首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Fluid-structure interaction analysis of buoyancy-driven fluid and heat transfer through an enclosure with a flexible thin partition
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Fluid-structure interaction analysis of buoyancy-driven fluid and heat transfer through an enclosure with a flexible thin partition

机译:浮力驱动的流体和通过带有柔性薄隔板的外壳的热传递的流固耦合分析

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摘要

Purpose - A numerical model of an unsteady laminar free convection flow and heat transfer is studied in a cavity that comprises a vertical flexible thin partition. Design/methodology/approach - The left and right vertical boundaries are isothermal, while the horizontal boundaries are insulated. Moreover, the thin partition, placed in the geometric centerline of the enclosure, is considered to be hyper elastic and diathermal. Galerkin finite-element methods, the system of partial differential equations along with the appropriate boundary conditions are transformed to a weak form through the fluid-structure interaction and solved numerically. Findings - The heat transfer characteristics of the enclosure with rigid and flexible partitions are compared. The effect of Rayleigh number and Young's modulus on the maximum nondimensional stress and final deformed shape of the membrane is addressed. Originality/value - Incorporation of vertical thin flexible membrane in middle of a cavity has numerous industrial applications, and it could noticeably affect the heat and mass transfer in the enclosure.
机译:目的-在包含垂直柔性薄隔板的空腔中研究了非稳态层流自由对流和传热的数值模型。设计/方法/方法-左右垂直边界是等温的,而水平边界是绝缘的。此外,放置在外壳几何中心线上的薄隔板被认为是超弹性且耐高温的。 Galerkin有限元方法,偏微分方程组以及适当的边界条件通过流固耦合作用转换为弱形式并进行数值求解。结果-比较了具有刚性和柔性隔板的机柜的传热特性。解决了瑞利数和杨氏模量对膜的最大无量纲应力和最终变形形状的影响。创新性/价值-在腔体中部合并垂直柔性薄膜在工业上具有广泛的应用,并且可能会显着影响外壳中的热量和质量传递。

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