the regular element in the parent space. Various techniques for selecting and implementing the constraint conditions, at element corners, are proposed. A global algebraic equation system can be obtained by assembling all of the discretized relation equations. Numerical procedures are summarized and the related computer code is developed. Numerical results are presented. They demonstrate the developed DQEM steady-state heat conduction analysis model.
机译:提出了一种利用微分正交元法(DQEM)的不规则元素求解稳态导热问题的新数值方法。使用映射技术将控制偏微分方程,两个相邻元素的自然转变条件以及在不规则物理元素上定义的Newmann边界条件转换为父空间。微分求积技术用于离散化定义在父空间中常规元素上的变换关系方程。提出了在元素角处选择和实现约束条件的各种技术。通过组装所有离散关系方程,可以获得全局代数方程组。总结了数值程序并开发了相关的计算机代码。给出了数值结果。他们演示了开发的DQEM稳态热传导分析模型。

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