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Second Law Analysis of the Optimal Fin by Minimum Entropy Generation

Second Law Analysis of the Optimal Fin by Minimum Entropy Generation
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摘要 Based on the entropy generation concept of thermodynamics, this paper estabfished a general theoretical model for the analysis of entropy generation to optimize fins, in which the minimum entropy generation was selected as the object to be studied. The irreversibility due to heat transfer and friction was taken into account so that the minimum entropy generation number has been analyzed with respect to second law of thermodynamics in the forced cross-flow. The optimum dimensions of cylinder pins were discussed. It's found that the minimum entropy generation number depends on parameters related to the fluid and fin physical parameters. Varlatioms of the minimum entropy generation number with different parameters were analyzed. Based on the entropy generation concept of thermodynamics, this paper established a general theoretical model for the analysis of entropy generation to optimize fins, in which the minimum entropy generation was selected as the object to be studied. The irreversibility due to heat transfer and friction was taken into account so that the minimum entropy generation number has been analyzed with respect to second law of thermodynamics in the forced cross-flow. The optimum dimensions of cylinder pins were discussed. It’s found that the minimum entropy generation number depends on parameters related to the fluid and fin physical parameters. Variations of the minimum entropy generation number with different parameters were analyzed.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2005年第4期25-28,共4页 东华大学学报(英文版)
基金 SupportedbytheProjectofOutstandingYoungUniversityTeachersofShanghai,No.03YQHB076
关键词 forced convective heat transfer minimum entropy generation second law analysis pin fin. 最小熵 第二法则分析 热力学 广义理论模型 热传递
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参考文献3

  • 1Xiangxiang Yang and Yaxin Su.Extended surface heat transfer[]..1997
  • 2R.T.Ogulata and F.Doba,Int. Journal of Energy Heat and Mass Transfer . 1998
  • 3Adrian Bejan,Int.J. Waerme und Stoffuebertragung . 1978

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