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作 者:陈尚鸿[1]
出 处:《福建建筑》2014年第11期45-47,31,共4页Fujian Architecture & Construction
基 金:国家自然科学基金项目资助(51108089);福建省自然科学基金基金项目资助(2011J05128)
摘 要:将隔震技术应用于连体高层结构,首先利用ANSYS建立了隔震支座的双线性力学模型,进而以某实际工程为原型建立了连体高层结构的抗震及隔震结构有限元模型。通过模态信息的对比发现采用隔震支座后结构前几阶周期有显著增大,同时影响连体结构的竖向振型出现阶次也有所增加。对比El Centro波激励下的响应时程可以看出,采用隔震支座可以显著减少主塔结构层间剪力、顶层加速度及结构关键部位的杆件应力,由此证明了隔震支座在该类结构上应用可以有效提高结构的抗震安全性。Base isolation technique is applied to high- rise connected structure. ANSYS is first adopted to establish bilinear mechanical model,and then finite element models for both aseismic and base- isolated connected structures according to real structures. The comparison on modal characteristics shows that base isolation can extent the natural periods of the first few modes,and the mode shapes related to vertical vibration of the corridor is postponed. Further comparing the time- history responses under El Centro earthquake excitation,it is concluded that the base isolation can reduce the inter- storey shear force,the acceleration on the top floor,as well as the stress of key elements dramatically,which proofs the feasibility of base isolation technique on enhancing the aseismic safety of high- rise connected structure.
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