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Numerical simulation of the effect of plate spacing on heat transfer characteristics within a parallel-plate heat exchanger in a standing wave thermoacoustic system

机译:驻波热声系统中平板间距对平行板热交换器内传热特性影响的数值模拟

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Power can be converted with high efficiently between thermal energy and mechanical (acoustic) energy by using thermoacoustic technologies. Thus, the heat transfer characteristics are significant to the understanding of mechanisms, and improvement of efficiency for thermoacoustic devices, notably in heat exchangers. This paper introduces a two-dimensional computational fluid dynamics model of flow across a parallel-plate heat exchanger and investigates the effect of plate spacing on heat transfer characteristics. The open source CFD software OpenFOAM is applied because of the highly customizable capabilities to vary the control parameters. Firstly, the computational model including geometry, boundary conditions, equations, discretization scheme, turbulence and thermophysical properties’ models are presented, and then grid-independence validation is presented to verify the quality of mesh. The simulation results show that plate spacing influences the heat transfer between plates and adjacent area of heat exchanger, and the heat transfer coefficient goes up when the plate spacing decreases. The analysis also indicates that a possible flow transition to turbulence occurred within Re number between 247.2 and 321.4. The results in this work can help the understanding of heat transfer inside thermoacoustic system, and form a basis for future research.
机译:通过使用热声技术,可以在热能和机械(声)能之间高效地转换功率。因此,传热特性对于理解热声装置的机理和提高效率,特别是在热交换器中,具有重要意义。本文介绍了平行板式换热器流动的二维计算流体动力学模型,并研究了板间距对传热特性的影响。之所以使用开放源代码CFD软件OpenFOAM,是因为它具有高度可定制的功能来改变控制参数。首先给出了包括几何,边界条件,方程,离散化方案,湍流和热物理性质的计算模型,然后提出了网格独立性验证来验证网格的质量。仿真结果表明,板间距影响板与换热器相邻区域之间的传热,当板间距减小时传热系数增大。分析还表明,在Re数内247.2和321.4之间可能发生了向湍流的过渡。这项工作的结果可以帮助理解热声系统内部的传热,并为将来的研究奠定基础。

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