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Large eddy simulation of thermally induced oscillatory flow in a thermoacoustic engine

机译:热声发动机热诱导振荡流动的大型涡流模拟

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摘要

In this paper, a comprehensive high-fidelity three-dimensional computational fluid dynamic research using large eddy simulation has been conducted to investigate a standing-wave quarter-wavelength thermoacoustic engine that consists of a hot buffer, a stack and a resonator. The performance of the thermoacoustic engine has been analysed in four aspects. Firstly, the dynamic characteristics of the engine during the initial start-up process are investigated when changing the temperature gradient imposed on the stack. Numerical results are compared with those from a system-wide reduced-order network model based on linear thermoacoustic theory. Secondly, the acoustic behaviour of the engine operating at steady state is studied. Fourier Series Model is utilized to decompose the steady-state acoustic pressure oscillations which reveals the unstable longitudinal acoustic modes excited in the engine. The stack serves as an energy source for the fundamental mode while it extracts acoustic power from the second harmonic. Thirdly, the hydrodynamic performances of the engine are inspected, and the obtained three-dimensional flow fields inside the engine enable us to probe into rich nonlinear phenomena including minor losses, mass streaming, etc. Finally, the heat transfer characteristics have been analysed by examining the mean temperature field and transversal heat fluxes along the engine. This research demonstrates that the large eddy simulation framework is effective in simulating the thermally induced oscillatory flow inside thermoacoustic engines. The multi-perspective analytical methodologies are valuable in comprehending the engine performance and provide guidelines for the design and optimization of efficient thermoacoustic engines for recovering waste thermal energy from various sources.
机译:在本文中,已经进行了一种使用大涡模拟的全面的高保真三维计算流体动力学研究,以研究由热缓冲器,堆叠和谐振器组成的常设波季波长热声发动机。在四个方面分析了热声发动机的性能。首先,在改变堆叠在堆叠上的温度梯度时,研究了在初始启动过程中发动机的动态特性。将数值结果与基于线性热声理论的系统范围的减阶网络模型的数值结果进行比较。其次,研究了以稳态运行的发动机的声学行为。傅里叶系列模型用于分解稳态声压振荡,透露在发动机中激发的不稳定的纵向声学模式。堆叠用作基本模式的能源,同时提取来自第二次谐波的声电源。第三,检查发动机的流体动力学性能,并且发动机内的获得的三维流场使我们能够探测到富含非线性现象,包括轻微损失,质量流等。最后,通过检查分析了传热特性沿发动机的平均温度场和横向热通量。该研究表明,大涡模拟框架在模拟热声发动机内部的热感应振荡流动方面是有效的。多透视分析方法在理解发动机性能方面是有价值的,并提供用于从各种来源回收废热能量的有效热声发动机的设计和优化的指导。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|115458.1-115458.13|共13页
  • 作者单位

    Univ Auckland Dept Mech Engn 20 Symonds St Auckland 1010 New Zealand|Univ Glasgow James Watt Sch Engn Glasgow G12 8QQ Lanark Scotland;

    Tongji Univ Inst Railway Transit Shanghai 201800 Peoples R China;

    Univ Auckland Dept Mech Engn 20 Symonds St Auckland 1010 New Zealand;

    Zhejiang Univ Coll Energy Engn Inst Refrigerat & Cryogen Hangzhou 310027 Peoples R China;

    Univ Glasgow James Watt Sch Engn Glasgow G12 8QQ Lanark Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermoacoustic engine; Large eddy simulation; Network model; Minor losses; Mass streaming;

    机译:热声发动机;大涡模拟;网络模型;轻微损失;群众流媒体;

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