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Wavelet analysis of strong response records of building with bilinear restoring force

机译:具有双线性恢复力的建筑物强响应记录的小波分析

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It is very important to estimate the residual life of structures by analysng a strong response quantitatively, because it is necessary to judge whether they can be used or not in the future, after they are damaged by earthquakes. During a strong earthquake, the jerk response of a structure with bilinear restoring force has discontinuity, just when the restoring force changes rapidly from the elastic region to the plastic region. Authors have tried to detect the discontinuity in the jerk by using wavelet analysis nad reported a successful paper (Sone, et al., 1994). The final goal of study is to estimate the low cycle fatigue of structure by analysing the observed records in a structure. For this object, the relationship between ductility factor; that is the ratio of peak relative displacement and yield relative displacement, and the number of discontinuity detection is needed. In this paper, the method is proposed to estimate the ductility factor of structure by the wavelet analysis of absolute acceleration response. Wavelet has the ability to detect discontinuity in acceleration response record; furthermore, it is found in this study that the wavelet coefficient is proportional to the velocity at the yield point. Besides, the ductility factor is estimated from the velocity at yield point by using the energy balance between kinetic energy at the yield point and strain energy from the yield point to the maximum relative displacement. Thus, using these relationships, the ductility factor is estimated from vavelet coefficient obtained by waveler analysis of acceleration response. The applicability of this method is verified through some simulations.
机译:通过定量分析强烈的响应来估计结构的剩余寿命非常重要,因为有必要判断它们在遭受地震破坏后在将来是否可以使用。在强地震中,具有双线性恢复力的结构的加速度响应具有不连续性,正好在恢复力从弹性区域向塑性区域快速变化时。作者尝试通过小波分析来检测急动中的不连续性,而据报道,该论文是成功的(Sone等,1994)。研究的最终目标是通过分析结构中观察到的记录来估计结构的低周疲劳。对于这个目的,延性因子之间的关系;即峰值相对位移与屈服相对位移之比,并且需要不连续检测的次数。本文提出了一种通过绝对加速度响应的小波分析来估计结构延性因子的方法。小波具有检测加速度响应记录中不连续性的能力;此外,在这项研究中发现,小波系数与屈服点处的速度成正比。此外,利用屈服点的动能和从屈服点到最大相对位移的应变能之间的能量平衡,由屈服点的速度估算延性因子。因此,利用这些关系,从通过加速度响应的波形分析获得的小波系数估计延性因子。通过一些仿真验证了该方法的适用性。

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