摘要
The non-stationary feature of seismic ground motions has an important effect on the nonlinear dynamic response of structures, which makes it of great significance to accurately describe the non-stationary feature of seismic ground motions when generating artificial seismic waves. Based on the formula of spectral representation, the non-stationary feature of seismic ground motions was described by evolutionary power spectral density, which modulated the synthesized seismic waves by Gaussian function at each frequency section. General harmonic wavelet based Spanos-Tratskas method was adopted to calculate the evolutionary power spectral density of seismic ground motions. Combining peak pre-recognition technology and genetic algorithm, the fitting of evolutionary power spectral density(EPSD) model and target actual EPSD was achieved. A total of nearly 2 500 seismic ground motion records are selected from KiK-net earthquake databank to verify the applicability of proposed model, and several examples were provided. The results show that the proposed model can well fit the temporal envelope of EPSD at each frequency, especially at medium and high frequency components. The modeling of EPSD can extract the information of non-stationarity into identified model parameters, then the underlying pattern can be revealed by statistical analysis of model parameters. The proposed model provides a feasible way to study the non-stationary features of seismic ground motions.
投稿的翻译标题 | Gaussian function based evolutionary power spectral density model for fully non-stationary seismic waves and application |
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源语言 | 繁体中文 |
页(从-至) | 198-206 |
页数 | 9 |
期刊 | Jianzhu Jiegou Xuebao/Journal of Building Structures |
卷 | 41 |
期 | 5 |
DOI | |
出版状态 | 已出版 - 1 5月 2020 |
关键词
- Evolutionary power spectral density
- Fully non-stationary seismic ground motion
- General harmonic wavelet
- Parameter identification
- Spectral representation