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Response of nonlinear single-degree-of-freedom structures to random acceleration sequences

机译:非线性单自由度结构对随机加速度序列的响应

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摘要

Current seismic codes specify design earthquake loads as single events. The structure, however, may experience multiple ground accelerations in a short period of time. The evidence from recent earthquakes confirms this scenario. For instance, the 2004 Niigata earthquake consisted of two acceleration sequences. An earthquake of repeated sequences can cause more damage to the structure than a single ordinary event, due to the accumulation of inelastic deformations. However, information on repeated acceleration sequences is currently limited. This paper proposes a simple stochastic model for representing repeated acceleration sequences. Subsequently, the model is used in investigating the response of nonlinear single-degree-of-freedom (SDOF) structures to random earthquakes of repeated sequences. The ground acceleration is represented as a stationary Gaussian random process modulated by an envelope function of repeated character. The structural response is quantified in terms of the input and hysteretic energies, ductility demand, damage indices and failure probability. Numerical demonstrations of the response of nonlinear SDOF systems to acceleration sequences are provided.
机译:当前的地震法规将设计地震荷载指定为单个事件。但是,该结构可能会在短时间内经历多次地面加速度。最近地震的证据证实了这种情况。例如,2004年新泻地震包含两个加速序列。由于非弹性变形的积累,重复序列的地震比单个普通事件对结构的破坏更大。但是,有关重复的加速序列的信息目前受到限制。本文提出了一个简单的随机模型来表示重复的加速度序列。随后,该模型用于调查非线性单自由度(SDOF)结构对重复序列的随机地震的响应。地面加速度表示为由重复性特征的包络函数调制的平稳高斯随机过程。结构响应根据输入和滞后能量,延展性需求,损伤指数和失效概率进行量化。提供了非线性SDOF系统对加速度序列响应的数值演示。

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