首页> 外文期刊>Mathematical Modelling in Civil Engineering >EVALUATION OF THE POUNDING FORCES DURING EARTHQUAKE USING EXPLICIT DYNAMIC TIME INTEGRATION METHOD
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EVALUATION OF THE POUNDING FORCES DURING EARTHQUAKE USING EXPLICIT DYNAMIC TIME INTEGRATION METHOD

机译:用显式动态时间积分法评价地震的冲击力。

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Pounding effects during earthquake is a subject of high significance for structural engineers performing in the urban areas. In this paper, two ways to account for structural pounding are used in a MATLAB code, namely classical stereomechanics approach and nonlinear viscoelastic impact element. The numerical study is performed on SDOF structures acted by ELCentro recording. While most of the studies available in the literature are related to Newmark implicit time integration method, in this study the equations of motion are numerical integrated using central finite difference method, an explicit method, having the main advantage that in the displacement at the ith+1 step is calculated based on the loads from the ith step. Thus, the collision is checked and the pounding forces are taken into account into the equation of motion in an easier manner than in an implicit integration method. First, a comparison is done using available data in the literature. Both linear and nonlinear behavior of the structures during earthquake is further investigated. Several layout scenarios are also investigated, in which one or more weak buildings are adjacent to a stiffer building. One of the main findings in this paper is related to the behavior of a weak structure located between two stiff structures.
机译:对于城市中的结构工程师而言,地震期间的撞击影响具有很高的意义。本文在MATLAB代码中使用了两种方法来解决结构碰撞的问题,即经典的立体力学方法和非线性粘弹性冲击元件。对通过ELCentro记录作用的SDOF结构进行了数值研究。尽管文献中的大多数研究都与Newmark隐式时间积分方法有关,但在这项研究中,运动方程式是使用中心有限差分法(一种显式方法)进行数值积分的,主要优点是在ith +根据第i步的载荷计算1步。因此,与隐式积分方法相比,以更容易的方式检查了碰撞,并在运动方程中考虑了冲击力。首先,使用文献中的可用数据进行比较。进一步研究了结构在地震过程中的线性和非线性行为。还研究了几种布局方案,其中一栋或多栋薄弱的建筑物与一栋较硬的建筑物相邻。本文的主要发现之一与位于两个刚性结构之间的弱结构的行为有关。

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