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Mechanism and bounding of earthquake energy input to building structure on surface ground subjected to engineering bedrock motion

机译:工程基岩运动作用下地表建筑结构输入地震能量的机理和边界

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The mechanism of earthquake energy input to building structures is clarified by considering the surface ground amplification and soil-structure interaction. The earthquake input energies to superstructures, soil-foundation systems and total swaying-rocking system are obtained by taking the corresponding appropriate free bodies into account and defining the energy transfer functions. It has been made clear that, when the ground surface motion is white, the input energy to the swaying-rocking model is constant regardless of the soil property (input energy constant property). The upper bound of earthquake input energy to the swaying-rocking model is derived for the model including the surface ground amplification by taking full advantage of the above-mentioned input energy constant property and introducing the envelope function for the transfer function of the surface ground amplification. Extension of the theory to a general earthquake ground motion model at the engineering bedrock is also made by taking full advantage of the above-mentioned input energy constant property. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过考虑地表放大作用和土-结构相互作用,阐明了地震能量输入建筑结构的机理。通过考虑相应的适当自由体并定义能量传递函数,可以获得地震输入到上部结构,地基系统和整体摇摆-摇摆系统的能量。已经清楚的是,当地面运动为白色时,摇摆摇摆模型的输入能量是恒定的,而与土壤特性无关(输入能量恒定特性)。通过充分利用上述输入能量常数特性并引入包络函数作为地表放大率的传递函数,为包括地表放大率的模型推导了摇摆摇摆模型的地震输入能量的上限。 。通过充分利用上述输入能量常数特性,还可以将理论扩展到工程基岩的一般地震地震动模型。 (C)2014 Elsevier Ltd.保留所有权利。

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