Stirling pulse tube cryocooler using an active displacer

被引:15
作者
Abolghasemi, Mohammad Amin [1 ]
Liang, Kun [2 ]
Stone, Richard [1 ]
Dadd, Mike [1 ]
Bailey, Paul [1 ]
机构
[1] Univ Oxford, Dept Engn Sci, Oxford, England
[2] Univ Sussex, Dept Engn & Design, Brighton, E Sussex, England
基金
英国工程与自然科学研究理事会;
关键词
Stirling cycle; Pulse tube; Cryocooler; Active displacer; Phase optimisation; INERTANCE;
D O I
10.1016/j.cryogenics.2018.10.004
中图分类号
O414.1 [热力学];
学科分类号
摘要
An in-line pulse tube cryocooler with an active displacer has been built and its performance has been examined in detail by experimental measurements and numerical modelling. An active displacer allows the mass flow at the cold end to be easily adjusted for optimum performance. It is demonstrated that both cooling power and relative Carnot efficiency have optimum phase values that are different. It is also shown that the phase optimisations are not critical good - performance is achieved over a significant range. The pulse tube cryocooler can deliver up to 3.8 W of cooling at 80 K with an input power of 88 W (shaft power of 69 W) when operating at optimal phase. Moreover, a numerical Sage model is used to enhance our understanding behind the trends observed by examining the mass flow and pressure pulse at the cold end. It is shown that the variation in phase of the active displacer helps boost the cryocooler performance by increasing the amplitude of the mass flow at the cold end and not by adjusting the phase of the mass flow. The Sage model is also used to demonstrate that using a displacer in place of an inertance tube can result in a more efficient cryocooler.
引用
收藏
页码:53 / 61
页数:9
相关论文
共 15 条
[1]  
[Anonymous], ADV CRYOG ENG
[2]   Experimental analysis of free warm expander pulse tube [J].
Brito, MC ;
Peskett, GD .
CRYOGENICS, 2001, 41 (10) :757-762
[3]   Performance of the inertance pulse tube [J].
de Boer, PCT .
CRYOGENICS, 2002, 42 (3-4) :209-221
[4]   Use of inertance in orifice pulse tube refrigerators [J].
Gardner, DL ;
Swift, GW .
CRYOGENICS, 1997, 37 (02) :117-121
[5]  
Gedeon D, 1997, CRYOCOOLERS 9, P385
[6]  
GEDEON D, 1995, CRYOCOOLERS 8, P281
[7]   IDEAL ORIFICE PULSE TUBE REFRIGERATOR PERFORMANCE [J].
KITTEL, P .
CRYOGENICS, 1992, 32 (09) :843-844
[8]   Numerical simulation of a GM-type pulse tube cryocooler system: Part I. Characterization of compressors [J].
Liu, Dongli ;
Dietrich, Marc ;
Thummes, Guenter ;
Gan, Zhihua .
CRYOGENICS, 2017, 81 :8-13
[9]   Numerical simulation of a GM-type pulse tube cryocooler system: Part II. Rotary valve and cold head [J].
Liu, Dongli ;
Dietrich, Marc ;
Thummes, Guenter ;
Gan, Zhihua .
CRYOGENICS, 2017, 81 :100-106
[10]  
Radebaugh R., 2001, PROC F I F REFRIGERA, V96, P11