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Numerical investigations of fluid flow and heat transfer processes in the internal structures of thermoacoustic devices

机译:热声装置内部结构中流体流动和传热过程的数值研究

摘要

Thermoacoustic devices are built based on interactions between sound wave and a solid boundary, within a well-controlled environment, to produce either power or cooling effect. Recent studies on two important internal structures, namely regenerator and heat exchangers, are reviewed. Furthermore, the need for detailed investigations on a pressure drop condition in the flow through the regenerator and heat transfer condition in heat exchangers working in a thermoacoustic environment is also addressed.\udA two-dimensional porous medium model is developed based on the pressure drop measurement of a regenerator working in a well-controlled travelling-wave time-phasing, wherein the pressure and velocity of the oscillatory flow across the regenerator are controlled to be in-phase. A friction correlation is proposed based on Darcy’s law. The model is developed in a commercial software ANSYS FLUENT to determine a permeability coefficient for the model. The findings suggest that a steady-state correlation is applicable provided that the travelling-wave time-phasing is met. Otherwise, a phase-shift effect should be considered and the steady-state approximation may no longer hold true.\udA pair of adjacent plate heat exchangers in the oscillatory flow is studied. It is shown that the application of the temperature difference between “cold” and “hot” plates leads to interesting asymmetries within the flow field. Also a need for a turbulence model at a drive ratio lower than suggested in current literature is discovered and discussed. It is found that the heat absorbed by the cold plate is lower than the heat supplied by the hot plate and heat accumulation is observed in the system. The vortex structures and viscous dissipation change with operating conditions. The combined effect of flow amplitude, natural convection and the “annular effect” of velocity profiles near the channel wall on the flow are discussed. A good agreement with experimental results obtained previously is shown.
机译:在良好控制的环境中,基于声波与固体边界之间的相互作用构建热声设备,以产生功率或冷却效果。对两个重要的内部结构,即蓄热室和热交换器的最新研究进行了综述。此外,还需要对通过再生器的流动中的压降条件和在热声环境下工作的热交换器中的传热条件进行详细研究。\ ud基于压降测量,建立了二维多孔介质模型图2是工作在受控的行波时间定相中的蓄热器的示意图,其中,穿过蓄热器的振荡流的压力和速度被控制为同相。根据达西定律提出了一种摩擦相关性。该模型是在商业软件ANSYS FLUENT中开发的,用于确定模型的渗透系数。这些发现表明,只要满足行波时间定相,稳态相关性就适用。否则,应考虑相移效应,稳态近似可能不再成立。\ ud研究了振荡流中一对相邻的板式换热器。结果表明,在“冷”和“热”板之间施加温差会导致流场内出现有趣的不对称性。还发现并讨论了对以低于当前文献中所提出的传动比的湍流模型的需求。发现冷板吸收的热量低于热板提供的热量,并且在系统中观察到热积累。涡流结构和粘性耗散随工作条件而变化。讨论了流量振幅,自然对流和通道壁附近流速分布的“环形效应”对流量的综合影响。显示了与先前获得的实验结果的良好一致性。

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  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:46:17

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