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混合工质高温水源热泵计算机模拟 被引量:5

SIMULATION OF A HIGH TEMPERATURE WATER-TO-WATER HEAT PUMP
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摘要 针对高温混合工质热水热泵,本文提出了纯质及混合工质的热泵模拟程序;本程序详细考虑了混合工质纯传递特性对换热的影响,在只输入热泵系统结构参数以及外部换热参数的条件下,应用本程序能进行热泵系统冷热水温度、换热器温度场、制冷制热量及系统的性能参数计算。 Based on heat pump with non-azeotropic mixtures, a simulating model is provided in this paper. The model invested influence of the mixtures' transport properties on heat transfer and the system. The program can be used to simulate outlet and inlet water temperature in the evaporator and condenser, temperature field of the heat exchanger, heat capacity and cop of the heat pump, only with frame variables and heat transferring coefficients provided.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2002年第5期543-546,共4页 Journal of Engineering Thermophysics
基金 国家重点基础研究规划项目资助(No.G20000263)
关键词 混合工质 高温水源 热泵 计算机模拟 heat pump non-azeotropic mixtures heating simulation
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参考文献8

  • 1[1]Akio Miyara. Shigeru Koyama, Tetsu Fujii. Considera tion of the Performance of a Vapour Compression HeatPump Cycle Using Non-Zeotropic Refrigerant Mixtures. International Journal of Refrigeration, 1992, 15(1): 35-40
  • 2[2]Kazuo Nakatani, Mitsuhiro Ikoma, Koji Arita, et al. Development of High-Temperature Heat Pump Using Alternative Mixtures. National Technical Report, 1989, 35(6): 12-16
  • 3[3]W Vance Payne, Piotr A. Domanski and Jaroslaw Muller. NISTIR(U.S.A), 1996. 6330
  • 4[4]Domanski P A, Mclinden A O. A Simplified Cycle Simu lation Model for the Performance Rating of Refrigerants and Refrigerant Mixtures. Int. J. Refrig., 1992, 15(2): 81-88
  • 5[5]Klein S A, Mclinden A O, Laesecke A. An Improved Ex tended Corresponding States Method for Estimation of Viscosity of Pure Refrigerants and Mixtures. Int. J. Refrig., 1997, 20:208-217
  • 6[6]Mclinden M O, Klein S A, Perkins R A. An Extended Corresponding States Model for the Thermal Conductivity of Refrigerants and Refrigerant Mixtures. Int. J. Refrig., 2000, 23:43-63
  • 7[7]Cavallini A, Delcol D, Doreti L, et al. Heat Transfer and Pressure Drop During Condensation of Refrigerants Inside Horizontal Enhanced Tubes. Int. J. Refrig., 2000,23:4-25
  • 8[8]T Y Choi, Y J Kim, M S Kim, et al. Evaporation Heat Transfer of R-32, R-134a, R-32/134a, and R-32/125/134a Inside a Horizontal Smooth Tube. Int. J. Heat and Mass Transfer, 2000, 43:3651-3660

同被引文献31

  • 1Browne M W, Bansal P K. Steady-state model of centrifugal liquid chillers. International Journal of Refrigeration, 1998, 21(5) : 343-358.
  • 2Wang S W. Dynamic simulation of a building central chilling system and evaluation of EMCS on-line control strategies. Building and Environment, 1998, 33(1): 1-20.
  • 3叶振邦,常鸿寿.离心式制冷压缩机.北京:机械工业出版社,1983.
  • 4Danilova G. Heat exchangers in refrigeration plant. Leningrad, Russia.. Machinostroenie, 1986.
  • 5Browne M W, Bansal P K. Heat transfer characteristics of boiling phenomenon in flooded refrigerant evaporators. Applied Thermal Engineering, 1999, 19:595-624.
  • 6蒋能照,吴兆琳,翁文兵.新制冷工质热力学性质图和表.上海交通大学出版社,1992.
  • 7Damasceno G S, Rooke S P, Goldschmidt V W Comparison of three steady-state heat pump computer models. ASHREA Transaction, 1990, 96(2)191-204.
  • 8Stefanuk N B M, Aplevich J D, Renksizbulut M. Modeling and simulation of a superheat-controlled water-to-water heat pump. ASHREA Transaction, 1992, 98(2): 172-184.
  • 9Fu L, Ding G L, Su Z J, et al. Steady-state simulation of screw liquid chillers. Applied Thermal Engineering, 2002, 22: 1731-1748.
  • 10Zhang N, Lior N, Jin H G. The energy situation and its sustainable development strategy in China[J]. Energy, 2011, 36(6): 3639-3649.

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