期刊文献+

不同有机工质对太阳能低温热发电效率的影响 被引量:8

EFFECT OF WORKING FLUIDS ON THE EFFICIENCY OF LOW-TEMPERATURE SOLAR THERMAL-ELECTRIC POWER GENERATION SYSTEM
下载PDF
导出
摘要 建立了带有工质液态区与两相区二级蒸发器的太阳能低温热发电系统模型。研究工质液态区集热器效率随蒸发器中换热流体和工质两者质量流量比变化的函数关系,并在最佳质量流量比条件下比较不同工质对集热器整体效率的影响。研究发现,相同蒸发温度条件下两相区吸热量与液态区吸热量比值越小的工质,对应的集热器整体效率越高。把不同工质对ORC效率的影响进行对比,指出具有最高的ORC效率的工质并不能同时获得最高的集热效率。对该文研究的热发电系统,在750W/m^2的辐照条件下,R113相比于其它工质发电效率最高,系统最大发电效率达到8.0%。 The low-temperature solar-thermal-electric power generation system with two-stage evaporators of liquid-area evaporator and saturated-area evaporator was modularized. The relation between the liquid-heat exchanger thermal effi- ciency and the mass ratio of heat transfer fluid to organic fluid was studied. With the optimum mass ratio the influence of each organic fluid on the total thermal efficiency of collectors was shown. The result indicated that when the evaporation temperature for all the organic fluids is kept constant, the fluid with smaller ratio of the latent heat to the heat needed for liquid-temperature increasing can lead to higher thermal efficiency of the collectors. The influence of organic fluids on the efficiency of collectors is not consistent with that on thermal efficiency of ORC and the fluid that achieves the highest ORC efficiency isn' t able to gain the highest efficiency of collectors. Among the researched organic fluids, R113 is the most effective one and the maximum efficiency is 8.0% with an insolation of 750W/m^2.
出处 《太阳能学报》 EI CAS CSCD 北大核心 2010年第5期581-587,共7页 Acta Energiae Solaris Sinica
基金 国家自然科学基金(50708105) 安徽省自然科学基金(070414161)
关键词 有机工质 太阳能 热发电 发电效率 organic fluids solar energy thermal-electric power generation efficiency
  • 相关文献

参考文献10

  • 1Huang T C,Shai T Y,Wang S K.A review of Organic Rankine Cycles(ORCs) for the recovery of low-grade waste heat[J].Energy,1997,22:661-667.
  • 2Hung T C.Waste heat recovery of organic Rankine cycle us-ing dry fluids[J].Energy Conversion and Management,2001.42:539-553.
  • 3Liu Bo-Tau,Chien Kuo-Hsiang,Wang Chi-Chuan.Effect ofworking fluids on orsanic Bankine cycle for waste heat recov-ery[J].Energy,2004,29:1207-1217.
  • 4Bahaa Saleh,Gerald Koglbauer,Martin Wendland,et al.Workins fluids for low-temperature organic Rankine cycles[J].Energy,2007,32:1210-1221.
  • 5Hettiarachchi H D M,Golubovic Mihajlo,Worek William M,et al.Ootimum design criteria for an Organic Rankine cycle using low-temgperature geothermal heat sources[J].Energy,2007.32:1698-1706.
  • 6顾伟,翁一武,王艳杰,翁史烈.低温热能有机物发电系统热力分析[J].太阳能学报,2008,29(5):608-612. 被引量:71
  • 7弗兰克P·英克鲁佩勒,大卫P·德维特,等(著),葛新石,叶宏(译).传热和传质基本原理[M].化学工业出版社,2007.
  • 8Wang H,Toubler S.Distributed and non-steady-state model-ing of an air cooler[J].International Journal of Refrigeration,1994,14(2):98-111.
  • 9Tripanagnostopoulos Y,Yianoulis P,Papaefthimiou S,et al.CPC solar collecotors with flat bifacial absorbers[J].Solar energy,2000,69:191-203.
  • 10Ritter Solar product catalog 2004,http://www.zeussolar.si/images/soncni_kolektotji/SONCNI_KOLEKTORJI_KATALOG_2004_nem.pdf.

二级参考文献14

  • 1沈维道.工程热力学[M].北京:高等教育出版社,2000.
  • 2Hung T C, Shai T Y, et al. A review of organic rankine cycles (ORCs) for the recovery of low-grade waste heat [ J ]. Energy, 1997, 22(7): 661-667.
  • 3Hung Tzu-Chen. Waste heat recovery of organic Rankine cycle using dry Fluids [ J ]. Energy Conversion and Management, 2001, 42 (5): 539-553.
  • 4Badr O, O'Callaghan, et al. Thermodynamic and thermophysical properties of organic working fluids for Rankine cycle engines[J]. Applied Energy, 1985, 19 (1):1140.
  • 5Badr O, Probert S D, et al. Selecting a working fluid for a rankine cycle engine[J]. Applied Energy, 1985, 21(1):1- 42.
  • 6Wei Donghong, Lu Xuesheng, et al. Performance analysis and optimization of organic Rankine cycle (ORC) for waste heat recovery [ J ]. Energy Conversion and Management, 2007, 48(4) : 1110-1121.
  • 7Badr O, O'Callaghan P W, et al. Multi-vane expanders as prime movers for low-grade organic Rankine cycle engines [J]. Applied Energy, 1984, 16(2):129-146.
  • 8Badr O, Naik S, et al. Expansion machine for a low poweroutput steam Rankine-cycle engine [ J]. Applied Energy, 1991, 39 (2) :93-116.
  • 9Andersen W C, Bruno T J. Rapid screening of fluids for chemical stability in organic rankine cycle apphcations[ J]. Industrial and Engineering Chemistry Research, 1985, 44 (15) : 5560-5566.
  • 10Ronald DiPippo. Second law assessment of binary plants generating power from low-temperature geothermal fluids [ J ]. Geothermics, 2004, 33 (5): 565-586.

共引文献70

同被引文献111

引证文献8

二级引证文献43

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