期刊文献+

Investigation on the Pinch Point Position in Heat Exchangers 被引量:2

Investigation on the Pinch Point Position in Heat Exchangers
原文传递
导出
摘要 The pinch point is important for analyzing heat transfer in thermodynamic cycles.With the aim to reveal the importance of detennining the accurate pinch point,the research on the pinch point position is carried out by theoretical method.The results show that the pinch point position depends on the parameters of the heat transfer fluids and the major fluid properties.In most cases,the pinch point locates at the bubble point for the evaporator and the dew point for the condenser.However,the pinch point shifts to the supercooled liquid state in the near critical conditions for the evaporator.Similarly,it shifts to the superheated vapor state with the condensing temperature approaching the critical temperature for the condenser.It even can shift to the working fluid entrance of the evaporator or the supercritical heater when the heat source fluid temperature is very high compared with the absorbing heat temperature.A wrong position for the pinch point may generate serious mistake.In brief,the pinch point should be founded by the iterative method in all conditions rather than taking for granted. The pinch point is important for analyzing heat transfer in thermodynamic cycles. With the aim to reveal the importance of determining the accurate pinch point, the research on the pinch point position is carried out by theoretical method. The results show that the pinch point position depends on the parameters of the heat transfer fluids and the major fluid properties. In most cases, the pinch point locates at the bubble point for the evaporator and the dew point for the condenser. However, the pinch point shills to the supercooled liquid state in the near critical conditions for the evaporator. Similarly, it shifts to the superheated vapor state with the condensing temperature approaching the critical temperature for the condenser. It even can shift to the working fluid entrance of the evaporator or the supereritical heater when the heat source fluid temperature is very high compared with the absorb- ing heat temperature. A wrong position for the pinch point may generate serious mistake. In brief, the pinch point should be founded by the itcrativc method in all conditions rather than taking for granted.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第3期258-265,共8页 热科学学报(英文版)
基金 Project 51306198 supported by National Natural Science Foundation of China is gratefully acknowledged
关键词 夹点技术 换热器 位置 临界温度 热力学循环 蒸发器 流体性质 临界条件 pinch point position, heat exchanger, heat transfer, phase transition, supercritical condition
  • 相关文献

参考文献15

  • 1Saleh B, Koglbauer G., Wendland M, Fischer J. Working fluids for low-temperature organic Rankine cycles. Energy 2007; 32(7): 1210-1221.
  • 2Karellas S, Schuster A, Leontaritis AD. Influence of su- percritical ORC parameters on plate heat exchanger de- sign. Appl Therm Eng 2012; 33-34: 70-76.
  • 3He C, Liu C, Gao H, Xie H, Li YR, Wu S, Xu J. The op- timal evaporation temperature and working fluids for subcritical organic Rankine cycle. Energy 2012; 38(1): 136-143.
  • 4Ryms M, Py T, Klugmann-Radziemska E. Adapting the pinch point analysis to improve the ORC design process. Int J Energy Res 2013; DOI: 10. 1002/er.3011.
  • 5Chen H, Goswami DY, Rahman MM, Stefanakos EK. A supercritical Rankine cycle using zeotropic mixture working fluids for the conversion of low-grade heat into power. Energy 2011; 36(1): 549-555.
  • 6Venkatarathnam G,Mokashi C, Murthy SS. Occurrence of pinch points in condensers and evaporators for zeo-tropic refrigerant mixtures. Int J Refrig 1996; 19(6): 361- 368.
  • 7Venkatarathnam G, Murthy SS. Effect of mixture compo- sition on the formation of pinch points in condensers and evaporators for zeotropic refrigerant mixtures. Int J Re- fi-ig 1999; 22(3): 205-215.
  • 8Liu Z, Zhao L, Zhao X, Li H. The occurrence of pinch point and its effects on the performance of high tempera- ture heat pump. Appl Energ 2012; 97(9): 869-875.
  • 9Zebian H, Mitsos A. A double-pinch criterion for rege- nerative Rankine cycles. Energy 2012; 40(1): 258-270.
  • 10Li YR, Wang JN, Du MT. Influence of coupled pinch point temperature difference and evaporation temperature on performance of organic Rankine cycle. Energy 2012; 42(1): 503-509.

同被引文献10

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部