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某火车站雨棚改造前后静力与动力响应分析 被引量:1
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作者 崔晓明 关效澍 张堂乐 《低温建筑技术》 2018年第1期87-91,共5页
以某火车站无站台柱雨棚改造施工项目为例,基于有限元程序ANSYS,对改造前后结构在静力荷载与地震作用下的响应进行了有限元数值模拟。分析结构在静力荷载与地震作用下的受力性能,并将数值模拟结果与监测数据进行对比,验证了ANSYS在分析... 以某火车站无站台柱雨棚改造施工项目为例,基于有限元程序ANSYS,对改造前后结构在静力荷载与地震作用下的响应进行了有限元数值模拟。分析结构在静力荷载与地震作用下的受力性能,并将数值模拟结果与监测数据进行对比,验证了ANSYS在分析雨棚结构受力性能方面的可行性,为火车站改造前后大跨钢结构雨棚的力学性能理论分析与优化设计提供参考。 展开更多
关键词 大跨钢结构雨棚 施工监测 静力响应分析 地震作用响应分析
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Influence of Structure Plane Size on Seismic Response of Soil-Structure Interaction
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作者 姜忻良 张亚楠 《Transactions of Tianjin University》 EI CAS 2013年第5期345-350,共6页
The influence of the change of structure plane size on seismic response was studied for a soil-structure interaction system.Based on the finite element method,a soil-structure interaction calculation model was establi... The influence of the change of structure plane size on seismic response was studied for a soil-structure interaction system.Based on the finite element method,a soil-structure interaction calculation model was established to analyze the seismic response by changing the structure plane size and choosing different earthquake waves for different soil fields.The results show that when the natural periods of vibration for different structure plane sizes are close,under the same earthquake wave,the total displacement on the top layer of the structure and the foundation rotation displacement decrease with the increase of structure plane size,and the proportion of superstructure elastic selfdeformation displacement to the total displacement increases with the increase of structure plane size.While for different types of sites and seismic waves,under the horizontal and vertical seismic waves,the seismic responses of different plane sizes have a similar change rule. 展开更多
关键词 soil-structure interaction finite element analysis structure plane size seismic response time historyanalysis
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Zonal Coupling Analysis Method of Seismic Response of Offshore Monopile Wind Turbine
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作者 XU Xiaofeng CHEN Shaolin SUN Jie 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2024年第S01期103-110,共8页
The seismic safety of offshore wind turbines is an important issue that needs to be solved urgently.Based on a unified computing framework,this paper develops a set of seawater-seabed-wind turbine zoning coupling anal... The seismic safety of offshore wind turbines is an important issue that needs to be solved urgently.Based on a unified computing framework,this paper develops a set of seawater-seabed-wind turbine zoning coupling analysis methods.A 5 MW wind turbine and a site analysis model are established,and a seismic wave is selected to analyze the changes in the seismic response of offshore monopile wind turbines under the change of seawater depth,seabed wave velocity and seismic wave incidence angle.The analysis results show that when the seawater increases to a certain depth,the seismic response of the wind turbine increases.The shear wave velocity of the seabed affects the bending moment and displacement at the bottom of the tower.When the angle of incidence increases,the vertical displacement and the acceleration of the top of the tower increase in varying degrees. 展开更多
关键词 offshore monopile wind turbine seismic response analysis soil-junction interactions fluid-structure inter-action
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