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Estimating Sliding Displacement of an Unanchored Body Subjected to Earthquake Excitation

机译:估计受地震激励的无锚物体的滑动位移

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A freestanding rigid body under the action of base excitation can move in many different ways. In this study, the sliding response of a body is considered. The body is placed on a horizontal base that undergoes a one-dimensional horizontal motion. In 1965, Newmark (1965) gave a simple formula to determine the sliding distance of a freestanding body subjected to a single rectangular acceleration pulse of short duration at the base. The objective of this study is to see if this formula can be applied to estimate the sliding displacement of a body under the action of real earthquakes. Newmark's formula calls for the maximum velocity of the base which information is usually not directly available. To make use of the response spectrum commonly available to the engineers, Newmark's formula is first re-derived and expressed in terms of the maximum displacement of the base, which can be determined from the absolute displacement response spectrum in low frequency range. An ensemble of 75 real earthquakes is then employed, the equation of sliding motion is solved numerically and the average of the maximum sliding displacement of the body relative to the base is computed. The computed displacement is then compared with that obtained by Newmark's formula. This is done for a body placed on the ground as well as on the floors of a building. It is shown that Newmark's formula can be used if an adjustment factor, as suggested in this study, is applied.
机译:独立的刚体在基础激励的作用下可以以许多不同的方式移动。在这项研究中,考虑了物体的滑动响应。主体放置在经受一维水平运动的水平基座上。 1965年,Newmark(1965)给出了一个简单的公式来确定独立式物体在基座上经受短持续时间的单个矩形加速度脉冲的滑动距离。这项研究的目的是查看该公式是否可以用于估计在真实地震作用下的物体的滑动位移。纽马克公式要求最大的基速,而这些信息通常无法直接获得。为了利用工程师常用的响应谱,首先重新推导Newmark公式,并以基体的最大位移表示,该基数可以从低频范围内的绝对位移响应谱确定。然后采用75个真实地震的集合,对滑动运动方程进行数值求解,并计算出物体相对于基体的最大滑动位移的平均值。然后将计算出的位移与通过纽马克公式获得的位移进行比较。这是针对放置在地面以及建筑物地板上的物体完成的。结果表明,如果应用了这项研究中建议的调整因子,则可以使用纽马克公式。

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