Three-mass Structural-isolating-damping Model Subjected to Near- and Far-fault Earthquakes

M. Adlparvar, M. A. Afshar, Sepehr Aghaeipour
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Abstract

ABSTRACTSeismic base isolators and dampers are commonly used as control tools in building frames to mitigate earthquake damage. This study proposes and investigates a structural system consisting of a central fixed core and an isolated section, the two parts of which are connected to each other by a damper. In new structures, called partially isolated (PI) structures, the interaction between conventional frames with fixed bases and frames equipped with control tools including isolators and dampers is measured using a three-mass model by three simplified differential equations of motion. Validating the proposed model provided good results. The model with various modes of partial isolation and certain mass ratios was subjected to seven near-fault and seven far-fault earthquakes to be evaluated. The mean displacement, acceleration, and shear responses of the structural-isolating-damping model were compared with those of fully isolated (FI) and fully fixed (FF) structures. The results showed that by connecting the two parts, responses of the fixed part to FF structure and those of the isolated part to FI structure significantly improved. Under near-fault earthquakes, the displacement response reduction of the fixed part to FF model was estimated to be about 20% and the response of the isolated part to FI model was about 50%. Due to the functional weaknesses observed in FI structures including large displacement of the structure base, poor performance of the isolator in near-fault earthquakes, and high costs of preparing and installing the isolation system, these points were significantly resolved in PI structures.
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近、远断层地震作用下的三质量结构隔震阻尼模型
【摘要】抗震基础隔震器和阻尼器是建筑框架中常用的减震控制工具。本研究提出并研究了一个由中心固定核心和隔离部分组成的结构系统,这两个部分通过阻尼器相互连接。在称为部分隔离(PI)结构的新结构中,采用三质量模型,通过三个简化的运动微分方程来测量具有固定底座的传统框架与配备隔离器和阻尼器等控制工具的框架之间的相互作用。对所提出的模型进行了验证,得到了良好的结果。在7次近断层地震和7次远断层地震中,对具有一定质量比和不同部分隔离模态的模型进行了评价。将结构-隔震-阻尼模型与完全隔震(FI)和完全固定(FF)结构的平均位移、加速度和剪切响应进行了比较。结果表明,通过连接两部分,固定部分对FF结构的响应和隔离部分对FI结构的响应显著提高。在近断层地震下,估计固定部分对FF模型的位移响应减少约20%,孤立部分对FI模型的响应减少约50%。由于在FI结构中观察到的功能弱点,包括结构基础的大位移,隔震器在近断层地震中的性能差,以及准备和安装隔震系统的高成本,这些问题在PI结构中得到了显着解决。
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来源期刊
Journal of Rehabilitation in Civil Engineering
Journal of Rehabilitation in Civil Engineering Engineering-Building and Construction
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
12 weeks
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