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长跨柔性悬索桥风致抖振响应分析
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作者 詹刚毅 冯利坡 《预应力技术》 2016年第6期22-26,共5页
以某主跨500 m的大跨度悬索桥为工程背景,对长跨柔性悬索桥在脉动风荷载作用下的抖振响应进行了分析和计算,得到了一些有借鉴性的结论。模态分析表明,大跨度悬索桥的自振频率较低,为典型的风敏感柔性结构。当同时考虑抖振力和自激力时,... 以某主跨500 m的大跨度悬索桥为工程背景,对长跨柔性悬索桥在脉动风荷载作用下的抖振响应进行了分析和计算,得到了一些有借鉴性的结论。模态分析表明,大跨度悬索桥的自振频率较低,为典型的风敏感柔性结构。当同时考虑抖振力和自激力时,根据极值理论可以得到悬索桥主梁的抖振位移响应极值,结果表明,竖向、水平和扭转方向的最大抖振位移响应极值均发生在主跨跨中处,且数值较大,在结构设计中不容忽略。 展开更多
关键词 悬索桥 动力响应极值 脉动风荷载 抖振
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Distributed collaborative extremum response surface method for mechanical dynamic assembly reliability analysis 被引量:7
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作者 费成巍 白广忱 《Journal of Central South University》 SCIE EI CAS 2013年第9期2414-2422,共9页
To make the dynamic assembly reliability analysis more effective for complex machinery of multi-object multi-discipline(MOMD),distributed collaborative extremum response surface method(DCERSM)was proposed based on ext... To make the dynamic assembly reliability analysis more effective for complex machinery of multi-object multi-discipline(MOMD),distributed collaborative extremum response surface method(DCERSM)was proposed based on extremum response surface method(ERSM).Firstly,the basic theories of the ERSM and DCERSM were investigated,and the strengths of DCERSM were proved theoretically.Secondly,the mathematical model of the DCERSM was established based upon extremum response surface function(ERSF).Finally,this model was applied to the reliability analysis of blade-tip radial running clearance(BTRRC)of an aeroengine high pressure turbine(HPT)to verify its advantages.The results show that the DCERSM can not only reshape the possibility of the reliability analysis for the complex turbo machinery,but also greatly improve the computational speed,save the computational time and improve the computational efficiency while keeping the accuracy.Thus,the DCERSM is verified to be feasible and effective in the dynamic assembly reliability(DAR)analysis of complex machinery.Moreover,this method offers an useful insight for designing and optimizing the dynamic reliability of complex machinery. 展开更多
关键词 complex machinery dynamic assembly reliability (DAR) blade-tip radial running clearance (BTRRC) radial deformation reliability analysis distributed collaborative extremum response surface method (DCERSM) multi-object multidiscipline (MOMD)
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