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基于构形理论,以导热和对流换热总(火积)耗散率最小为优化目标,对T-Y形肋片进行构形优化,得到同时考虑导热和对流换热(火积)耗散性能的T-Y形肋片最优构形.结果表明:存在最佳单元级直肋和中部空腔高度和长度比使得T-Y形肋片无量纲当量热阻取得二次最小值.增大肋片高度和长度比和肋片占比有助于提高T-Y形肋片整体传热性能.T-Y形肋片与T形肋片相比,T-Y形肋片二次最小无量纲当量热阻降低32.33%,此时T-Y形肋片温度梯度场更均匀,整体传热性能得到明显提高.

参考文献

[1] 陈林根.构形理论及其应用的研究进展[J].中国科学(技术科学),2012(05):505-524.
[2] Adrian Bejan;Sylvie Lorente .Constructal law of design and evolution: Physics, biology, technology, and society[J].Journal of Applied Physics,2013(15):151301-1-151301-20.
[3] Majed A. Almogbel .Constructal tree-shaped fins[J].International Journal of Thermal Sciences,2005(4):342-348.
[4] Giulio Lorenzini;Luiz Alberto Oliveira Rocha .Constructal design of Y-shaped assembly of fins[J].International Journal of Heat and Mass Transfer,2006(23/24):4552-4557.
[5] 谢志辉,陈林根,孙丰瑞.以最大热阻最小化为目标的二级组合Y形肋构形优化[J].中国科学(技术科学),2012(10):1188-1196.
[6] Giulio Lorenzini;Luiz Alberto Oliveira Rocha .Constructal design of T-Y assembly of fins for an optimized heat removal[J].International Journal of Heat and Mass Transfer,2009(5/6):1458-1463.
[7] Zeng-Yuan Guo;Hong-Ye Zhu;Xin-Gang Liang .Entransy—A physical quantity describing heat transfer ability[J].International Journal of Heat and Mass Transfer,2007(13/14):2545-2556.
[8] 过增元,程新广,夏再忠.最小热量传递势容耗散原理及其在导热优化中的应用[J].科学通报,2003(01):21-25.
[9] 韩光泽,朱宏晔,程新广,过增元.导热与弹性系统及导电的相似性[J].工程热物理学报,2005(06):1022-1024.
[10] 韩光泽,过增元.导热能力损耗的机理及其数学表述[J].中国电机工程学报,2007(17):98-102.
[11] 朱宏晔,陈泽敬,过增元.(火积)耗散极值原理的电热模拟实验研究[J].自然科学进展,2007(12):1692-1698.
[12] 陈林根.(火积)理论及其应用的进展[J].科学通报,2012(30):2815-2835.
[13] 陈林根.基于质量积耗散极值原理的传质过程优化[J].海军工程大学学报,2013(01):1-26.
[14] 魏曙寰,陈林根,孙丰瑞.基于矩形单元体的以(火积)耗散最小为目标的体点导热构形优化[J].中国科学E辑,2009(02):278-285.
[15] Z. Y. Guo;X. B. Liu;W. Q. Tao;R. K. Shah .Effectiveness-thermal resistance method for heat exchanger design and analysis[J].International Journal of Heat and Mass Transfer,2010(13/14):2877-2884.
[16] Lingen Chen;Shuhuan Wei;Fengrui Sun .Constructal entransy dissipation rate minimization of a disc[J].International Journal of Heat and Mass Transfer,2011(1/3):210-216.
[17] Mingtian Xu .Variational principles in terms of entransy for heat transfer[J].Energy,2012(1):973-977.
[18] 周兵,程雪涛,梁新刚.斯特林循环输出功率优化分析[J].中国科学(技术科学),2013(01):97-105.
[19] Qun Chen.Entransy dissipation-based thermal resistance method for heat exchanger performance design and optimization[J].International Journal of Heat and Mass Transfer,2013:156-162.
[20] Lingen Chen;Qinghua Xiao;Zhihui Xie;Fengrui Sun .T-shaped assembly of fins with constructal entransy dissipation rate minimization[J].International Communications in Heat and Mass Transfer: A Rapid Communications Journal,2012(10):1556-1562.
[21] 肖庆华,陈林根,孙丰瑞.基于(火积)耗散率最小的伞形柱状肋片构形优化[J].中国科学(技术科学),2011(03):365-373.
[22] 谢志辉,陈林根,孙丰瑞.T形肋(火积)耗散率最小与最大热阻最小构形优化的比较研究[J].中国科学(技术科学),2011(07):962-970.
[23] 肖庆华,陈林根,谢志辉,冯辉君,孙丰瑞.Y形肋片[火积]耗散率最小构形优化[J].工程热物理学报,2012(09):1465-1470.
[24] 冯辉君,陈林根,孙丰瑞.基于(火积)耗散率最小的叶形肋片构形优化[J].中国科学(技术科学),2012(04):456-466.
[25] Cheng Xue-Tao,Zhang Qin-Zhao,Xu Xiang-Hua,Liang Xin-Gang.Optimization of fin geometry in heat convection with entransy theory[J].中国物理B(英文版),2013(02):139-144.
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