The cable net supported glass curtain wallas the most advanced technique in dot point supported glass curtain wall, is widely used in China. Because of its large deflection and high nonlinearity under wind load, the d...The cable net supported glass curtain wallas the most advanced technique in dot point supported glass curtain wall, is widely used in China. Because of its large deflection and high nonlinearity under wind load, the dynamic performance of the cable net is greatly different from that of the conventional linear structures. The continuous membrane theory is used to construct the nonlinear vibration differential equation of the cable net, and the harmonic balance method is used to solve the analytic formula of the nonlinear frequency. In order to verify the accuracy of the above analytic formula, the results of the formula and the nonlinear FEM time-history method are compared and found to be in good agreement. Furthermore, the nonlinear vibration differential equation and the nonlinear frequency obtained in this paper are the basis for the wind-induced response analysis of a cable net under fluctuating wind load.展开更多
在系统阐述开孔结构的内压瞬态波动理论及屋面结构风振响应问题的基础上,对开孔瞬间的脉冲内压、气流稳定后屋盖结构所受的最大净风压进行了估算;同时讨论了内压作用下的屋盖响应特性。研究表明,建筑物突然开孔时的内压脉冲对结构安全...在系统阐述开孔结构的内压瞬态波动理论及屋面结构风振响应问题的基础上,对开孔瞬间的脉冲内压、气流稳定后屋盖结构所受的最大净风压进行了估算;同时讨论了内压作用下的屋盖响应特性。研究表明,建筑物突然开孔时的内压脉冲对结构安全威胁很大,对于已经存在开孔的结构的屋盖由于受到内外压的共同作用要比开孔前承受更大的风荷载,从而解释了台风或者飓风期间建筑物门窗突然破坏时容易进一步造成屋盖破坏的现象。屋盖响应分析结果表明,当开孔结构的H e lm ho ltz频率、弹性屋盖的固有频率以及来流中所包含的涡脱落频率,三者接近时,屋盖将发生较大的共振。展开更多
基金Project supported by the National Natural Sciences Foundation of China (No. 50478028).
文摘The cable net supported glass curtain wallas the most advanced technique in dot point supported glass curtain wall, is widely used in China. Because of its large deflection and high nonlinearity under wind load, the dynamic performance of the cable net is greatly different from that of the conventional linear structures. The continuous membrane theory is used to construct the nonlinear vibration differential equation of the cable net, and the harmonic balance method is used to solve the analytic formula of the nonlinear frequency. In order to verify the accuracy of the above analytic formula, the results of the formula and the nonlinear FEM time-history method are compared and found to be in good agreement. Furthermore, the nonlinear vibration differential equation and the nonlinear frequency obtained in this paper are the basis for the wind-induced response analysis of a cable net under fluctuating wind load.
文摘在系统阐述开孔结构的内压瞬态波动理论及屋面结构风振响应问题的基础上,对开孔瞬间的脉冲内压、气流稳定后屋盖结构所受的最大净风压进行了估算;同时讨论了内压作用下的屋盖响应特性。研究表明,建筑物突然开孔时的内压脉冲对结构安全威胁很大,对于已经存在开孔的结构的屋盖由于受到内外压的共同作用要比开孔前承受更大的风荷载,从而解释了台风或者飓风期间建筑物门窗突然破坏时容易进一步造成屋盖破坏的现象。屋盖响应分析结果表明,当开孔结构的H e lm ho ltz频率、弹性屋盖的固有频率以及来流中所包含的涡脱落频率,三者接近时,屋盖将发生较大的共振。