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A numerical study of the effect of fluid-structure interaction on transient natural convection in an air-filled square cavity

机译:流体 - 结构相互作用对充气方腔内瞬态自然对流影响的数值研究

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The present study aims to investigate the transient natural convection in an air-filled square cavity based on the effects of fluid-structure interaction (FSI). The Prandtl number of air is assumed to be 0.71. A thin deformable baffle is horizontally located in the center of the cavity and the top wall of the cavity is also elastic. The horizontal walls are completely insulated. Initially, the cavity is set at T-c temperature, then the left side wall temperature is raised to T-h. The arbitrary Lagrangian-Eulerian approach is implemented to study the flow field in the presented model. The fluid field equations are discretized by Galerkin finite element method. Further, the dimensionless equations of flexible parts of the cavity are solved using the Newton-Raphson method. The study examines the effects of Rayleigh number and baffle length on flow and temperature fields, heat transfer rate and deformation of elastic parts of the cavity. The results show that an increase in the Rayleigh number enhances the natural convection and increases the elastic parts deformations. Finally, the increase of baffle length has different effects on thermal performance of cavity depending on the Rayleigh number and rigidness or flexibility of the system.
机译:本研究旨在基于流体结构相互作用(FSI)的影响来研究充气方腔中的瞬态自然对流。假设Prandtl空气数量为0.71。薄可变形挡板水平位于腔中心的中心,并且腔的顶壁也是弹性的。水平墙体完全绝缘。最初,腔在T-C温度下设定,然后将左侧壁温升至T-H。实施任意拉格朗日 - 欧拉替代方法,以研究所呈现的模型中的流场。通过Galerkin有限元方法离散化流体场方程。此外,使用牛顿-Raphson方法解决了腔的柔性部分的无量纲方程。该研究探讨了瑞利数和挡板长度对流量和温度场的影响,传热率和腔的弹性部件的变形。结果表明,瑞利数的增加增强了自然对流,并增加了弹性部件变形。最后,根据系统的瑞利数和刚性或灵活性,挡板长度的增加对腔的热性能不同。

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