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Experimental investigation of the discharge valve dynamics in a reciprocating compressor for trans-critical CO_2 refrigeration cycle

机译:跨临界CO_2制冷循环往复式压缩机排气阀动力学特性的实验研究

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The self-acting valve has a significant influence on the efficiency and reliability of the reciprocating compressor. In the trans-critical CO_2 cycle, the large density and high pressure difference across the valve cause serious bending and impact stresses in the valve, offering great challenges for successful valve design. Experimental investigation of the valve dynamics is required in order to design a self-acting valve with a high efficiency and long life span for the trans-critical CO_2 compressor. A semi-hermetic reciprocating compressor was developed for application in CO_2 refrigeration, and a test system was incorporated into the compressor performance test rig, with a focus on investigating the dynamics of the discharge valves. With the experimental results, the movement of the valve was discussed in detail for the trans-critical CO_2 compressor, allowing for the study of the thermodynamic performance of the compressor. While varying design parameters such as pressure ratio, valve lift, spring stiffness and compressor speed, the movement of the discharge valve in the reciprocating CO_2 compressor was measured in order to investigate the major factors that influence the valve dynamics. The average valve speed increased from 0.71 m/s to 0.81 m/s as the discharge pressure changed from 7.8 MPa to 12 MPa. The experimental methods and results discussed in this paper could provide useful information for both valve testing and the optimization of their reliability in trans-critical CO_2 compressors.
机译:自作用阀对往复式压缩机的效率和可靠性有重大影响。在跨临界CO_2循环中,整个阀门的大密度和高压差会导致阀门内严重的弯曲和冲击应力,这对成功进行阀门设计提出了巨大挑战。为了对跨临界CO_2压缩机设计具有高效率和长寿命的自作用阀,需要对阀动力学进行实验研究。开发了一种用于CO_2制冷的半密封往复式压缩机,并将测试系统集成到了压缩机性能测试台中,重点是研究排气阀的动态特性。通过实验结果,对跨临界CO_2压缩机的阀门运动进行了详细讨论,从而可以研究压缩机的热力学性能。在改变设计参数(例如压力比,气门升程,弹簧刚度和压缩机速度)的同时,对排气阀在CO_2往复式压缩机中的运动进行了测量,以研究影响气门动力学的主要因素。随着排出压力从7.8 MPa变为12 MPa,平均阀速从0.71 m / s增加到0.81 m / s。本文讨论的实验方法和结果可为阀门测试以及优化跨临界CO_2压缩机的可靠性提供有用的信息。

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