首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Coupled lattice Boltzmann finite volume method for conjugate heat transfer in porous media
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Coupled lattice Boltzmann finite volume method for conjugate heat transfer in porous media

机译:耦合晶格玻璃晶型有限体积法,用于多孔介质中的共轭热传递

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摘要

This work presents a coupled lattice Boltzmann finite volume method for dealing with conjugate heat transfer problems. Lattice Boltzmann scheme is used for fluid-dynamics, while high-order finite volume method is implemented for temperature reconstruction. After a first validation with literature test cases, the method is applied to a heat exchanger with an insert made of porous medium, representative of an open-cell metal foam, innovative material largely used for its thermomechanical properties. This allows maximizing heat exchange processes with advantages in terms of efficiencies. Thus, the coupled method allows dealing with complex boundaries in multiphysics problems.
机译:该工作介绍了一种用于处理缀合物传热问题的耦合晶格Boltzmann有限体积方法。 格子Boltzmann方案用于流体动力学,而高阶有限体积法实现用于温度重建。 在具有文献测试案例的第一验证之后,该方法应用于具有由多孔介质制成的插入物的热交换器,代表开放式电池金属泡沫,创新材料,主要用于其热机械性能。 这允许在效率方面最大限度地提高热交换过程。 因此,耦合方法允许在多体主义问题中处理复杂的边界。

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