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Quantifying Efficiency Gains of Refrigeration Systems Using Advanced Expansion Valve Technology

机译:使用先进的膨胀阀技术量化制冷系统的效率增益

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摘要

Commercial and industrial refrigeration systems consume a significant portion of U.S. electrical energy. In this research, advanced expansion valve and control algorithms are evaluated to quantify the potential energy savings due to improved system regulation and efficient start-up of vapor-compression refrigeration systems. The performance of the new micro-electromechanical system (MEMS) actuators with different control strategies is compared with that of the standard mechanical valves and a commercially available superheat controller. Additionally, this research includes a comprehensive set of experimental tests that identify the most effective elements of advanced valve control strategies, including the impact of refrigerant migration control strategies. The experimental results confirm that 30% to 50% improvements in cyclic coefficient of performance (COP) are possible using improved expansion valve controls, while the benefits of preventing refrigerant migration do not outweigh the additional cooling achieved if refrigerant continues to flow through the expansion valve during the compressor OFF period.
机译:商业和工业制冷系统消耗了很大一部分美国电能。在这项研究中,对先进的膨胀阀和控制算法进行了评估,以量化由于改进的系统调节和蒸汽压缩制冷系统的有效启动而可能节省的能源。将具有不同控制策略的新型微机电系统(MEMS)执行器的性能与标准机械阀和市售过热控制器的性能进行了比较。此外,这项研究还包括一套全面的实验测试,可以确定高级阀门控制策略的最有效要素,包括制冷剂迁移控制策略的影响。实验结果证实,使用改进的膨胀阀控制装置可将性能循环系数(COP)提高30%到50%,而如果制冷剂继续流经膨胀阀,防止制冷剂迁移的好处不会超过额外的冷却效果。在压缩机关闭期间。

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  • 来源
    《ASHRAE Transactions》 |2016年第2期|89-101|共13页
  • 作者

    Kaimi Gao; Bryan P. Rasmussen;

  • 作者单位

    Department of Mechanical Engineering at Texas A&M University, College Station, TX;

    Department of Mechanical Engineering at Texas A&M University, College Station, TX;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
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