Entransy dissipation/loss-based optimization of two-stage or
发布时间:2020-12-17 22:41
Based on organic Rankine cycle(ORC), the two-stage evaporation strategy is adopted to replace the single-stage evaporation to improve the system performance. In order to evaluate the temperature matching of the two-stage evaporation, a theoretical optimization model was established to optimize the two stage organic Rankine cycle(TSORC) based on the entransy theory and thermodynamics, with the ratio of the entransy dissipation rate of the TSORC to that of the ORC as the objective function. This p...
【文章来源】:Science China(Technological Sciences). 2016年10期
【文章页数】:13 页
【参考文献】:
期刊论文
[1]Constructal entransy dissipation rate minimization for helm-shaped fin with inner heat sources[J]. FENG HuiJun,CHEN LinGen,XIE ZhiHui,SUN FengRui. Science China(Technological Sciences). 2015(06)
[2]Entransy: its physical basis, applications and limitations[J]. Xue-Tao Cheng,Xin-Gang Liang. Chinese Science Bulletin. 2014(36)
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[4]Constructal entransy optimizations for insulation layer of steel rolling reheating furnace wall with convective and radiative boundary conditions[J]. Huijun Feng,Lingen Chen,Zhihui Xie,Fengrui Sun. Chinese Science Bulletin. 2014(20)
[5]Generalized constructal optimization for the secondary cooling process of slab continuous casting based on entransy theory[J]. FENG HuiJun,CHEN LinGen,XIE ZhiHui,DING ZeMin,SUN FengRui. Science China(Technological Sciences). 2014(04)
[6]The property diagram in heat transfer and its applications[J]. CHEN Qun,XU YunChao & GUO ZengYuan Key Laboratory for Thermal Science and Power Engineering of Ministry of Education,Department of Engineering Mechanics,Tsinghua University,Beijing 100084,China. Chinese Science Bulletin. 2012(35)
[7]Progress in entransy theory and its applications[J]. CHEN LinGen College of Power Engineering, Naval University of Engineering, Wuhan 430033, China. Chinese Science Bulletin. 2012(34)
[8]“Volume-point” heat conduction constructal optimization based on entransy dissipation rate minimization with three-dimensional cylindrical element and rectangular and triangular elements on microscale and nanoscale[J]. FENG HuiJun,CHEN LinGen* & SUN FengRui College of Naval Architecture and Power,Naval University of Engineering,Wuhan 430033,China. Science China(Technological Sciences). 2012(03)
[9]Constructal entransy dissipation rate minimization for leaf-like fins[J]. FENG HuiJun,CHEN LinGen* & SUN FengRui College of Naval Architecture and Power,Naval University of Engineering,Wuhan 430033,China. Science China(Technological Sciences). 2012(02)
[10]Constructal entransy dissipation rate minimization for umbrella-shaped assembly of cylindrical fins[J]. XIAO QingHua,CHEN LinGen & SUN FengRui Postgraduate School,Naval University of Engineering,Wuhan 430033,China. Science China Technological Sciences. 2011(01)
本文编号:2922835
【文章来源】:Science China(Technological Sciences). 2016年10期
【文章页数】:13 页
【参考文献】:
期刊论文
[1]Constructal entransy dissipation rate minimization for helm-shaped fin with inner heat sources[J]. FENG HuiJun,CHEN LinGen,XIE ZhiHui,SUN FengRui. Science China(Technological Sciences). 2015(06)
[2]Entransy: its physical basis, applications and limitations[J]. Xue-Tao Cheng,Xin-Gang Liang. Chinese Science Bulletin. 2014(36)
[3]Progress in optimization of mass transfer processes based on mass entransy dissipation extremum principle[J]. CHEN Lin Gen. Science China(Technological Sciences). 2014(12)
[4]Constructal entransy optimizations for insulation layer of steel rolling reheating furnace wall with convective and radiative boundary conditions[J]. Huijun Feng,Lingen Chen,Zhihui Xie,Fengrui Sun. Chinese Science Bulletin. 2014(20)
[5]Generalized constructal optimization for the secondary cooling process of slab continuous casting based on entransy theory[J]. FENG HuiJun,CHEN LinGen,XIE ZhiHui,DING ZeMin,SUN FengRui. Science China(Technological Sciences). 2014(04)
[6]The property diagram in heat transfer and its applications[J]. CHEN Qun,XU YunChao & GUO ZengYuan Key Laboratory for Thermal Science and Power Engineering of Ministry of Education,Department of Engineering Mechanics,Tsinghua University,Beijing 100084,China. Chinese Science Bulletin. 2012(35)
[7]Progress in entransy theory and its applications[J]. CHEN LinGen College of Power Engineering, Naval University of Engineering, Wuhan 430033, China. Chinese Science Bulletin. 2012(34)
[8]“Volume-point” heat conduction constructal optimization based on entransy dissipation rate minimization with three-dimensional cylindrical element and rectangular and triangular elements on microscale and nanoscale[J]. FENG HuiJun,CHEN LinGen* & SUN FengRui College of Naval Architecture and Power,Naval University of Engineering,Wuhan 430033,China. Science China(Technological Sciences). 2012(03)
[9]Constructal entransy dissipation rate minimization for leaf-like fins[J]. FENG HuiJun,CHEN LinGen* & SUN FengRui College of Naval Architecture and Power,Naval University of Engineering,Wuhan 430033,China. Science China(Technological Sciences). 2012(02)
[10]Constructal entransy dissipation rate minimization for umbrella-shaped assembly of cylindrical fins[J]. XIAO QingHua,CHEN LinGen & SUN FengRui Postgraduate School,Naval University of Engineering,Wuhan 430033,China. Science China Technological Sciences. 2011(01)
本文编号:2922835
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