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Estimate of input energy for elasto-plastic SDOF systems during earthquakes based on discrete wavelet coefficients

机译:基于离散小波系数的弹塑性SDOF系统输入能量估计

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The response of an elasto-plastic single degree of freedom (SDOF) system to ground motion is estimated based on wavelet coefficients calculated by discrete wavelet transform. Wavelet coefficients represent both the time and frequency characteristics of input ground motion, and thus can be considered to be directly related to the dynamic response of a non-linear system. This relationship between the energy input into an elastic SDOF system and wavelet coefficients is derived based on the assumption that wavelets deliver energy to the structure instantaneously and the quantity of energy is constant regardless of yielding. These assumptions are shown to be valid when the natural period of the system is in the predominant period range of the wavelet, the most common scenario for real structures, through dynamic response analysis of a single wavelet. The wavelet-based estimation of elastic and plastic energy transferred by earthquake ground motion is thus shown to be in good agreement with the dynamic response analysis when the natural period is in the predominant range of the input.
机译:基于离散小波变换计算的小波系数,估计了弹塑性单自由度(SDOF)系统对地面运动的响应。小波系数表示输入地面运动的时间和频率特性,因此可以认为与非线性系统的动态响应直接相关。输入到弹性SDOF系统中的能量与小波系数之间的这种关系是基于以下假设得出的:小波瞬时将能量传递到结构,并且能量的数量是恒定的,而与屈服无关。通过单个小波的动态响应分析,当系统的自然周期在小波的主要周期范围内(对于实际结构最常见的情况)时,这些假设被证明是有效的。因此,当自然周期在输入的主要范围内时,基于小波的地震地面运动传递的弹性和塑性能量估计与动态响应分析非常吻合。

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