期刊文献+

换热器熵产分析 被引量:1

Entropy Production of Heat Exchanger
在线阅读 下载PDF
导出
摘要 在余热发电系统中,换热器直接将热源中的热量吸收传递到系统中,然后将从透平中出来的工质冷凝,其性能好坏直接影响了整个系统的效率。本文引入了无量纲熵产数Ns表示换热器的热力完善程度,并且通过熵产分析,揭示了换热器能耗产生的原因,确定了最佳的热力参数匹配,能够更好的完成节能目的。对于工业中余热发电项目的优化具有重要参考意义。 In the waste heat power generation system, the heat exchanger directly absorb heat from the heat source and passed into the system, then the hydraulic mediums condensate from the turbine, its performance is good or bad have a direct impact on overall system efficiency. The paper introduces the dimensionless entropy generation number Ns which represents heat exchanger heat degree of perfection, and with entropy generation analysis, reveals the causes of the heat exchanger energy consumption to determine the best match the thermal parameters, so that the energy save purpose is achieved. For the optimization of industrial waste heat power generation project, this article has important reference significance.
出处 《船电技术》 2012年第B08期35-37,41,共4页 Marine Electric & Electronic Engineering
关键词 换热器性能参数 余热发电 熵产数 热力匹配 heat exchanger performance parameters waste heat power generation entropy generation number Thermal match
  • 相关文献

参考文献4

  • 1余敏,马俊杰.换热器特性参数与热力性能熵产分析.上海理工大学.热能动力工程,2000.
  • 2过曾元.热流体学.北京:清华大学出版社,1992.
  • 3杨东华.不可逆过程热力学原理及工程应用.北京.科学出版社.1987.
  • 4李友荣,吴双应.低温换热器的效率分析[J].低温工程,1995(6):32-36. 被引量:6

二级参考文献1

共引文献5

同被引文献12

  • 1余敏,马俊杰,杨茉,卢玫.换热器特性参数与热力性能熵产分析[J].热能动力工程,2007,22(4):399-403. 被引量:13
  • 2倪振伟.换热器的熵增计算法与总熵增率.工程热物理学报,1988,9(1):4-6.
  • 3Choi S. Enhancing Thermal Conductivity of Fluids with Nanoparticles [ J ]. ASME-Publications-Fed, 1995,23 ! (66) : 99 - 106.
  • 4Kumaresan V, Mohaideen Abdul Khader S, Karthikey- an S,et al. Convective Heat Transfer Characteristics of CNT Nanofluids in a Tubular Heat Exchanger of Vari- ous Lengths for Energy Efficient Cooling/Heating Sys- tem [ J]. International Journal of Heat and Mass Trans-fer,2013,60:413 -421.
  • 5Aly W I A. Numerical Study on Turbulent Heat Trans- fer and Pressure Drop of Nanofluid in Coiled Tube-in- Tube Heat Exchangers [ J ]. Energy Conversion and Management,2014,79:304 ~ 316.
  • 6Sarafraz M M,Hormozi F. Convective Boiling and Par- ticulate Fouling of Stabilized CuO-ethylene Glycol Nanofluids Inside the Annular Heat Exchanger[J]. In- ternational Communications in Heat and Mass Trans- fer,2014,53 : 116 - 123.
  • 7倪振伟.换热器的热力学第二定律分析与评价方法[J].工程热物理学报,1985,6(4):311-314.
  • 8柳雄斌,孟继安,过增元.换热器参数优化中的熵产极值和火积耗散极值[J].科学通报,2008,53(24):3026-3029. 被引量:54
  • 9李金凯,赵蔚琳,刘宗明,韩亚东.氧化硅纳米流体的导热性能研究[J].化工机械,2010(4):405-408. 被引量:4
  • 10朱建军,王建立,李震,张兴.微细管碳纳米管悬浮液强制对流换热实验研究[J].工程热物理学报,2011,32(7):1211-1214. 被引量:5

引证文献1

二级引证文献2

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