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Streamline upwind finite element method for conjugate heat transfer problems

机译:共轭传热问题的流线迎风有限元方法

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This paper presents a combined finite element method for solving conjugate heat transfer problems where heat conduction in a solid is coupled with heat convection in viscous fluid flow. The streamline upwind finite element method is used for the analysis of thermal viscous flow in the fluid region, whereas the analysis of heat conduction in solid region is performed by the Galerkin method. The method uses the three-node triangular element with equal-order interpolation functions for all the variables of the velocity components,the pressure and the temperature. The main advantage of the proposed method is to consistently couple heat transfer along the fluid-solid interface. Three test cases, i.e. conjugate Couette flow problem in parallel plate channel, counter-flow in heat exchanger, and conjugate natural convection in a square cavity with a conducting wall, are selected to evaluate the efficiency of the present method.
机译:本文提出了一种组合有限元方法,用于解决共轭传热问题,其中固体中的热传导与粘性流体流中的热对流耦合。流线型迎风有限元法用于流体区域内的热粘性流分析,而固相区域内的热传导分析则采用Galerkin方法。该方法对速度分量,压力和温度的所有变量使用具有等阶插值函数的三节点三角单元。所提出的方法的主要优点是沿流体-固体界面连续耦合传热。选择三个测试案例,即平行板通道中的共轭库埃特流动问题,热交换器中的逆流以及具有导电壁的方腔中的共轭自然对流,以评估本方法的效率。

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