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RESEARCH ON THE SAFETY OF PERFORMANCE-BASEDISOLATION DESIGN METHOD UNDER STRONGEARTHOUAKE

机译:强土瓦克下基于性能的隔离设计方法的安全性研究

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摘要

Design method of isolation is an important part of isolation technology. This paper presents a perfor- mance based isolation design method to further diss- cuss and improve the design method of isolation structure. The structural design response and cost difference based on the design method putted for- ward in this paper and the traditional isolation design method through engineering example, are compared respectively. The dynamic elastic-plastic time analy- sis of isolation structure under rare earthquake and extremely rare earthquake are carried out to evaluate the safety. The distribution of damage in structural elements and the damage evolution law of structural units are analyzed based on the indicator (i.e. the ul- timate damage indicator of structural elements) ob- tained by applying the combination of weight. In ad- dition, the safety assessment is evaluated from the angle of energy dissipation and damage evolution. Results show: Compared with traditional isolation design method, the performance objective of perfor- mance-based isolation design method is three times higher and the cost is less than one fifth higher. The isolation layer dissipated more seismic energy under strong earthquake, and the superstructure is less damaged. It can completely meet the performance design objectives of "intact after fortification earth- quake; can be repaired after rare earthquake; non- collapse after extremely rare earthquake". Thismethod can be used in seismic isolation design.
机译:隔离设计方法是隔离技术的重要组成部分。本文提出了一种基于性能的隔离设计方法,以进一步分析和改进隔离结构的设计方法。通过工程实例,分别比较了基于本文提出的设计方法和传统隔离设计方法的结构设计响应和成本差异。对罕见地震和极罕见地震下隔震结构进行动态弹塑性时间分析,评价其安全性。基于权重组合得到的指标(即结构单元的最终损伤指标),分析了结构单元损伤的分布和结构单元的损伤演化规律。此外,从能量耗散和损伤演变的角度评估安全性评估。结果表明:与传统的隔离设计方法相比,基于性能的隔离设计方法的性能目标提高了3倍,成本提高了不到五分之一。隔震层在强震作用下耗散的地震能量较多,上部结构受损较小。完全可以达到“设防后土震完好无损;罕见地震后可修复;极其罕见的地震后不会倒塌”。该方法可用于隔震设计。

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