多层建筑基础隔震采用铅橡胶支座

A. Amin, Mufedul Islam, Md. Jobaer Ahamed
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引用次数: 0

摘要

抗震设计是近年来保证建筑安全、减少建筑损失的重要内容。目前,在抗震建筑设计中采用了许多技术。基础隔震是建筑抗震设计中最经济有效的技术之一。在地震高发地区,它减少了传递给建筑物的地震能量。铅橡胶支座由于其技术经济上的有效性和可靠性,是目前应用最广泛的基础隔震技术。在本研究中,对位于达卡市的多层建筑进行了数值设计,作为基础隔震建筑,设计并使用铅橡胶支座作为隔震。该建筑被分析了15秒、20秒和25秒的埃尔森特罗地震数据。在基础隔离和非隔离条件下,用sap200018进行了非线性时程分析。通过对比基础隔震和非隔震条件下的位移与时间、加速度与时间曲线图,顶楼与底层的位移差值几乎接近,表明该建筑结构在侧向荷载作用下性能较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Base isolation of multi-storied building using lead rubber bearing
Earthquake resistance building design is the most important thing to ensure safety and minimize loss in recent years. Nowadays, many techniques are being used in earthquake resistance building design. Base-isolation is one of the best techniques used in earthquake resistant design building in economical. It reduces seismic energy transmitted to buildings, in highly seismic prone areas. Lead Rubber Bearings are the most widely used technology in seismic base isolation, because of its technical and economic effectiveness and reliability. In this research, a multi-storied building that is located in Dhaka city is performed at numerically design as a base isolation building where the lead rubber bearing is designed and used as isolator. The building is analyzed for El Centro earthquake data of 15, 20, and 25 second. For base isolated and non-isolated condition nonlinear time history analysis is done using SAP2000 18. By comparing displacement vs time, acceleration vs time graphs for base isolated and non-isolated condition, the displacement difference between top and bottom floor is almost close that indicates this building structural behavior better during lateral load.
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