Search

Article

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Principles of potential entransy in generalized flow

Cheng Xue-Tao Xu Xiang-Hua Liang Xin-Gang

Citation:

Principles of potential entransy in generalized flow

Cheng Xue-Tao, Xu Xiang-Hua, Liang Xin-Gang
PDF
Get Citation

(PLEASE TRANSLATE TO ENGLISH

BY GOOGLE TRANSLATE IF NEEDED.)

  • Some natural phenomena, such as heat transfer, molecular diffusion and electricity conduction, are very similar to each other to some extent. They all could be treated as generalized flows. Based on this kind of similarity, in this paper we generalize the theory of entransy, and define the concepts of potential entransy, potential entransy flux, and potential entransy dissipation. In the system where there is only one kind of generalized flow or two kinds of generalized flows, the conditions under which we can develop the principles of potential entransy are introduced. Furthermore, the minimum principle of potential entransy loss, the extremum principle of potential entransy dissipation and the generalized minimum flow resistance principle are developed and discussed.
    [1]

    Onsager L 1931 Phys. Rev. 37 405

    [2]
    [3]

    Onsager L 1931 Phys. Rev. 38 2265

    [4]

    Radcenco V 1994 Generalized Thermodynamics (Bucharest: Editura Techica)

    [5]
    [6]

    Chen L, Bi Y, Wu C 1999 J. Phys. D: Appl. Phys. 32 1346

    [7]
    [8]

    Chen L, Wu C, Sun F 1999 J. Non-Equilibrium Thermod. 24 327

    [9]
    [10]
    [11]

    Guo Z Y, Zhu H Y, Liang X G 2007 Int. J. Heat Mass Trans. 50 2545

    [12]

    Guo Z Y, Cheng X G, Xia Z Z 2003 Chin. Sci. Bull. 48 406

    [13]
    [14]

    Cheng X G, Li Z X, Guo Z Y 2003 J. Eng. Thermophy. 24 94 (in Chinese) [程新广、李志信、过增元 2003 工程热物理学报 24 94]

    [15]
    [16]
    [17]

    Zhu H Y, Chen Z J, Guo Z Y 2007 Prog. Nat. Sci. 17 1692 (in Chinese) [朱宏晔、陈泽敬、过增元 2007 自然科学进展 17 1692]

    [18]

    Chen L G, Wei S H, Sun F R 2008 J. Phys. D: Appl. Phys. 41 195506

    [19]
    [20]

    Chen L G, Wei S H, Sun F R 2009 J. Appl. Phys. 105 094906

    [21]
    [22]
    [23]

    Xie Z H, Chen L G, Sun F R 2009 Sci. China E 52 3504

    [24]

    Wei S H, Chen L G, Sun F R 2009 Sci. China E 52 2981

    [25]
    [26]
    [27]

    Cheng X T, Xu X H, Liang X G 2009 Sci. China E 52 2937

    [28]
    [29]

    Xiao Q H, Chen L G, Sun F R 2010 Chin. Sci. Bull. 55 3753

    [30]

    Chen Q, Ren J X 2008 Chin. Sci. Bull. 53 3753

    [31]
    [32]

    Wu J, Cheng X G, Meng J A, Guo Z Y 2006 J. Eng. Thermophy. 27 100 (in Chinese) [吴 晶、程新广、孟继安、过增元 2006 工程热物理学报 27 100]

    [33]
    [34]
    [35]

    Chen Q, Wang M R, Pan N, Guo Z Y 2009 Energy 34 1199

    [36]
    [37]

    Xiao Q H, Chen L G, Sun F R 2010 Sci. China E 55 2427

    [38]

    Wu J, Liang X G 2008 Sci. China E 51 1306

    [39]
    [40]
    [41]

    Cheng X T, Liang X G 2011 Int. J. Heat Mass Transfer 54 269

    [42]
    [43]

    Liu X B, Meng J A, Guo Z Y 2008 Prog. Nat. Sci. 18 1186

    [44]

    Liu X B, Guo Z Y 2009 Acta Phys. Sin. 58 4766 (in Chinese) [柳雄斌、过增元 2009 物理学报 58 4766]

    [45]
    [46]

    Liu X B, Meng J A, Guo Z Y 2009 Chin. Sci. Bull. 54 943

    [47]
    [48]
    [49]

    Xia S J, Chen L G, Sun F R 2009 Chin. Sci. Bull. 54 3587

    [50]
    [51]

    Guo J F, Cheng L, Xu M T 2009 Chin. Sci. Bull. 54 2708

    [52]
    [53]

    Xia S J, Chen L G, Sun F R 2010 Sci. China E 53 960

    [54]

    Xie Y J, Shi Q W, Wang X P, Zhu P P, Yang H Y, Zhang X Y 2004 Acta Phys. Sin. 53 2796 (in Chinese) [谢永军、石勤伟、王晓平、朱平平、杨海洋、张兴元 2004 物理学报 53 2796]

    [55]
    [56]
    [57]

    Huang X L, Cui S Z, Ning X B, Bian C H 2009 Acta Phys. Sin. 58 8160 (in Chinese) [黄晓林、崔胜忠、宁新宝、卞春华 2009 物理学报 58 8160]

    [58]

    Zhao R, Zhang L C, Zhang S L 2007 Acta Phys. Sin. 56 3719 (in Chinese) [赵 仁、张丽春、张胜利 2007 物理学报 56 3719]

    [59]
    [60]
    [61]

    Zhang C L, Hu S Q, Li H F, Zhao R 2008 Acta Phys. Sin. 57 3719 (in Chinese) [张丽春、胡双启、李怀繁、赵 仁 2008 物理学报 57 3328]

    [62]

    Zeng X X 2010 Acta Phys. Sin. 59 92 (in Chinese) [曾晓雄 2010 物理学报 59 92]

    [63]
    [64]

    Jin N D, Dong F, Zhao S 2007 Acta Phys. Sin. 56 720 (in Chinese) [金宁德、董 芳、赵 舒 2007 物理学报 56 720]

    [65]
    [66]
    [67]

    Guo Y F, Xu W, Li D X, Wang L 2010 Acta Phys. Sin. 59 2235 (in Chinese) [郭永峰、徐 伟、李东喜、王 亮 2010 物理学报 59 2235]

    [68]
    [69]

    Wang Q G, Zhang Z P 2008 Acta Phys. Sin. 57 1976 (in Chinese) [王启光、张增平2008 物理学报 57 1976]

    [70]

    Bejan A 1979 ASME J. Heat Transfer 101 718

    [71]
    [72]
    [73]

    Poulikakos D, Bejan A 1982 ASME J. Heat Transfer 104 616

    [74]
    [75]

    Erek A, Dincer I 2008 Int. J. Thermal. Sci. 47 1077

    [76]

    Bejan A 1982 Adv. Heat Transfer 15 1

    [77]
    [78]
    [79]

    Shah R K, Skiepko T 2004 J. Heat Transfer 126 994

    [80]
    [81]

    Cheng X T, Liang X G, Guo Z Y 2011 Chin. Sci. Bull. 56 222(in Chinese)[程雪涛、梁新刚、过增元 2011 科学通报 56 222]

    [82]
    [83]

    Cheng X T, Liang X G, Xu X H 2011 Acta Phys. Sin. 60 060512 (in Chinese) [程雪涛、梁新刚、徐向华 2011 物理学报 60 060512]

    [84]

    Chen Q 2008 Ph. D. Dissertation (Beijing: Tsinghua University) (in Chinese) [陈 群 2008 博士学位论文 (北京:清华大学)]

    [85]
    [86]

    Chen Q, Ren J X, Guo Z Y 2009 Chin. Sci. Bull. 54 1606 (in Chinese)[陈 群、任建勋、过增元 2009 科学通报 54 1606]

    [87]
    [88]

    Wang H D, Cao B Y, Guo Z Y 2010 Int. J. Heat Mass Transfer 53 1796

    [89]
  • [1]

    Onsager L 1931 Phys. Rev. 37 405

    [2]
    [3]

    Onsager L 1931 Phys. Rev. 38 2265

    [4]

    Radcenco V 1994 Generalized Thermodynamics (Bucharest: Editura Techica)

    [5]
    [6]

    Chen L, Bi Y, Wu C 1999 J. Phys. D: Appl. Phys. 32 1346

    [7]
    [8]

    Chen L, Wu C, Sun F 1999 J. Non-Equilibrium Thermod. 24 327

    [9]
    [10]
    [11]

    Guo Z Y, Zhu H Y, Liang X G 2007 Int. J. Heat Mass Trans. 50 2545

    [12]

    Guo Z Y, Cheng X G, Xia Z Z 2003 Chin. Sci. Bull. 48 406

    [13]
    [14]

    Cheng X G, Li Z X, Guo Z Y 2003 J. Eng. Thermophy. 24 94 (in Chinese) [程新广、李志信、过增元 2003 工程热物理学报 24 94]

    [15]
    [16]
    [17]

    Zhu H Y, Chen Z J, Guo Z Y 2007 Prog. Nat. Sci. 17 1692 (in Chinese) [朱宏晔、陈泽敬、过增元 2007 自然科学进展 17 1692]

    [18]

    Chen L G, Wei S H, Sun F R 2008 J. Phys. D: Appl. Phys. 41 195506

    [19]
    [20]

    Chen L G, Wei S H, Sun F R 2009 J. Appl. Phys. 105 094906

    [21]
    [22]
    [23]

    Xie Z H, Chen L G, Sun F R 2009 Sci. China E 52 3504

    [24]

    Wei S H, Chen L G, Sun F R 2009 Sci. China E 52 2981

    [25]
    [26]
    [27]

    Cheng X T, Xu X H, Liang X G 2009 Sci. China E 52 2937

    [28]
    [29]

    Xiao Q H, Chen L G, Sun F R 2010 Chin. Sci. Bull. 55 3753

    [30]

    Chen Q, Ren J X 2008 Chin. Sci. Bull. 53 3753

    [31]
    [32]

    Wu J, Cheng X G, Meng J A, Guo Z Y 2006 J. Eng. Thermophy. 27 100 (in Chinese) [吴 晶、程新广、孟继安、过增元 2006 工程热物理学报 27 100]

    [33]
    [34]
    [35]

    Chen Q, Wang M R, Pan N, Guo Z Y 2009 Energy 34 1199

    [36]
    [37]

    Xiao Q H, Chen L G, Sun F R 2010 Sci. China E 55 2427

    [38]

    Wu J, Liang X G 2008 Sci. China E 51 1306

    [39]
    [40]
    [41]

    Cheng X T, Liang X G 2011 Int. J. Heat Mass Transfer 54 269

    [42]
    [43]

    Liu X B, Meng J A, Guo Z Y 2008 Prog. Nat. Sci. 18 1186

    [44]

    Liu X B, Guo Z Y 2009 Acta Phys. Sin. 58 4766 (in Chinese) [柳雄斌、过增元 2009 物理学报 58 4766]

    [45]
    [46]

    Liu X B, Meng J A, Guo Z Y 2009 Chin. Sci. Bull. 54 943

    [47]
    [48]
    [49]

    Xia S J, Chen L G, Sun F R 2009 Chin. Sci. Bull. 54 3587

    [50]
    [51]

    Guo J F, Cheng L, Xu M T 2009 Chin. Sci. Bull. 54 2708

    [52]
    [53]

    Xia S J, Chen L G, Sun F R 2010 Sci. China E 53 960

    [54]

    Xie Y J, Shi Q W, Wang X P, Zhu P P, Yang H Y, Zhang X Y 2004 Acta Phys. Sin. 53 2796 (in Chinese) [谢永军、石勤伟、王晓平、朱平平、杨海洋、张兴元 2004 物理学报 53 2796]

    [55]
    [56]
    [57]

    Huang X L, Cui S Z, Ning X B, Bian C H 2009 Acta Phys. Sin. 58 8160 (in Chinese) [黄晓林、崔胜忠、宁新宝、卞春华 2009 物理学报 58 8160]

    [58]

    Zhao R, Zhang L C, Zhang S L 2007 Acta Phys. Sin. 56 3719 (in Chinese) [赵 仁、张丽春、张胜利 2007 物理学报 56 3719]

    [59]
    [60]
    [61]

    Zhang C L, Hu S Q, Li H F, Zhao R 2008 Acta Phys. Sin. 57 3719 (in Chinese) [张丽春、胡双启、李怀繁、赵 仁 2008 物理学报 57 3328]

    [62]

    Zeng X X 2010 Acta Phys. Sin. 59 92 (in Chinese) [曾晓雄 2010 物理学报 59 92]

    [63]
    [64]

    Jin N D, Dong F, Zhao S 2007 Acta Phys. Sin. 56 720 (in Chinese) [金宁德、董 芳、赵 舒 2007 物理学报 56 720]

    [65]
    [66]
    [67]

    Guo Y F, Xu W, Li D X, Wang L 2010 Acta Phys. Sin. 59 2235 (in Chinese) [郭永峰、徐 伟、李东喜、王 亮 2010 物理学报 59 2235]

    [68]
    [69]

    Wang Q G, Zhang Z P 2008 Acta Phys. Sin. 57 1976 (in Chinese) [王启光、张增平2008 物理学报 57 1976]

    [70]

    Bejan A 1979 ASME J. Heat Transfer 101 718

    [71]
    [72]
    [73]

    Poulikakos D, Bejan A 1982 ASME J. Heat Transfer 104 616

    [74]
    [75]

    Erek A, Dincer I 2008 Int. J. Thermal. Sci. 47 1077

    [76]

    Bejan A 1982 Adv. Heat Transfer 15 1

    [77]
    [78]
    [79]

    Shah R K, Skiepko T 2004 J. Heat Transfer 126 994

    [80]
    [81]

    Cheng X T, Liang X G, Guo Z Y 2011 Chin. Sci. Bull. 56 222(in Chinese)[程雪涛、梁新刚、过增元 2011 科学通报 56 222]

    [82]
    [83]

    Cheng X T, Liang X G, Xu X H 2011 Acta Phys. Sin. 60 060512 (in Chinese) [程雪涛、梁新刚、徐向华 2011 物理学报 60 060512]

    [84]

    Chen Q 2008 Ph. D. Dissertation (Beijing: Tsinghua University) (in Chinese) [陈 群 2008 博士学位论文 (北京:清华大学)]

    [85]
    [86]

    Chen Q, Ren J X, Guo Z Y 2009 Chin. Sci. Bull. 54 1606 (in Chinese)[陈 群、任建勋、过增元 2009 科学通报 54 1606]

    [87]
    [88]

    Wang H D, Cao B Y, Guo Z Y 2010 Int. J. Heat Mass Transfer 53 1796

    [89]
  • [1] Zhang Da-Jun. Bilinearization-reduction approach to integrable systems. Acta Physica Sinica, 2023, 72(10): 100203. doi: 10.7498/aps.72.20230063
    [2] Zhang Da-Jun. Discrete integrable systems: Multidimensional consistency. Acta Physica Sinica, 2020, 69(1): 010202. doi: 10.7498/aps.69.20191647
    [3] Xu Jia-Di, Jiang Zhi-Xiong, Gong Xiao-Long. A jet acceleration mechanism for the black hole disk system. Acta Physica Sinica, 2017, 66(3): 039701. doi: 10.7498/aps.66.039701
    [4] Wang Gang, Xie Zhi-Hui, Fan Xu-Dong, Chen Lin-Gen, Sun Feng-Rui. Comparative studies on constructal optimizations of discrete heat generation components based on entransy dissipation minimization and maximum temperature minimization. Acta Physica Sinica, 2017, 66(20): 204401. doi: 10.7498/aps.66.204401
    [5] Yang Ai-Bo, Chen Lin-Gen, Xie Zhi-Hui, Sun Feng-Rui. Comparative study on constructal optimizations of rectangular fins heat sink based on entransy dissipation rate minimization and maximum thermal resistance minimization. Acta Physica Sinica, 2015, 64(20): 204401. doi: 10.7498/aps.64.204401
    [6] Wang Huan-Guang, Wu Di, Rao Zhong-Hao. Analytical solution of the entransy dissipation of heat conduction process in isolated system. Acta Physica Sinica, 2015, 64(24): 244401. doi: 10.7498/aps.64.244401
    [7] Feng Hui-Jun, Chen Lin-Gen, Xie Zhi-Hui, Sun Feng-Rui. Constructal optimization of complex fin with convective heat transfer based on entransy dissipation rate minimization. Acta Physica Sinica, 2015, 64(3): 034701. doi: 10.7498/aps.64.034701
    [8] Xia Shao-Jun, Chen Lin-Gen, Ge Yan-Lin, Sun Feng-Rui. Influence of heat leakage on entransy dissipation minimization of heat exchanger. Acta Physica Sinica, 2014, 63(2): 020505. doi: 10.7498/aps.63.020505
    [9] Ou Jian-Wen, Zheng Yong-Gang, Zhang Xiong. Research on the optical variability of oscillating disk. Acta Physica Sinica, 2014, 63(23): 239801. doi: 10.7498/aps.63.239801
    [10] Zhao Tian, Chen Qun. Macroscopic physical meaning of entransy and its application. Acta Physica Sinica, 2013, 62(23): 234401. doi: 10.7498/aps.62.234401
    [11] Feng Hui-Jun, Chen Lin-Gen, Xie Zhi-Hui, Sun Feng-Rui. Constructal entransy dissipation rate minimization the problem of constracting “disc-point” cooling channels. Acta Physica Sinica, 2013, 62(13): 134703. doi: 10.7498/aps.62.134703
    [12] Chen Lin-Gen, Feng Hui-Jun, Xie Zhi-Hui, Sun Feng-Rui. Constructal entransy dissipation rate minimization of a disc on micro and nanoscales. Acta Physica Sinica, 2013, 62(13): 134401. doi: 10.7498/aps.62.134401
    [13] Xia Shao-Jun, Chen Lin-Gen, Ge Yan-Lin, Sun Feng-Rui. Entransy dissiaption minimization for isothermal throttling process. Acta Physica Sinica, 2013, 62(18): 180202. doi: 10.7498/aps.62.180202
    [14] Cheng Xue-Tao, Liang Xin-Gang, Xu Xiang-Hua. Microscopic expression of entransy. Acta Physica Sinica, 2011, 60(6): 060512. doi: 10.7498/aps.60.060512
    [15] Cheng Xue-Tao, Dong Yuan, Liang Xin-Gang. Potential entransy and potential entransy decrease principle. Acta Physica Sinica, 2011, 60(11): 114402. doi: 10.7498/aps.60.114402
    [16] Hu Yin-Qiao. Ordered structure and system development of the force dissipation system(Ⅱ),Minimal value principle of generalized energy and system development. Acta Physica Sinica, 2003, 52(6): 1354-1359. doi: 10.7498/aps.52.1354
    [17] Lin Ji, Wang Ke-Lin. . Acta Physica Sinica, 2001, 50(1): 13-20. doi: 10.7498/aps.50.13
    [18] YANG XIANG-LIN, CHEN JIAN. LENGTH-BIT-RATE PRODUCT LIMIT DUE TO GAIN NOISE IN OPTICAL SOLITON COMMUNICATION SYSTEMS. Acta Physica Sinica, 1993, 42(1): 51-57. doi: 10.7498/aps.42.51
    [19] GAO FEI, ZHANG HONG-TU. PILE-UP OF DISLOCATION WHILE EXISTING INHOMOGENEITY. Acta Physica Sinica, 1988, 37(8): 1315-1325. doi: 10.7498/aps.37.1315
    [20] FU GUANG-SHENG, HAN LI, LI XIAO-WEI, ZHANG LIAN-SHUI, DONG LI-FANG, LU FU-RUN, XUE CHUN-YIN. SILICON FILM DEPOSITED BY LASER-PLASMA. Acta Physica Sinica, 1987, 36(3): 293-300. doi: 10.7498/aps.36.293
Metrics
  • Abstract views:  7922
  • PDF Downloads:  645
  • Cited By: 0
Publishing process
  • Received Date:  09 November 2010
  • Accepted Date:  10 January 2011
  • Published Online:  15 November 2011

/

返回文章
返回