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Two-dimensional resonances in Alpine valleys identified from ambient vibration wavefields

机译:从环境振动波场中识别出高山峡谷中的二维共振

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摘要

Although numerical simulations have for long shown the importance of 2-D resonances in site effect estimations of sediment-filled valleys, this phenomenon is usually not taken into account by current hazard assessment techniques. We present an approach to identify the resonance behaviour of a typical Alpine valley by analysis of ambient noise recorded simultaneously on a dense array. The applicability of the method is evaluated further using synthetic ambient noise acquired with current 3-D numerical simulation techniques. Resonance frequencies of the fundamental mode SV and the fundamental and first higher mode of SH are identified from measured data with the reference station method, verifying results of previous studies. Patterns of spectral amplitude and phase behaviour obtained from observed and synthetic noise correlate well with properties expected for 2-D resonance. Application of a frequency-wavenumber technique shows that the noise wavefield is dominated by standing waves at low frequencies (0.25 to 0.50 Hz). The different 2-D resonance modes are creating prominent peaks in horizontal-to-vertical spectral ratios, which can not be interpreted in terms of 1-D resonance. We conclude that ambient noise records measured simultaneously on a linear array perpendicular to the valley axis may be used for identification of resonance modes in sediment-filled valleys
机译:尽管数值模拟已经长期显示了二维共振在沉积物填充谷地位效应估计中的重要性,但是当前的危害评估技术通常不会考虑这种现象。我们提出了一种通过分析密集阵列上同时记录的环境噪声来识别典型高山峡谷的共振行为的方法。使用通过当前3-D数值模拟技术获得的合成环境噪声进一步评估该方法的适用性。利用参考站方法从测量数据中识别出基本模式SV以及SH的基本和第一较高模式的共振频率,从而验证了先前研究的结果。从观察到的噪声和合成噪声获得的频谱幅度和相位行为模式与二维共振预期的特性密切相关。频率波数技术的应用表明,噪声波场以低频(0.25至0.50 Hz)的驻波为主。不同的2-D共振模式会在水平-垂直光谱比中创建显着的峰,这无法用一维共振来解释。我们得出结论,在垂直于谷轴的线性阵列上同时测量的环境噪声记录可用于识别充满泥沙的谷的共振模式

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