Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Xisi Zhang"'
Autor:
Wenxi Tian, Suizheng Qiu, Mingjun Wang, Wenjun Hu, Yandong Hou, Xisi Zhang, Yingwei Wu, Guanghui Su, Liu Wang, Zhang Kui
Publikováno v:
Applied Thermal Engineering. 149:578-587
The single-phase thermal hydraulic characteristics of liquid metal sodium are very essential for the design and safety analysis of sodium-cooled fast reactor (SFR). In this paper, the pressure drop and heat transfer features of single-phase liquid so
Publikováno v:
Traditional Medicine Research. 7:54
Publikováno v:
Nuclear Engineering and Design. 368:110795
During a core disruptive accident in a sodium-cooled fast reactor, the molten fuel or steel is solidified into debris particles that form a debris bed in the lower plenum. When the debris bed starts boiling, the flow of the coolant and vapor together
Publikováno v:
Annals of Nuclear Energy. 143:107392
In nuclear power plants, core melt accidents are often accompanied with fuel–coolant interactions (FCI), which may escalate to steam explosion destroying the integrity of structural components and even the containment under certain conditions. The
Autor:
Wenjun Hu, Liu Wang, Wenxi Tian, Yingwei Wu, Suizheng Qiu, Yandong Hou, Mingjun Wang, Xisi Zhang, Zhang Kui, Guanghui Su
Publikováno v:
Progress in Nuclear Energy. 121:103258
During hypothetical accidents of sodium-cooled fast reactors, such as unprotected loss of flow, transient power surge accidents, unprotected thermal trap accidents, etc., sodium boiling may occur. A series of boiling incipient phenomena for liquid so
Publikováno v:
Volume 6B: Thermal-Hydraulics and Safety Analyses.
In nuclear power plants, fuel-coolant interaction (FCI) often accompanied with core melt accidents, which may escalate to steam explosion destroying the integrity of structural components and even the containment under certain conditions. In the pres
Autor:
Zhang Kui, Suizheng Qiu, Mingjun Wang, Yandong Hou, Wenjun Hu, Wenxi Tian, Yingwei Wu, Liu Wang, Xisi Zhang, Guanghui Su
Publikováno v:
Applied Thermal Engineering. 159:113780