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Comparative Evaluation of Base-Isolated and Fixed-Base Buildings Using a Comprehensive Response Index

机译:综合响应指数对基础隔震建筑和固定基础建筑的比较评估

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摘要

Although current code guidelines specify different seismic performance objectives for fixed-base and isolated buildings, the future of performance-based design will allow user-selected performance objectives, motivating the need for a consistent performance comparison of the two systems. Based on response history analysis to a suite of motions, constant ductility spectra are generated for fixed-base and isolated buildings. Both superstructure force (base shear) and deformation demands in base-isolated buildings are lower than in fixed-base buildings responding with identical deformation ductility. To compare the relative performance of many systems or to predict the best system to achieve a given performance objective, a response index is developed and used for rapid prototyping of response as a function of system characteristics. When evaluated for a life safety performance objective, the superstructure design base shear of an isolated building is competitive with that of a fixed-base building with identical ductility, and the isolated building generally has improved response. Isolated buildings can meet a moderate ductility immediate-occupancy objective at low design strengths, whereas comparable ductility fixed-base buildings fail to meet the objective.
机译:尽管当前的规范准则为固定基础的和隔离的建筑物指定了不同的抗震性能目标,但是基于性能的设计的未来将允许用户选择性能目标,从而激发了对两个系统进行一致性能比较的需求。基于对一组运动的响应历史分析,可为固定基础和隔离的建筑物生成恒定的延性谱。隔震建筑的上部结构力(基础剪力)和变形要求均低于固定基础建筑,并具有相同的延展性。为了比较许多系统的相对性能或预测达到给定性能目标的最佳系统,开发了一个响应指标并将其用于根据系统特性快速建立响应原型。当对生命安全性能目标进行评估时,隔离建筑的上部结构设计基础剪力与具有相同延展性的固定基础建筑的剪力相比具有竞争力,并且隔离建筑通常具有改善的响应。孤立的建筑物可以在较低的设计强度下达到适度的延性立即入住目标,而可比的延展性固定基础建筑物则无法达到目标。

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