首页> 外文期刊>Bulletin of the Seismological Society of America >Ground Motion in the Presence of Complex Topography: Earthquake and Ambient Noise Sources
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Ground Motion in the Presence of Complex Topography: Earthquake and Ambient Noise Sources

机译:复杂地形条件下的地震动:地震和环境噪声源

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摘要

To study the influence of topography on ground motion, eight seismic recorders were deployed for a period of one year over Poverty Ridge on the east side of the San Francisco Bay Area, California. This location is desirable because of its proximity to local earthquake sources and the significant topographic relief of the array (439 m). Topographic amplification is evaluated as a function of frequency using a variety of methods, including reference-site-based spectral ratios and single-station horizontal-to-vertical spectral ratios using both shear waves from earthquakes and ambient noise. Field observations are compared with the predicted ground motion from an accurate digital model of the topography and a 3D local velocity model. Amplification factors from the theoretical calculations are consistent with observations. The fundamental resonance of the ridge is prominently observed in the spectra of data and synthetics; however, higher-frequency peaks are also seen primarily for sources in line with the major axis of the ridge, perhaps indicating higher resonant modes. Excitations of lateral ribs off of the main ridge are also seen at frequencies consistent with their dimensions. The favored directions of resonance are shown to be transverse to the major axes of the topographic features.
机译:为了研究地形对地面运动的影响,在加利福尼亚州旧金山湾区东侧的贫困岭上部署了八台地震记录仪,为期一年。该位置是理想的,因为它靠近当地地震源,并且阵列的地形地形明显(439 m)。使用多种方法可以评估地形放大率与频率的函数关系,包括使用地震和环境噪声产生的剪切波的基于参考站点的光谱比和单站水平与垂直光谱比。将现场观测结果与准确的地形数字模型和3D局部速度模型中的预测地面运动进行比较。理论计算得出的放大因子与观测值一致。脊的基本共振在数据和合成光谱中很明显。然而,高频峰也主要出现在与脊长轴一致的光源上,这可能表明共振模式更高。在与主脊的尺寸一致的频率上也可以看到主脊外侧的肋骨的激励。共振的有利方向显示为横向于地形特征的主轴。

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