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热声制冷机中用气柱活塞模态振动代替驻波振动的合理性与可行性

The reasonableness and feasibility of replacing standing wave vibration with air piston mode vibration in thermoacoustic refrigerator

  • 摘要: 高强度声场的实现是热声制冷机的关键技术。为此,文中在分析半波长驻波型热声制冷机谐振腔内气柱纵向强迫振动规律的基础上,提出了热声制冷机中用气柱一阶活塞模态振动代替驻波振动的思想,以达到提高谐振腔内气体振动压力幅值,实现气体大幅交变流动。从气柱活塞模态振动的振型、压力分布情况以及气体微团在平衡位置振动产生的温度变化规律等方面论述了用气柱一阶活塞模态振动进行热量搬移、提高制冷量的合理性与可行性。并结合已有研究成果进一步说明了气柱一阶活塞模态振动在热声制冷机中应用的优越性。所得结果为进一步提升热声制冷机声场强度提供了新的研究思路和努力方向。

     

    Abstract: The realization of a high-intensity acoustic field is the key technology in thermoacoustic refrigerators. For this reason, this paper takes the half-wavelength standing wave type thermoacoustic refrigerator as the research object and analyzes the longitudinal forced vibration law of the gas column in the resonant cavity. On this basis, the idea of using the first-order piston modal vibration of the gas column instead of standing wave vibration in the thermoacoustic refrigerator is proposed to improve the amplitude of gas vibration in the resonant cavity and achieve large alternating gas flow. From the perspective of gas column piston modal vibration, including vibration patterns, pressure distribution, and temperature change laws of gas microgroups at the equilibrium position of vibration, heat transfer during the first-order piston modal vibration of the gas column is analyzed, thereby enhancing the reasonableness and feasibility of the refrigeration capacity. The superiority of applying first-order piston modal vibration of the gas column in thermoacoustic refrigerators is further illustrated by combining existing research results. The obtained results provide new research ideas and efforts to further enhance the sound field strength of thermoacoustic refrigerators.

     

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