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首页> 外文期刊>Journal of Thermodynamics >Effect of Condenser Fouling on Performance of Vapor Compression Refrigeration System
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Effect of Condenser Fouling on Performance of Vapor Compression Refrigeration System

机译:冷凝器结垢对蒸汽压缩制冷系统性能的影响

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摘要

Effect of condenser fouling is evaluated on the performance of a vapour compression system with refrigerants HFO1234yf and HFO1234ze as an alternative to HFC134a. The condenser coolant temperature has been varied between 35 and 40°C to evaluate the effect of fouling at different condenser temperatures. A simulation model is developed in EES for computing the results. The results have been computed by varying condenser conductance. The same has been validated with literature available before calculating the results. It is observed that the condenser fouling has larger effect on compressor power (Wcp%) as it increases up to 9.12 for R1234yf and 7.41 for R1234ze, whereas for R134a its value increases up to 7.38. The cooling capacity (Qevap%) decreases up to 13.25 for R1234yf and 8.62 for R1234ze, whereas for R134a its value decreases up to 8.76. The maximum percentage of decrease in value of COP is up to 19.29 for R1234yf and 14.47 for R1234ze, whereas for R134a its value decreases up to 14.49. The second-law efficiency is also observed to decrease with decrease in the condenser conductance. The performance of HFO1234ze is found to be better under fouled conditions in comparison to R134a and R1234yf.
机译:使用制冷剂HFO1234yf和HFO1234ze作为HFC134a的替代品,评估冷凝器结垢对蒸气压缩系统性能的影响。冷凝器冷却剂温度已在35至40°C之间变化,以评估在不同冷凝器温度下结垢的影响。在EES中开发了一个仿真模型来计算结果。通过改变电容器的电导来计算结果。计算结果之前,已有文献对这一点进行了验证。可以看出,冷凝器结垢对压缩机功率(Wcp%)的影响更大,因为R1234yf增大到9.12,R1234ze增大到7.41,而R134a的增大到7.38。 R1234yf的制冷量(Qevap%)降低至13.25,R1234ze的制冷量降低至8.62,而R134a的制冷量值降低至8.76。 R1234yf的COP值最大降低百分比最高为19.29,R1234ze的COP值最大降低百分比为14.47,而R134a的COP值最大降低百分比为14.49。还观察到第二定律效率随着电容器电导的降低而降低。发现在结垢条件下,HFO1234ze的性能比R134a和R1234yf更好。

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