首页> 外文期刊>International Journal of Heat and Mass Transfer >Fluid-solid interaction in natural convection heat transfer in a square cavity with a perfectly thermal-conductive flexible diagonal partition
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Fluid-solid interaction in natural convection heat transfer in a square cavity with a perfectly thermal-conductive flexible diagonal partition

机译:具有完美导热的柔性对角隔板的方腔中自然对流传热中的流固相互作用

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摘要

The unsteady natural convective heat transfer of an incompressible fluid is studied in a square cavity divided into two triangles using a flexible thermal conductive membrane. The temperature difference in the cavity induces buoyancy forces and natural convective flows. The membrane is adopted to be very flexible and thin, and hence, the interaction of the fluid and solid structure interaction (FSI) could change the shape of the membrane. An arbitrary Lagrangian-Eulerian (ALE) formulation associated with an unstructured grid is utilized to formulate the motion of the membrane. The solid and fluid governing equations are formulated and written in a non-dimensional form and the behavior of the membrane and the convective heat transfer of the cavity for various non-dimensional parameters are examined. The effects of the stiffness of the membrane and the fluid parameters on the shape of the membrane and the convective heat transfer in the cavity are studied.
机译:使用柔性导热膜,在分成两个三角形的方腔中研究了不可压缩流体的非稳态自然对流换热。空腔中的温差会引起浮力和自然对流。采用该膜是非常柔性和薄的,因此,流体和固体结构相互作用(FSI)的相互作用可以改变膜的形状。与非结构化网格关联的任意拉格朗日-欧拉(ALE)公式用于公式化膜的运动。固体和流体控制方程以无量纲形式制定和编写,并针对各种无量纲参数检查了膜的性能以及腔体的对流传热。研究了膜的刚度和流体参数对膜的形状和腔内对流传热的影响。

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