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A new analytical approach to reconstruct the acceleration time history at the bedrock base from the free surface signal records

机译:一种新的分析方法,可根据自由表面信号记录重建基岩基础上的加速时间历史

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Acceleration time histories of earthquake events are typically measured in seismic stations that are placed close to the soil top surface. These acceleration records are often used as input data for seismic analysis. It may be used for base excitation in seismic analysis of above ground structures with shallow foundations.. However it may not be used for seismic analysis of underground structures, or even for above ground buildings with deep foundations and several underground stories. The required base excitation data of the latter should have been measured below the top surface, at a level that may be determined according to the specific analyzed building geometry or at the bedrock below. If the acceleration time history at the bedrock would have been known, the seismic wave propagation through the soil medium, from the bedrock towards the top surface, could have been carried out and the base excitation of the buried structure could be determined. Since there is no data on the acceleration time history at the bedrock, and the only given data is the acceleration records at the top surface, the goal of this paper is to provide an exact reverse analysis procedure to determine the unknown acceleration time history at the bedrock that would exactly produce the measured acceleration time history at the top surface. Once this goal is achieved, seismic analysis of buried structures may be carried out with the determined acceleration record at the bedrock as input. This paper presents an analytical exact solution of the inverse problem for determination of the acceleration, velocity and displacement time histories at the bedrock base of a layered geological medium that are compatible with the given acceleration record at the soil top surface. This new proposed method is based on analytical solutions of the initial-boundary value problems of the linear wave equation in the case of a layered medium. The relationship between waves in one layer and waves in another adjacent layer is derived considering the continuity of stresses and displacements at the common interface between the layers. The efficiency and accuracy of the proposed method is demonstrated through several examples involving the nonstationary response of the free surface. The case of the San Fernando Earthquake is studied. Excellent agreement is achieved between the recorded free surface time history and the reconstructed signal. This excellent agreement is obtained due to the exact analytical method used in deriving the inverse problem solution. This exact analytical method allows one to obtain an acceleration (velocity/displacement) distribution along all the layers at any time. (C) 2016 Elsevier Ltd. All rights reserved.
机译:地震事件的加速时间历史通常在靠近土壤顶面放置的地震台站中测量。这些加速度记录通常用作地震分析的输入数据。它可用于基础较浅的地上结构的地震分析中的基础激励。但是,它可能不适用于地下结构甚至具有较深基础和多个地下层的地上建筑的地震分析。后者所需的基础激励数据应该已经在顶面以下进行了测量,其水平可以根据具体分析的建筑物几何形状或在下面的基岩处确定。如果知道了基岩的加速时间历程,则可以进行从基岩向顶面通过土壤介质的地震波传播,并确定埋藏结构的基础激发。由于在基岩上没有关于加速时间历史的数据,并且唯一给定的数据是在顶面上的加速度记录,因此本文的目的是提供一种精确的反向分析程序,以确定在地面的未知加速时间历史。基岩,它将精确地在顶表面产生测得的加速时间历史。一旦达到这一目标,就可以用确定的基岩加速度记录作为输入,对埋藏结构进行地震分析。本文提出了反问题的解析精确解,以确定层状地质介质基岩基部的加速度,速度和位移时间历史,该历史与土壤表层的给定加速度记录兼容。这种新提出的方法是基于层状介质情况下线性波动方程初边值问题的解析解。考虑到各层之间公共界面处的应力和位移的连续性,得出了一层中的波与另一相邻层中的波之间的关系。通过涉及自由表面非平稳响应的几个示例证明了该方法的效率和准确性。研究了圣费尔南多地震的情况。记录的自由表面时间历程和重建信号之间实现了极好的一致性。由于用于推导逆问题解决方案的精确分析方法而获得了极好的一致性。这种精确的分析方法可以使人们随时获得沿所有层的加速度(速度/位移)分布。 (C)2016 Elsevier Ltd.保留所有权利。

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