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A method to optimize the regenerator parameters of a thermoacoustic engine

机译:一种优化热声发动机再生器参数的方法

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Thermoacoustic engines are devices suitable to convert heat into acoustic energy and viceversa. They are basically composed with a porous medium and two heat exchangers inserted into a resonator or looped tube. Depending on the phase shift between the sound pressure and the particle velocity of the working fluid, two categories of engines can be realized: standing-wave or travelling-wave devices. Thermodynamic performance of thermoacoustic engines strongly depends on the structural properties of the porous material and the geometric features of the device. In a previous work the authors developed a procedure for optimizing the properties described above to obtain, for a standing-wave device, the maximum acoustic power, given fixed boundary conditions. In this work, the above-mentioned procedure has been extended also for a traveling-wave engine.
机译:热声发动机是适合将热量转换为声能和伏牛皮的装置。它们基本上与多孔介质和插入谐振器或环形管中的两个热交换器组成。根据工作流体的声压和粒子速度之间的相移,可以实现两类发动机:驻波或行驶波器件。热声发动机的热力学性能强烈取决于多孔材料的结构性能和装置的几何特征。在先前的工作中,作者开发了一种用于优化上述所描述的属性的过程,以获得固定边界条件的最大声波的最大声功率。在这项工作中,上述过程也已经扩展了旅行波引擎。

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