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Frontiers in Energy

ISSN 2095-1701

ISSN 2095-1698(Online)

CN 11-6017/TK

邮发代号 80-972

2019 Impact Factor: 2.657

Front. Energy  2010, Vol. 4 Issue (3): 301-305   https://doi.org/10.1007/s11708-010-0006-0
  Research articles 本期目录
Entropy flow, entropy generation, exergy flux, and optimal absorbing temperature in radiative transfer between parallel plates
Entropy flow, entropy generation, exergy flux, and optimal absorbing temperature in radiative transfer between parallel plates
Zeshao CHEN,Songping MO,Peng HU,Shouli JIANG,Gang WANG,Xiaofang CHENG,
Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026, China;
 全文: PDF(144 KB)  
Abstract:Taking nonequilibrium radiative heat transfer between two surfaces as an example, the nonequilibrium thermodynamics of radiation is studied and discussed. The formulas of entropy flow, entropy generation, exergy flux, and optimal temperature of absorbing surface for maximum exergy output are derived. The result is a contribution to the thermodynamic analysis and optimization of solar energy utilization and can be applied in more complex radiative heat transfer cases.
Key wordsradiative heat transfer    entropy generation    exergy    thermodynamics
出版日期: 2010-09-05
 引用本文:   
. Entropy flow, entropy generation, exergy flux, and optimal absorbing temperature in radiative transfer between parallel plates[J]. Front. Energy, 2010, 4(3): 301-305.
Zeshao CHEN, Songping MO, Peng HU, Shouli JIANG, Gang WANG, Xiaofang CHENG, . Entropy flow, entropy generation, exergy flux, and optimal absorbing temperature in radiative transfer between parallel plates. Front. Energy, 2010, 4(3): 301-305.
 链接本文:  
https://academic.hep.com.cn/fie/CN/10.1007/s11708-010-0006-0
https://academic.hep.com.cn/fie/CN/Y2010/V4/I3/301
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