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Critical Double Impulse Input and Bound of Earthquake Input Energy to Building Structure

机译:临界双脉冲输入和地震输入能量对建筑结构的限制

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摘要

A theory of earthquake input energy to building structures under single impulse is useful for disclosing the property of energy transfer function. This property shows that the area of the energy transfer function is constant irrespective of natural period and damping of building structures. However, single impulse may be unrealistic from a certain viewpoint because the frequency characteristic of input cannot be expressed by this input. In order to resolve such issue, a double impulse is introduced in this paper. The frequency characteristic of the Fourier amplitude of the double impulse is found in an explicit manner and a critical excitation problem is formulated with an interval of two impulses as a variable. The solution to that critical excitation problem is derived. An upper bound of the earthquake input energy is then derived by taking full advantage of the property of the energy transfer function that the area of the energy transfer function is constant. The relation of the double impulse to the corresponding one-cycle sinusoidal wave as a representative of near-fault pulse-type waves is also investigated.
机译:一次输入冲击力到建筑物的地震输入理论对于揭示能量传递函数的性质是有用的。该特性表明,不管自然周期和建筑结构的阻尼如何,能量传递函数的面积都是恒定的。但是,从某种观点来看,单脉冲可能是不现实的,因为输入的频率特性不能由该输入表示。为了解决这一问题,本文引入了双重冲动。以明确的方式找到双脉冲的傅立叶振幅的频率特性,并以两个脉冲的间隔作为变量来阐述临界激励问题。得出了该关键激励问题的解决方案。然后,通过充分利用能量传递函数的面积(能量传递函数的面积是恒定的)的特性来推导地震输入能量的上限。还研究了双脉冲与相应的代表近故障脉冲型波的单周期正弦波的关系。

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