Chen Jianyun
Professor Supervisor of Doctorate Candidates Supervisor of Master's Candidates
Gender:Male
Alma Mater:大连理工大学
Degree:Doctoral Degree
School/Department:水利工程系
Discipline:Hydraulic Structure Engineering. Disaster Prevention & Mitigation Engineering. Structural Engineering. Project Management
Contact Information:QQ:593001776
E-Mail:eerd001@dlut.edu.cn
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Indexed by:期刊论文
Date of Publication:2014-01-01
Journal:PROGRESS IN NUCLEAR ENERGY
Included Journals:SCIE、EI
Volume:70
Page Number:176-187
ISSN No.:0149-1970
Key Words:AP1000 shield building; Natural frequency; Gravity drain water tank; Air intake; Fluid-structure interaction
Abstract:The shield building of AP1000 was designed to protect the steel containment vessel of nuclear power plants. When the reactor is shutdown, the gravity drain water tank mounted above the shield building sprays water, and the intake of ambient air cools down the temperature of containment vessel through buoyancy driven circulation. However, original design of AP1000 by Westinghouse electric company, air intakes located around the corner of the shield building may not be the optimal arrangements. A systematic and progressive modal analysis should be carried out to characterize the dynamic behavior of shield building, considering fluid-structure interaction under different water levels. The influences of elevations and shapes of air intakes on the natural frequencies of shield building are also presented in this paper to improve the optimal parametric design of the AP1000 and CAP1400 (in China) by using appropriate passive air intake in the future. An important conclusion is that the natural frequency increases as the water level decreasing, and elevation of air intake also affects the frequency for various shapes of air intakes. In addition, it has been observed that the shape of air intake took a slight influence on the change of natural frequency, the circular air intakes made the structure more flexible than that of rectangular air intake. It is also important to note that elevation and shape of air intake may have a significant influence on stress distribution of the structure. Therefore, it is necessary to study the influence of the stress distribution for various shapes and elevations of air intake for various water levels in the future. (C) 2013 Elsevier Ltd. All rights reserved.
2004 -博士生导师,大连理工大学土木水利学院
2006- 教授,大连理工大学土木水利学院
2007- 2008 研究生院副院长
2009 - 2014 建设工程学部水利学院 副院长
1999 -2004 副教授,大连理工大学土木水利学院 ,工程抗震研究所副所长