首页> 外文OA文献 >Ambient noise energy bursts observation and modelling: Trapping of harmonic structure-soil induced-waves in a topmost sedimentary layer.
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Ambient noise energy bursts observation and modelling: Trapping of harmonic structure-soil induced-waves in a topmost sedimentary layer.

机译:环境噪声能量爆发观察和建模:在最顶层的沉积层中捕获谐波结构-土壤感应波。

摘要

We study the nature of energy bursts that appeared in the frequency range 3-5 Hz in ambient seismic noise recorded in the Grenoble basin (French Alps) during a seismological array experiment. A close agreement is found between the identified azimuths of such noise bursts with the location of an industrial chimney. In-situ measurements of the chimney dynamic characteristics show a coincidence between the frequency of the first harmonic mode of the chimney and the fundamental frequency of a thin surficial layer that overlay the deep sediment fill. The interaction between the chimney and the surfical layer is then numerically simulated using simple impedance models, and two geotechnical profiles. Simulations exhibit a satisfactory agreement with observations and suggest that energy bursts result of inertial structure-soil interaction favored by resonance effects between the first harmonic mode of the structure and the fundamental frequency of the topmost layer.
机译:我们在地震阵列实验中研究了格勒诺布尔盆地(法国阿尔卑斯山)记录的周围地震噪声中3-5 Hz频率范围内出现的能量爆发的性质。在这样的噪声突发的确定方位角与工业烟囱的位置之间发现了紧密的一致性。烟囱动态特性的现场测量表明,烟囱的一次谐波模式的频率与覆盖深沉积物的薄表层的基频之间是一致的。然后,使用简单的阻抗模型和两个岩土剖面,对烟囱和冲浪层之间的相互作用进行数值模拟。模拟结果与观察结果令人满意,并表明,结构的一次谐波模式与最顶层的基频之间的共振效应有利于惯性结构-土壤相互作用的能量爆发结果。

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