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New formulation for estimating the damping parameter of the Kelvin-Voigt model for seismic pounding simulation

机译:用于估算地震震荡模拟的Kelvin-Voigt模型的阻尼参数的新公式

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Seismic pounding between adjoining buildings frequently causes serious damage; although collision can be avoided with proper separation, can still occur due to code non-fulfillment, loose requirements of old codes, and seismicity underestimation. Inside this context, this work deals with collision between two buildings with aligned slabs. The simulation of this phenomenon is not obvious, involving stress traveling waves, high-frequency behavior, and local effects. Complex distributed continuum mechanics-based models can be used, but are time-consuming; conversely, the concentrated Kelvin-Voigt model can be utilized instead, being simple and inexpensive, yet accurate. Its behavior is characterized by damping and stiffness parameters; the damping influence is particularly important and a number of estimation criteria have been proposed. Among them, the Anagnostopoulos formulation is simple, and provides satisfactory results in most situations. That formulation consists in estimating the damping parameter after a given target value of the coefficient of restitution; the influence, during impact, of the colliding building structures and the seismic excitation is neglected. This paper proposes an alternative approach that releases one of the aforementioned assumptions: the influence of the building structures and their initial separation is taken into consideration. A simplified parametric study oriented to investigate the performance of the proposed strategy is performed; it is found that the accuracy of the Anagnostopoulos formulation is improved in a number of situations. Noticeably, this gain is obtained at a low computational cost. The proposed formulation is satisfactorily utilized to analyze pounding between two multi-story multi-bay RC buildings and to simulate a shaking table pounding experiment.
机译:相邻建筑物之间的地震撞击经常造成严重破坏;尽管可以通过适当的间距来避免碰撞,但是由于不满足规范,旧规范的宽松要求以及地震活动性低估,仍然可能发生碰撞。在这种情况下,这项工作处理了具有对齐平板的两座建筑物之间的碰撞。这种现象的模拟并不明显,涉及应力行波,高频行为和局部效应。可以使用基于分布式连续统一力学的复杂模型,但是很费时。相反,可以代替使用集中的Kelvin-Voigt模型,它既简单又便宜,但准确。其性能以阻尼和刚度参数为特征。阻尼影响尤为重要,并提出了许多估算标准。其中,Anagnostopoulos配方很简单,并且在大多数情况下都能提供令人满意的结果。该公式包括在给定的恢复系数目标值之后估算阻尼参数。在碰撞过程中,对碰撞的建筑结构和地震激励的影响被忽略。本文提出了一种释放上述假设之一的替代方法:考虑建筑结构的影响及其初始分离。进行了旨在研究拟议策略性能的简化参数研究;发现在许多情况下,Anagnostopoulos配方的准确性都得到了提高。值得注意的是,该增益是以较低的计算成本获得的。所提出的公式可令人满意地用于分析两座多层多托架RC建筑物之间的冲击,并模拟振动台冲击实验。

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