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Pounding Dynamic Responses and Mitigation Measures of Sliding Base-isolated Concrete Rectangular Liquid Storage Structuress

机译:滑动隔震混凝土矩形储水结构的动力响应及缓解措施

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摘要

This paper adopts a simplified spring-mass mechanical model for a concrete rectangular liquid-storage structure (CRLSS). Using a nonlinear model to simulate the pounding effect based on the contact element method, the effects of pounding and parameters on the dynamic responses of a CRLSS are studied. Mitigation measures for the pounding effect are investigated. The dynamic responses and the liquid sloshing height are increased after pounding. A parameter analysis shows that impact stiffness, initial gap, peak ground velocity, isolation period, liquid height and length-width ratio (LWR) of the structure are the main factors affecting the pounding response. Certain intermediate gaps can maximize the amplification caused by pounding. The coefficient of restitution (COR) can be reduced by installing a bumper layer, and the COR decreases with an increasing bumper thickness. A reasonable bumper design not only allows the moat wall to limit the displacement but also effectively reduces the structure's dynamic responses and number of collisions caused by pounding.
机译:本文采用简化的弹簧质量力学模型,用于混凝土矩形液体存储结构(CRLSS)。利用基于接触单元法的非线性模型来模拟冲击效果,研究了冲击和参数对CRLSS动力响应的影响。研究了减轻冲击的措施。撞击后,动态响应和液体晃动高度增加。参数分析表明,结构的冲击刚度,初始间隙,峰值地面速度,隔离期,液体高度和长宽比(LWR)是影响冲击响应的主要因素。某些中间间隙可以最大程度地增加由撞击引起的扩增。可以通过安装保险杠层来降低恢复系数(COR),并且随着保险杠厚度的增加,COR会降低。合理的保险杠设计不仅使护城河墙能够限制位移,而且还可以有效降低结构的动力响应以及因撞击而引起的碰撞次数。

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