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首页> 外文期刊>Journal of thermal stresses >Stabilized flux-based flow/thermal finite element representations with applications to convectively cooled structures
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Stabilized flux-based flow/thermal finite element representations with applications to convectively cooled structures

机译:基于稳定通量的流/热有限元表示法及其在对流冷却结构中的应用

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摘要

Stabilized flux-based finite element representations for steady two-dimensional in- compressible flow/thermal problems with emphasis on subsequently applying such techniques to convectively cooled structures are described in this article. First, the dis- creteized equations are derived from a mixed formulation using both primary and flux variables in conjunction with the Streamline-Upwind-Petrov-Galerkin and Pressure- Stabilizing-Petrov-Galerkin features that are used to stabilize the solutions.
机译:本文描述了用于稳定二维不可压缩流动/热问题的基于稳定通量的有限元表示,重点在于随后将此类技术应用于对流冷却结构。首先,离散化方程式是使用主要变量和通量变量以及用于稳定解决方案的Streamline-Upwind-Petrov-Galerkin和压力稳定化-Petrov-Galerkin特征从混合公式导出的。

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