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Effect of seismic wave velocity on the dynamic response of multi-story structures on elastic foundation

机译:地震波速度对弹性地基多层结构动力响应的影响

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Traveling wave effects are generally considered with three main cases: (i) Wave passage effect that results with time delay in earthquake motion. (ii) incoherence effect which is defined as loss of coherency in the ground motion due to the reflection and refraction of waves, and (iii) local site effects. For multi-story structures whose supports are close to each other, the incoherence and local site effect may be omitted. In this case, traveling waves result only in a pure time delay in the earthquake motion (wave passage effect). Due to the wave passage effect of vertical and/or horizontal ground motion, the superstructure needs to be analyzed by multi-support excitation. Raft foundations cannot constrain vertical deformations and/or rotations, but they cause a diaphragm effect in the horizontal direction which results in uniform excitation. In this study, the effect of vertical earthquake motions onto multi-story buildings on elastic soil is investigated. Multi support excitation is considered by using displacement loading, which defines the equivalent seismic loads in terms of the ground displacement. According to the performed simulations of the selected structures, it is shown that structural height has a direct influence that results in member force magnifications with slow traveling wave effect. Among these, the ground floor column axial forces are most affected.
机译:通常在三种主要情况下考虑行波效应:(i)由于地震运动的时间延迟而产生的波通过效应。 (ii)非相干效应,其定义为由于波的反射和折射而使地面运动失去相干性,以及(iii)局部位点效应。对于支撑彼此靠近的多层结构,可以省略不连贯性和局部位点效应。在这种情况下,行波仅导致地震运动的纯时间延迟(波通过效应)。由于垂直和/或水平地震动的波通过效应,需要通过多支撑激励来分析上部结构。筏板基础不能限制垂直变形和/或旋转,但是会在水平方向上引起膜片效应,从而产生均匀的激励。在这项研究中,研究了垂直地震运动对弹性土壤上多层建筑物的影响。通过使用位移荷载来考虑多支撑激励,位移荷载定义了等效于地面位移的地震荷载。根据对选定结构的模拟,表明结构高度具有直接影响,导致构件力放大倍数具有缓慢的行波效应。其中,底层柱的轴向力受到的影响最大。

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