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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Development of a CFD model for simulation of a traveling-wave thermoacoustic engine using an impedance matching boundary condition
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Development of a CFD model for simulation of a traveling-wave thermoacoustic engine using an impedance matching boundary condition

机译:使用阻抗匹配边界条件开发CFD模型以模拟行波热声发动机

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摘要

Computational fluid dynamics (CFD) simulations have become prevalent tools in the numerical modeling of complex thermoacoustic phenomena. The basic problem concerning a CFD simulation of a complete system is the computational cost. To overcome this problem, a CFD simulation tool using an impedance matching boundary (IMB) condition has been developed to analyze the characterization of the flow field in a looped-tube traveling-wave thermoacoustic engine. The thermodynamic processes were simulated using a two-dimensional numerical solution for the compressible Navier-Stokes equations. By imposing an impedance matching boundary condition, flow fields around the regenerator and heat-exchanger plates were simulated. The boundary condition being defined as an acoustic load which was derived from experimental data. From the simulations, features of the flow field such as nonlinear vortex generation around the regenerator and heat-exchanger plates were observed that were not present in the analytical solutions. Furthermore, the temperature oscillations were obtained around regenerator plates, and the operating mechanism of a looped-tube traveling-wave thermoacoustic engine was characterized both qualitatively and quantitatively. The CFD tool was validated by obtaining good agreement when comparing results with those from experimental data and analytical solutions. As a result, it was concluded that CFD simulations with this impedance matching boundary condition are effective in predicting actual flow behaviors in a traveling-wave thermoacoustic engine. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在复杂的热声现象的数值建模中,计算流体动力学(CFD)模拟已成为普遍使用的工具。与整个系统的CFD仿真有关的基本问题是计算成本。为了克服这个问题,已经开发了使用阻抗匹配边界(IMB)条件的CFD仿真工具来分析环管行波热声发动机中流场的特性。使用二维数值解对可压缩的Navier-Stokes方程进行热力学过程模拟。通过施加阻抗匹配的边界条件,模拟了回热器和热交换器板周围的流场。边界条件定义为根据实验数据得出的声负载。通过模拟,观察到流场的特征,例如再生器和换热器板周围的非线性涡流生成,这在分析解决方案中是不存在的。此外,获得了在回热板周围的温度振荡,并且定性和定量地表征了环形管行波热声发动机的运行机理。通过与实验数据和分析解决方案的结果进行比较时,通过获得良好的一致性来验证CFD工具。结果,得出结论,具有此阻抗匹配边界条件的CFD模拟对于预测行波热声发动机的实际流动行为是有效的。 (C)2016 Elsevier Ltd.保留所有权利。

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