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首页> 外文期刊>Arabian Journal for Science and Engineering >Probabilistic Behavior Assessment of Base-Isolated Buildings and Base Isolation Systems Subjected to Various Earthquakes with Different Components
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Probabilistic Behavior Assessment of Base-Isolated Buildings and Base Isolation Systems Subjected to Various Earthquakes with Different Components

机译:地震对不同构件的隔震建筑物和隔震系统的概率行为评估

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摘要

One of the greatest challenges of researchers is to understand the behavior of base isolation systems and base-isolated buildings under the conditions of different ground motions. The specific objective of this study is to evaluate the seismic response of multi-story base-isolated buildings with lead core rubber bearings (LCRBs) and buildings that are not isolated when subjected to different types of ground motions with different components. Under these conditions, the equations of motion of buildings with isolation systems are obtained, and LCRB force-deformation behavior is modeled as bilinear in MATLAB. Then, the behaviors of the base isolation system and base-isolated buildings are evaluated for 45 different earthquake scenarios, which are categorized into three different groups with regard to the ratio of peak ground acceleration to peak ground velocity (PGA/PGV). The dissipation of energy by a base isolation system, which is induced by the earthquake, varies for three different ranges of the PGA/PGV ratio. Despite the fact that by increasing the number of stories, the effectiveness of the isolator system decreases, this paper shows the most important finding to be that the damage limitation requirement is kept below 1% according to Eurocode 8, which is the requirement for buildings at the upper limit on the inter-story drift ratio under seismic loading, and the inter-story drifts significantly decreases for the base-isolated buildings and even for high-rise buildings.
机译:研究人员最大的挑战之一是要了解在不同地面运动条件下基础隔震系统和基础隔震建筑物的行为。这项研究的具体目标是评估带有铅芯橡胶支座(LCRB)的多层基础隔震建筑物以及在经受不同类型的具有不同分量的地震动时未被隔离的建筑物的地震响应。在这些条件下,获得了具有隔离系统的建筑物的运动方程,并在MATLAB中将LCRB力-变形行为建模为双线性。然后,针对45种不同的地震场景,评估了基础隔离系统和基础隔离建筑物的行为,就峰值地面加速度与峰值地面速度之比(PGA / PGV)而言,将其分为三组。地震引起的基本隔离系统的能量耗散在PGA / PGV比的三个不同范围内有所不同。尽管事实有所增加,但隔离系统的有效性却下降了,但本文显示了最重要的发现,即根据欧洲规范8,将损坏限制的要求保持在1%以下,这是对建筑物的要求。地震荷载作用下,层间位移比的上限明显减小,对于基础隔震的建筑物,甚至高层建筑物,层间的位移均显着降低。

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