TP333.4 2002053608超高密度信息存储/分子存储及其存储机理=Ultrahighdensity data storage and molecular recording[刊,中]/高鸿钧,时东霞,张昊旭,林晓(中科院物理所凝聚态物理中心.北京(100080))//物理.—2001,30(8).—453-455在有...TP333.4 2002053608超高密度信息存储/分子存储及其存储机理=Ultrahighdensity data storage and molecular recording[刊,中]/高鸿钧,时东霞,张昊旭,林晓(中科院物理所凝聚态物理中心.北京(100080))//物理.—2001,30(8).—453-455在有机功能纳米薄膜上通过扫描隧道显微技术实现了超高密度的信息存储。实验与理论计算的结果表明,其存储机理是薄膜的导电性质的变化。展开更多
In this work exergetical performance analysis is carried out based on the second law of thermodynamics for organic flash cycle(OFC) using a two-phase expander instead of throttle expansion in order to recover efficien...In this work exergetical performance analysis is carried out based on the second law of thermodynamics for organic flash cycle(OFC) using a two-phase expander instead of throttle expansion in order to recover efficiently finite thermal reservoirs.The exergy destructions(anergies) at various components of the system are theoretically investigated as well as the exergy efficiency.Results show that the anergy of heat exchanger or two-phase expander decreases while the anergy of throttle valve increases with increasing flash temperature,and the exergy efficiency has an optimum value with respect to the flash temperature.Under the optimal conditions with respect to the flash temperature,exergy efficiency increases with the heating temperature and the component having the largest exergy destruction varies with the flash temperature or heating temperature.展开更多
文摘TP333.4 2002053608超高密度信息存储/分子存储及其存储机理=Ultrahighdensity data storage and molecular recording[刊,中]/高鸿钧,时东霞,张昊旭,林晓(中科院物理所凝聚态物理中心.北京(100080))//物理.—2001,30(8).—453-455在有机功能纳米薄膜上通过扫描隧道显微技术实现了超高密度的信息存储。实验与理论计算的结果表明,其存储机理是薄膜的导电性质的变化。
基金supported by Research Fund,Kumoh National Institute of Technology
文摘In this work exergetical performance analysis is carried out based on the second law of thermodynamics for organic flash cycle(OFC) using a two-phase expander instead of throttle expansion in order to recover efficiently finite thermal reservoirs.The exergy destructions(anergies) at various components of the system are theoretically investigated as well as the exergy efficiency.Results show that the anergy of heat exchanger or two-phase expander decreases while the anergy of throttle valve increases with increasing flash temperature,and the exergy efficiency has an optimum value with respect to the flash temperature.Under the optimal conditions with respect to the flash temperature,exergy efficiency increases with the heating temperature and the component having the largest exergy destruction varies with the flash temperature or heating temperature.