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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Planar investigation of the seismic response of ancient columns and colonnades with epistyles using a custom-made software
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Planar investigation of the seismic response of ancient columns and colonnades with epistyles using a custom-made software

机译:使用定制软件对具有落地式的古柱和柱廊的地震响应进行平面调查

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In this paper, the dynamic behavior of multi-drum columns and colonnades with epistyles under earthquake excitations is examined through planar numerical simulations. A specialized software application, developed utilizing the discrete element methods (DEM), is used to investigate the influence of certain parameters on the seismic response of such multi-body structural systems. First, this custom-made software is extensively validated by comparing the computed responses of various problems, such as sliding, rocking and free vibration dynamics of rigid bodies, with the corresponding analytical solutions. Then, the developed software is used to study the influence of the frequency content and amplitude of the ground motions on the columns and colonnades, as well as the geometric characteristics of these structures. Parameters such as the number of drums that assemble each column and the number of columns of a colonnade appear to be defining parameters that affect the seismic response of colonnades with epistyles. For ground motions with relatively low predominant frequencies, rocking is the dominant effect in the response, while with the increase of the excitation frequency the response becomes even more complex involving both sliding and rocking phenomena. The numerical simulations show that earthquakes with relatively low predominant frequencies seem to endanger both standalone columns and colonnades with epistyles more than earthquakes with higher predominant frequencies.
机译:本文通过平面数值模拟,研究了地震激励下多鼓柱和柱式具有震撼力的动态行为。利用离散元方法(DEM)开发的专用软件应用程序用于研究某些参数对这种多体结构系统的地震响应的影响。首先,通过将各种问题(例如刚体的滑动,摇摆和自由振动动力学)的计算响应与相应的分析解决方案进行比较,对该定制软件进行了广泛的验证。然后,使用开发的软件来研究地震动的频率含量和幅度对圆柱和柱廊的影响,以及这些结构的几何特征。诸如组装每列的鼓的数量和柱廊的列数之类的参数似乎是定义参数,这些参数会影响具有Epistyle的柱廊的地震响应。对于具有较低主导频率的地面运动,摇摆是响应的主要作用,而随着激励频率的增加,响应变得更加复杂,包括滑动和摇摆现象。数值模拟表明,相对较低的主导频率的地震似乎比具有较高主导频率的地震更容易危害独立柱和具有震荡样式的柱廊。

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