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Experimental investigation on a transcritical CO2 ejector expansion refrigeration system with two-stage evaporation

机译:两阶段蒸发跨临界CO2喷射器膨胀制冷系统的实验研究

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Adding a two-stage evaporator in the transcritical CO2 ejector expansion refrigeration system can not only regulate the quality equilibrium of system refrigerant but also improve the system performance. This paper presents an experimental study on the transcritical CO2 ejector expansion refrigeration system with two-stage evaporation under variable operating conditions. Some key performance indicators such as gas cooler pressure, mass flow rate, entrainment ratio and pressure lift ratio of ejector, cooling capacity and COP of system were evaluated through varying the volumetric flow rate of the second evaporator chilled water V-te,V-wa,V- area ratio of ejector A(t)/A(mix), compressor speed N and expansion valve opening The present results indicated that the second evaporator played a significant role in improving the system performance, and such improvement was more evident for smaller entrainment ratio. Greater gas cooler pressure, pressure lift ratio of ejector and cooling capacity of system could be obtained by increasing the volumetric flow rate V-te,V-wa,V- and compressor speed. The small area ratio of ejector was conducive to high gas cooler pressure, great entrainment ratio of ejector as well as large cooling capacity and COP of system. This study provides an approach for the improvement of ejector expansion refrigeration system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在跨临界CO2喷射器膨胀制冷系统中添加两级蒸发器,不仅可以调节系统制冷剂的质量平衡,还可以提高系统性能。本文介绍了在可变操作条件下具有两级蒸发的跨临界CO2喷射器膨胀制冷系统的实验研究。通过改变第二蒸发器冷却水V-TE,V-WA的水解器,V-WA的体积流量来评估喷射器,冷却能力和系统的气体冷却压力,质量流量,夹带比和压力升力比和系统的一些关键性能指标。 ,喷射器A(t)/ a(混合)的V-面积比,压缩机速度n和膨胀阀打开本结果表明,第二蒸发器在提高系统性能方面发挥了重要作用,并且这种改进更明显夹带比率。通过增加体积流量V-TE,V-WA,V形和压缩机速度,可以获得更大的气体冷却器压力,系统的压力升程和系统的冷却能力。喷射器的小面积比有利于高气体冷却压力,喷射器的夹带比和大的冷却能力和系统COP。本研究提供了一种改进喷射器膨胀制冷系统的方法。 (c)2017 Elsevier Ltd.保留所有权利。

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