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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Finite volume solution of 2-D hyperbolic conduction in a heterogeneous medium
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Finite volume solution of 2-D hyperbolic conduction in a heterogeneous medium

机译:异构介质中的2-D双曲传导的有限体积溶液

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摘要

Finite volume method that has been shown to be an effective tool for the study of non-Fourier conduction in one-dimensional heterogeneous material is extended to two-dimensional (2D) heterogeneous materials. The accuracy of 2D numerical formulation is examined by comparing the numerical results with the exact solutions for a homogeneous material with constant thermal properties. The effects of temperature-dependent properties due to both heating and cooling of the medium on the wave propagation are investigated. Transient energy balance shows significant effects of finite thermal wave speed on the transient behavior of internal and wave energy changes in the system. The effects of finite thermal wave speed on the entropy production for the cooling case are examined by invoking the second law of thermodynamics. The 2D transient temperature distributions in a heterogeneous medium show the expected effects of flux lagging constant on the thermal wave propagations through heterogeneous material.
机译:已经显示为在一维异质材料中研究非傅立叶导通的有效工具的有限体积方法延伸到二维(2D)异质材料。通过将数值结果与具有恒定热性能的均匀材料的精确溶液进行比较来检查2D数值配方的准确性。研究了温度依赖性的影响由于介质的加热和冷却在波传播上。瞬态能量平衡显示有限热波速对系统内部和波能变化的瞬态行为的显着影响。通过调用热力学的第二定律,研究了有限热波速对冷却箱熵产生的影响。异构介质中的2D瞬态温度分布显示了通过异质材料的热波传播上的磁通滞后恒定的预期效果。

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