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Experimental Investigation on a Linear-compressor Driven Travelling-wave Thermoacoustic Heat Pump

机译:线性压缩机驱动波热声热泵的实验研究

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Heat pump system, offering economical alternatives in recovering waste heat from different sources for using in various industrial, commercial and residential applications, is considered to be a very environmentally-friendly heat and power transfer system. In this paper, to solve the problems of traditional vapour compression heat pump working in unconventional conditions, a novel TWTAHP (travelling-wave thermoacoustic heat pump) is presented to meet the requirement of working in ultra-low temperature. Base on the theoretical simulation and structure optimization, an experimental apparatus for preliminary test has been built, which is only one single independent unit from the whole loop of the TWTAHP system. The results show that the simulation and the testing results were agreeable as expected. Under the -20 °C environment temperature and the 50 °C heating temperature, we could obtain a maximal COP_h (heating COP) of 2.1 and 260W heating capacity for one unit by consuming acoustic power less than 200W. Furthermore, a COP_h above 3.0 could be achieved when the ambient temperature was raised to 0°C.
机译:热泵系统,提供经济替代品,以在各种工业,商业和住宅应用中从不同来源恢复来自不同来源的废热,被认为是一个非常环保的热电传递系统。在本文中,为了解决在非常规条件下工作的传统蒸汽压缩热泵的问题,提出了一种新型TWTAHP(行波热声热泵),以满足在超低温度下工作的要求。基于理论仿真和结构优化,建立了一种用于初步测试的实验装置,这是来自TWTAHP系统的整个循环的单个独立单元。结果表明,模拟和测试结果与预期相同。在-20°C环境温度和50°C的加热温度下,我们可以通过消耗小于200W的声功率获得一个单元的最大COP_H(加热COP)为2.1和260W的加热容量。此外,当环境温度升至0℃时,可以实现高于3.0的COP_H。

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