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Experimental investigation of a pilot compression chiller with alternatives refrigerants using compact heat exchanger

机译:使用紧凑型热交换器的替代性制冷剂中试压缩式冷却器的实验研究

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This paper reports the results of an experimental investigation on a pilot compression chiller working with R407C and R410A as R22 alternatives using compact heat exchanger. Experiments are conducted and the influences of the cooling water mass flow rate (200-2500 kg/h), cooling water inlet temperature (20-45 ℃) and chilled water mass flow rate (200-1500 kg/h) on performance characteristics of chillers are evaluated for R22, R407C and R410A. Increasing the cooling water mass flow rate or decreasing its inlet temperature causes the operating pressures and electric input power to decrease while the cooling capacity and coefficient of performance (COP) increase. The pressure ratio is reduced while actual loads and COP are increased with the chilled water mass flow rate. The effect of cooling water inlet temperature on the system performance is more significant than the effects of cooling and chilled water mass flow rates. Comparison between R22, R407C and R410A under identical operating conditions has been done. An enhancement is obtained when using compact heat exchanger than shell and tube heat exchanger, this enhancement is about 8.5% in the coefficient of performance.
机译:本文报告了对试验性压缩冷却器进行实验研究的结果,该试验性冷却器与R407C和R410A作为紧凑型热交换器的R22替代品一起使用。进行了实验,冷却水质量流量(200-2500 kg / h),冷却水入口温度(20-45℃)和冷却水质量流量(200-1500 kg / h)对性能的影响。对冷水机进行R22,R407C和R410A评估。增加冷却水质量流量或降低其入口温度会导致工作压力和输入功率降低,同时冷却能力和性能系数(COP)也会增加。压力比减小,而实际负载和COP随着冷冻水质量流量的增加而增加。冷却水入口温度对系统性能的影响比冷却和冷冻水质量流量的影响更为显着。在相同的工作条件下,R22,R407C和R410A之间进行了比较。当使用紧凑型热交换器而不是管壳式热交换器时,可获得增强,该增强的性能系数约为8.5%。

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