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Two-dimensional numerical investigation of the effects of multiple sequential earthquake excitations on ancient multi-drum columns

机译:二维连续地震激励对古代多鼓柱影响的二维数值研究

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Ancient monuments of Greek and Roman classical architecture usually consist of multi-drum columns that are constructed of stone blocks placed on top of each other. Several research studies deal with the seismic behaviour of such structures, since earthquakes are common causes of destruction of such monuments. This paper investigates the effect of multiple earthquakes on the seismic performance of multi-drum columns, through numerical simulations and parametric analyses. The Discrete Element Method and an appropriate contact model have been implemented in a specially developed software application that is able to efficiently perform the necessary simulations in two dimensions. Specifically, various strong ground excitations are used in series for the computation of the collective final deformation of multi-drum columns. In order to calculate this cumulative deformation for a series of ground motions, the individual deformation of the column for each excitation is computed and then used as initial conditions for the next earthquake excitation. Various multi-drum columns with different dimensions are also considered in the analyses in order to examine how the geometric characteristics of columns can affect their seismic sequence behaviour, in combination with the excitation frequency content.
机译:希腊和罗马古典建筑的古代纪念碑通常由多鼓柱组成,多柱由彼此叠置的石块构成。由于地震是破坏此类古迹的常见原因,因此一些研究涉及这种结构的地震行为。通过数值模拟和参数分析,研究了多次地震对多鼓柱抗震性能的影响。在专门开发的软件应用程序中已实现了离散元素方法和适当的接触模型,该应用程序能够有效地执行二维的必要模拟。具体而言,各种强地面激励被串联使用来计算多鼓柱的最终最终变形。为了计算一系列地面运动的累积变形,计算每个激励的柱体单个变形,然后将其用作下一次地震激励的初始条件。分析中还考虑了各种不同尺寸的多鼓式色谱柱,以结合激发频率内容来检查色谱柱的几何特性如何影响其地震序列行为。

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