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Numerical investigation and experimental development on VM-PT cryocooler operating below 4 K

机译:在4 K以下运行的VM-PT低温冷却器的数值研究和实验开发

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Vuilleumier coupling pulse tube (VM-PT) cryocooler is a novel kind of cryocooler capable of attaining liquid helium temperature which had been experimentally verified. Depending on different coupling modes and phase shifters, VM-PT cryocooler can be designed in several configurations. This paper presents a numerical investigation on three typical types of VM-PT cryocoolers, which are gas-coupling mode with room temperature phase shifter (GCRP), gas-coupling mode with cold phase shifter (GCCP) and thermal-coupling mode with cold phase shifter (TCCP). Firstly, three configurations are optimized on operating parameters to attain lower no-load temperature. Then, based on the simulation results, distributions of acoustic power, enthalpy flow, pressure wave, and volume flow rate are presented and discussed to better understand the energy flow characteristics and coupling mechanism. Meanwhile, analyses of phase relationship and exergy loss are also performed. Furthermore, a GCCP experimental system with optimal comprehensive performance among three configurations was built and tested. Experimental results showed good consistency with the simulations. Finally, a no-load temperature of 3.39 K and cooling power of 9.75 mW at 4.2 K were obtained with a pressure ratio of 1.7, operating frequency of 1.22 Hz and mean pressure of 1.5 MPa. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Vuilleumier耦合脉冲管(VM-PT)低温冷却器是一种新型的能够达到液氦温度的低温冷却器,已通过实验验证。根据不同的耦合模式和移相器,VM-PT低温冷却器可以设计成几种配置。本文对VM-PT低温冷却器的三种典型类型进行了数值研究,分别是室温移相器(GCRP)的气体耦合模式,冷移相器(GCCP)的气体耦合模式和冷相的热耦合模式移位器(TCCP)。首先,针对运行参数优化了三种配置,以实现更低的空载温度。然后,基于仿真结果,给出并讨论了声功率,焓流,压力波和体积流率的分布,以更好地理解能量流的特性和耦合机理。同时,还进行了相关系和火用损失的分析。此外,构建并测试了在三种配置中具有最佳综合性能的GCCP实验系统。实验结果表明与仿真具有很好的一致性。最后,在压力比为1.7,工作频率为1.22 Hz,平均压力为1.5 MPa的条件下,获得了3.39 K的空载温度和4.2 K的9.75 mW的冷却功率。 (C)2016 Elsevier Ltd.保留所有权利。

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