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Experimental Studies Towards Development of a Single Stage High Refrigerating Capacity G-M Type Pulse Tube Refrigerator

机译:单级高制冷量G-M型脉冲管制冷机研制的实验研究

摘要

The absence of moving components at low temperature end gives the pulse tube refrigerator(PTR)a great leverage over other cryocoolers like Stirling and G-M refrigerators that are conventionally in use for several decades.PTR has greater reliability;no electric motors to cause electromagnetic interference,no sources of mechanical vibration in the cold head and no clearance seal between piston and cylinder.Moreover,it is a relatively low cost device with a simple yet compact design.The objectives of the present work is to design,fabricate and test a single stage G-M type pulse tube refrigerator and study its performances.Experimental studies consists of cooling behavior of the refrigeration system at different cold end temperatures and optimization of orifice and double inlet openings at different pressures.The developed pulse tube refrigerator consists of compressor,rotary valve, regenerator,pulse tube,hot end heat exchanger,orifice valve and double inlet valve,reservoir or buffer,vacuum chamber and coupling accessories etc.Regenerator and pulse tube have been chosen according to the literature available.Hot end heat exchanger has been designed and fabricated with respect to the regenerator and pulse tube geometry.The assembly of the components has been done in such a way that the set-up can be used as basic pulse tube refrigerator,orifice pulse tube refrigerator or double inlet pulse tube refrigerator as and when required.This has enabled thorough comparison among them.The effect of operating conditions such as average pressure and pressure ratio of the compressor also has been found out.The optimum operating conditions such as opening of the orifice and double inlet valves have been selected according to the performance i.e. minimum attainable temperature at no load condition.Effect of orifice and double inlet openings at different pressures has been detected by applying the pressure sensors across at various positions in the system.Correspondingly,pressure variations at regenerator inlet,pulse tube and reservoir has been determined.
机译:低温端不存在活动部件,使得脉冲管制冷机(PTR)优于其他使用了数十年的斯特林和GM制冷机等低温制冷机。PTR具有更高的可靠性;没有电动机会引起电磁干扰,冷头无机械振动源,活塞与气缸之间无间隙密封。而且,它是一种成本相对较低的设备,具有简单而紧凑的设计。本工作的目的是设计,制造和测试单个阶段GM型脉冲管制冷机并对其性能进行了研究。实验研究包括制冷系统在不同冷端温度下的冷却性能以及在不同压力下对节流孔和双入口的优化。开发的脉冲管制冷机由压缩机,旋转阀,再生器组成,脉冲管,热端换热器,节流阀和双进水阀,储液罐或缓冲器,真空腔室和耦合附件等。根据现有文献选择了蓄热室和脉冲管。已针对蓄热室和脉冲管的几何形状设计和制造了热端热交换器。该装置可以根据需要用作基本脉冲管制冷机,孔口脉冲管制冷机或双入口脉冲管制冷机的方式。这使得它们之间可以进行全面比较。平均压力和压力比等操作条件的影响根据性能,即空载条件下的最低可达到温度,选择了最佳的工作条件,如节流孔和双入口阀的开度。在不同压力下,节流孔和双入口的影响通过在系统中的各个位置应用压力传感器可以检测到压力。相应地,压力变化已确定再生器入口,脉冲管和储液器的位置。

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    Manoj K N Sai;

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  • 年度 2016
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