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三元混合制冷工质变组成容量控制空调 被引量:1

Varying composition capacity control air conditioning system with ternary refrigerant mixture
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摘要 通过对三元混合工质制冷剂R407C分馏特性的分析,提出了一种采用组成调节装置的容量控制空调系统,并对其变组成容量控制的制冷循环特性进行了理论分析,预测了各种变组成情况下空调系统的调节性能和节能潜力.利用建立的变组成容量控制型单元式空调系统,测试了不同组成下的三元混合制冷剂的空调系统性能.根据实验测试结果,验证了在相同流量工况下,通过改变循环工质的组成来改变空调系统的制冷量的技术可行性,通过增减容量过程中能效比基本保持不变的性质揭示了该技术的节能特性. On the basis of theoretical analysis of the separation characteristic of the non-azeotropic ternary refrigerant mixtures R407C, a varying composition capacity control air conditioning system is introduced in this paper. According to the theoretical refrigeration cycle performance analysis, the adjustment performance and energy saving potential of the system were analyzed. The air conditioning system's cycle performance using ternary refrigerant mixtures of different compositions was tested. The cooling capacity could be adjusted by varying the composition of the refrigerant mixture at the same flow rate. The energy efficiency ratio could be maintained relatively constant, saving energy when the system runs beyond the design conditions.
出处 《化工学报》 EI CAS CSCD 北大核心 2006年第3期515-520,共6页 CIESC Journal
基金 上海市教委发展基金项目(03GK06) 上海市重点学科建设项目(T0503)
关键词 R407C 三元混合工质 变组成 容量调节 空调系统 R407C ternary refrigerant mixture varying composition capacity control air conditioning system
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  • 1马一太,吕灿仁,严晋跃.用非共沸混合工质R22/R142b实现劳伦兹循环代替R12的研究[J].工程热物理学报,1990,11(1):21-23. 被引量:8
  • 2杨昭,马一太,吕灿仁,李丽新.一种新的变浓度容量调节系统及其动态特性和参数优化[J].工程热物理学报,1997,18(2):141-144. 被引量:5
  • 3D R. Defibaugh, G Morrison. Interaction Coefficients for15 Mixtures of Flammable and Non-Flammable Components. Int. J. Refrig, 1995, 18(8): 518-523.
  • 4J g Sand, S K Fischer, J A Jones. Carnahan-Starling-DeSantis and Lee-Kesler-Plocker Interaction Coefficients for Several Binary Mixtures of Ozone-Safe Refrigerants.Int. J. Refrig, 1994, 17(2): 123-129.
  • 5U Plocker, H Knapp. Calculation of High-Pressure Vapor-Liquid Equilibria from a Corresponding-States Correlation with Emphasis on Asymmetric Mixtures.Ind. Eng. Chem. Process Des. Dev., 1978, 17(3): 324-332.
  • 6M Nagel, K Bier. Vapor-Liquid Equilibrium of Ternary Mixtures of the Refrigerants RB2, R125 and R134a. Int.J. Refrig, 1995, 18(8): 534-543.
  • 7M Nagel, K Bier. Vapor-Liquid Equilibrium of Ternary Mixtures of the Refrigerants R125, R143a and R134a. Int.J. Refrig, 1996, 19(4): 264-271.
  • 8J SLim, J Y Park, B G Lee. Vapor-Liquid Equilibria of CFC Alternative Refrigerant Mixtures: HFC-23+HFC-32, HFC-23+HFC-125, and HFC-125+HFC-152a. Int. J.of Thermophysics, 2000, 21(6): 1339-1349.
  • 9J V Widiatmo, T Fujimine, H Sato, et al. Liquid Densities of Alternative Refrigerants Blended with Difluoromethane, Pentafluorothane, and 1,1,1,2-Tetrafluoroethane. J. Chem. Eng. Data, 1997, 42(2): 270-277.
  • 10H L Zhang, H Sato, K Watanabe. Thermodynamic Property Representation for the R32/R125 Binary System bya New Cubic Equation of State. Int. J. Refrig, 1997,20(6): 441-451.

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