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Optimal design of a thermoacoustic system comprising of a standing-wave engine driving a travelling-wave cooler

机译:热声系统的优化设计包括驱动行波冷却器的驻波发动机

摘要

This paper presents the design and optimisation of a coupled thermoacoustic system comprising of a standing wave thermoacoustic engine and a coaxial travelling wave thermoacoustic cooler in a linear configuration. The overall aim is to propose an economical design of a prototype system which could be used by people living in remote rural areas of developing countries with no access to the electrical grid. The cooler coaxial configuration provides a feedback inertance and compliance to create the required travelling-wave phasing. Compressed air at 10 bar is used as the working fluid. The operating frequency is around 50 Hz. The geometric parameters of both engine and cooler, affecting the overall efficiency of cooling, have been investigated to evaluate the optimal configuration of the system. The most sensitive parameters are the cross sectional areas of the engine and cooler and the hydraulic radii of stack and regenerator.
机译:本文介绍了一种耦合热声系统的设计和优化,该系统包括一个驻波热声引擎和一个线性配置的同轴行波热声冷却器。总体目标是提出一种经济可行的原型系统设计,供居住在发展中国家偏远农村地区且无法使用电网的人们使用。同轴冷却器配置可提供反馈惯性和顺应性,以创建所需的行波定相。使用10 bar的压缩空气作为工作流体。工作频率约为50 Hz。已经研究了影响冷却总效率的发动机和冷却器的几何参数,以评估系统的最佳配置。最敏感的参数是发动机和冷却器的横截面积以及烟囱和再生器的液压半径。

著录项

  • 作者

    Saechan P; Mao X; Jaworski AJ;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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