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新型热声发动机驱动的脉管制冷机实验研究

Experimental investigation on pulse tube cooler driven bynovel thermoacoustic engine

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【作者】 孙大明邱利民谭永翔严伟林陈萍陈国邦

【Author】 SUN Da-ming, QIU Li-min, TAN Yong-xiang,YAN Wei-lin,CHEN Ping, CHEN Guo-bang(Institute of Refrigeration and Cryogenics, Zhejiang University, Hangzhou 310027, China)

【机构】 浙江大学制冷与低温工程研究所浙江大学制冷与低温工程研究所 浙江杭州310027浙江杭州310027浙江杭州310027

【摘要】 为完全消除低温系统中的运动部件,简化低温系统结构并提高其可靠性,对自制新型热声发动机驱动的脉管制冷机系统进行了实验研究.对热声发动机的性能进行了实验分析,确定出系统充气压力和制冷机的接口位置,将一台单级小孔型脉管制冷机接到系统中.通过调节小孔阀,对脉管制冷机性能进行了优化.结果表明,以氦气为工质,在充气压力为2 MPa时,发动机单独运行时最大压比达1.19,驱动单级小孔型脉管制冷机获得了119 K的低温,这为热声制冷机系统应用于天然气液化奠定了良好基础.

【Abstract】 In order to completely eliminate moving parts, simplify configuration and obtain high reliability in cryogenic system, experimental investigation on a thermoacoustic system composed of a pulse tube cooler (PTC) and a self-made thermoacoustic engine was carried out. With thorough experimental analysis of the thermoacoustic engine, the preferable filling pressure and connecting location of PTC were determined. Then a single-stage orifice PTC was connected to the engine. The performance of the PTC was optimized by adjusting its orifice. The results show that charged with helium at 2.0 MPa, the engine operating with no load had the maximum pressure ratio of 1.19. The single stage orifice PTC driven by the engine reached 119()K, and the PTC driven by the proposed thermoacoustic systems can be applied for natural gas liquefaction.

【基金】 教育部全国优秀博士学位论文作者专项基金资助项目(200033);浙江省自然科学基金资助项目(M503192).
  • 【文献出处】 浙江大学学报(工学版) ,Journal of Zhejiang University(Engineering Science) , 编辑部邮箱 ,2005年03期
  • 【分类号】TB657
  • 【被引频次】4
  • 【下载频次】121
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