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Effectiveness of passive seismic control of steel structures

机译:钢结构被动地震控制的有效性

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This paper introduces a simple approach in assessing the amount of seismic mitigation of passive seismic protection of steel skeletal type structures. The amount of seismic protection is expressed in terms of reduction in the amplitudes of kinematical parameters associated to seismically induced oscillatory motion of the analyzed structures. The introduced parameter for assessing seismic protection is associated to the mitigation interval of steel skeletal structures equipped with passive protection. This interval is expressed in terms of natural vibration periods of the structure and is considered from the moment when the vibratory motion is initiated until the moment the motion reaches its steady state. During this time interval, a clear picture of vibratory motion is exhibited: length of the interval, number of vibratory cycles, amplitudes, their variation/decrease in time, the end of transitory motion and the beginning of the (short, nevertheless) pseudo - steady state motion. The paper proposes a time variable parameter that synthesizes all these features of the transitory motion. The length of this interval and its descending slope emphasize the effectiveness of seismic protection. The shorter the interval and the greater its descending slope, the more effective the associated seismic protection. Time history type analyses have been carried out on several sets of skeletal steel structures. The structures are analyzed in two situations: without seismic protection (reference structure) and equipped with passive seismic protection (viscous dampers). The numerical results of time history analyses are presented and discussed with reference to the proposed parameter assessing seismic mitigation. The time variation of the proposed parameter is presented graphically for a better and immediate "physical" perception. The effectiveness of the seismic passive protection is discussed in terms of proposed parameter.
机译:本文介绍了一种简单的方法来评估钢骨架结构被动减震的减震量。地震防护的量表示为与分析结构的地震诱发的振荡运动相关的运动学参数振幅的减小。引入的用于评估地震防护的参数与装备有被动防护的钢骨结构的缓解间隔有关。该间隔用结构的自然振动周期表示,从振动运动开始的那一刻起,直到运动达到稳定状态的那一刻,都被考虑在内。在此时间间隔内,展示了清晰的振动运动图:该时间间隔的长度,振动周期的数量,振幅,其变化/时间的减小,瞬时运动的结束以及(短暂的(尽管如此))伪运动的开始-稳态运动。本文提出了一个时变参数,该参数综合了瞬时运动的所有这些特征。该间隔的长度及其下降的斜率强调了地震防护的有效性。间隔越短,其下降斜率越大,相关的地震防护效果越好。已对几套骨架钢结构进行了时程类型分析。在两种情况下对结构进行分析:没有地震防护(参考结构)和配备了被动地震防护(粘滞阻尼器)。提出并讨论了时程分析的数值结果,并参考了所提出的评估减震的参数。图形化地提出了建议参数的时间变化,以实现更好,即时的“物理”感知。根据所提出的参数讨论了地震被动保护的有效性。

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