Performance optimization of tunable standing wave thermoacoustic engine by varying the stack parameters and resonator length: An experimental study

Harshal Agarwal, K. Akhil, Vishnu R Unni, N. Ravi, R. Sujith, S. Iqbal, B. Pesala
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引用次数: 1

Abstract

Thermoacoustic heat engine (TAHE) converts thermal power (heat) into acoustic power. TAHE has been gaining significant interest because of its non-fuel specific, low cost and high reliability (due to reduced moving parts) compared to conventional IC engines. The performance of TAHE depends upon the various parameters such as stack position, stack length and resonator length. Previously, we built a fixed TAHE which converts heat energy to electrical energy with an efficiency of 2 %. However, the performance of the fixed engine was not fully optimized. To investigate further, another novel tunable TAHE has been built with the goal of optimizing the efficiency by tuning three critical parameters, namely stack position, stack length and resonator length. This paper shows the influence of stack parameters (stack position and stack length) and resonator length on the performance of the thermoacoustic heat engine. The performance is measured in terms of the pressure amplitude generated inside the TAHE using air as the working fluid. It is observed that the stack's position considerably affects the performance. Further, from experiments, it is observed that the maximum acoustic power is generated when the stack is positioned closer to a pressure antinode.
可调谐驻波热声发动机性能优化的实验研究
热声热机(TAHE)将热能(热)转化为声功率。与传统的IC发动机相比,TAHE因其非燃油特性、低成本和高可靠性(由于减少了活动部件)而备受关注。TAHE的性能取决于各种参数,如堆栈位置、堆栈长度和谐振器长度。之前,我们建造了一个固定的TAHE,它将热能转换为电能,效率为2%。然而,固定发动机的性能并没有得到充分的优化。为了进一步研究,我们构建了另一种新型可调谐TAHE,其目标是通过调整三个关键参数,即堆栈位置,堆栈长度和谐振腔长度来优化效率。本文研究了叠层参数(叠层位置、叠层长度)和谐振腔长度对热声热机性能的影响。性能是根据TAHE内部产生的压力幅值来测量的,TAHE使用空气作为工作流体。可以观察到,堆栈的位置对性能有很大影响。此外,从实验中观察到,当堆叠位置靠近压力反天线时,产生的声功率最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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