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An approximate analytic model for flow through capillary tubes 被引量:3

An approximate analytic model for flow through capillary tubes
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摘要 An analytic model for working fluids flowing through capillary tubes has been established with the approximate integral method. All the possible flow regimes in the capillary tubes,including subcooled, two-phase and superheated regimes, are covered in the model, and different analytic solutions are given respectively for each flow regime. As examples, the mass flow rates of refrigerants R12, R134a and R600a through capillary tubes are predicted by the model,and compared with those evaluated by a general distributed-parameter model. The mean bias falls into 1% and the maximum bias is 2.2%, while the computation speed of the new model is more than one order of magnitude higher than that of the distributed-parameter one. An analytn model for working fluids flowing through capillary tubes has been established with the approximate integral method. All the possible flow regimes in the capillary tubes, including subcooled, two-phase and superheated regimes, are covered in the model, and different analytic solutions are given respectively for each flow regime. As examples, the mass flow rates of refrigerants R12, R134a and R600a through capillary tubes are predicted by the model, and compared with those evaluated by a general distributed-parameter model. The mean bias falls into 1% and the maximum bias is 2.2%, while the computation speed of the new model is more than one order of magnitude higher than that of the distributed-parameter one.
出处 《Chinese Science Bulletin》 SCIE EI CAS 1999年第7期668-670,共3页
关键词 CAPILLARY TUBE model refrigerant. capillary tube model refrigerant
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同被引文献14

  • 1卢智利,丁国良.蒸发器并联双循环冰箱的温度与分时运行控制策略 Ⅰ.理论分析[J].上海交通大学学报,2006,40(2):267-271. 被引量:11
  • 2卢智利,丁国良.蒸发器并联双循环冰箱的温度与分时运行控制策略 Ⅱ.实验验证[J].上海交通大学学报,2006,40(2):272-276. 被引量:13
  • 3丁国良.制冷空调装置的计算机仿真技术[J].科学通报,2006,51(9):998-1010. 被引量:31
  • 4林恩新,丁国良.多箱室间冷式冰箱动态仿真[c].2009年上海市制冷学会学术年会.
  • 5Ding G L. Recent developments in simulation techniques for vapour-compression refrigeration systems [ J ]. Interna- tional Journal of Refrigeration, 2007, 30(7) : 1119-1133.
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  • 7Melo C,Vieira L A T, Pereira R H. Non-adiabatic capillary tube flow with isobutane [ J ]. Applied Thermal Engineer-ing, 2002, 22(14) :1661-1672.
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  • 10Yilmaz T, Unal S. General equation for the design of capil- lary tubes[J]. Trans. ASME, 1996, 118(2): 150-154.

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