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首页> 外文期刊>Bulletin of earthquake engineering >Mitigation measures for earthquake induced pounding effects on seismic performance of adjacent buildings
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Mitigation measures for earthquake induced pounding effects on seismic performance of adjacent buildings

机译:地震引起的冲击对邻近建筑物抗震性能的缓解措施

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摘要

Post-earthquake damages investigation in past and recent earthquakes has illustrated that the building structures are vulnerable to severe damage and/or collapse during moderate to strong ground motion. Among the possible structural damages, seismic induced pounding has been commonly observed in several earthquakes. A parametric study on buildings pounding response as well as proper seismic hazard mitigation practice for adjacent buildings is carried out. Three categories of recorded earthquake excitation are used for input excitations. The effect of impact is studied using linear and nonlinear contact force model for different separation distances and compared with nominal model without pounding consideration. The severity of the impact depends on the dynamic characteristics of the adjacent buildings in combination with the earthquake characteristics. Pounding produces acceleration and shear forces/stresses at various story levels that are greater than those obtained from the no pounding case, while the peak drift depends on the input excitation characteristics. Also, increasing gap width is likely to be effective when the separation is sufficiently wide to eliminate contact. Furthermore, it is effective to provide a shock absorber device system for the mitigation of impact effects between adjacent buildings with relatively narrow seismic gaps, where the sudden changes of stiffness during poundings can be smoothed. This prevents, to some extent, the acceleration peaks due to impact. The pounding forces exerted on the adjacent buildings can be satisfactorily reduced.
机译:过去和最近地震的震后破坏调查表明,在中等至强烈的地面运动过程中,建筑结构容易受到严重破坏和/或倒塌。在可能的结构破坏中,通常在几次地震中观察到地震引起的撞击。进行了关于建筑物撞击响应的参数研究以及对邻近建筑物的适当的地震危险缓解措施。输入的激励使用三类记录的地震激励。使用线性和非线性接触力模型针对不同的分离距离研究冲击的影响,并将其与不考虑冲击的名义模型进行比较。冲击的严重程度取决于相邻建筑物的动态特性以及地震特性。冲击产生的加速度和剪切力/应力在各种不同的楼层水平上要比从无冲击情况下获得的加速度和剪切力/应力更大,而峰值漂移取决于输入激励特性。另外,当间隔足够宽以消除接触时,增加间隙宽度可能是有效的。此外,有效的是提供一种减震器装置系统,用于减轻具有相对窄的地震缝隙的相邻建筑物之间的冲击效果,其中,在冲击期间刚度的突然变化可以被平滑。这在一定程度上防止了由于冲击而导致的加速度峰值。可以令人满意地减小施加在相邻建筑物上的撞击力。

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