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Earth modeling and estimation of the local seismic ground motion due to site geology in complex volcanoclastic areas

机译:复杂的火山电阻区域地质地质地质地球地区地球建模与估计

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摘要

Volcanic areas often show complex behaviour as far as seismic waves propagation and seismic motion at surface are concerned. In fact, the finite lateral extent of surface layers such as lava flows, blocks, differential welding and/or zeolitization within pyroclastic deposits, introduces in the propagation of seismic waves effects such as the generation of surface waves at the edge, resonance in lateral direction, diffractions and scattering of energy, which tend to modify the amplitude as well as the duration of the ground motion. The irregular topographic surface, typical of volcanic areas, also strongly influences the seismic site response. Despite this heterogeneity, it is unfortunately a common geophysical and engineering practice to evaluate even in volcanic environments the subsurface velocity field with monodimensional investigation method (i.e. geognostic soundings, refraction survey, down-hole, etc.) prior to the seismic site response computation which in a such cases is obviously also made with 1D algorithms. This approach often leads to highly inaccurate results. In this paper we use a different approach, i.e. a fully 2D P-wave Çturning rayÈ tomographic survey followed by 2D seismic site response modeling. We report here the results of this approach in three sites located at short distance from Mt. Vesuvius and Campi Flegrei and characterized by overburdens constituted by volcanoclastic deposits with large lateral and vertical variations of their elastic properties. Comparison between 1D and 2D Dynamic Amplification Factor shows in all reported cases entirely different results, both in terms of peak period and spectral contents, as expected from the clear bidimensionality of the geological section. Therefore, these studies suggest evaluating carefully the subsoil geological structures in areas characterized by possible large lateral and vertical variations of the elastic properties in order to reach correct seismic site response curves to be used for engineering projects.
机译:火山区域往往表现出尽可能在表面地震波传播和地震运动而言复杂的行为。事实上,表面层的有限横向范围如熔岩流,块,火山碎屑沉积物内差动焊接和/或沸石化,介绍的地震波的影响的传播,例如在边缘处产生表面波,共振在横向方向上,衍射和能量的散射,这倾向于修改振幅以及地面运动的持续时间。不规则地形表面,典型的火山地区,也强烈地影响地震场地响应。尽管这种异质性,这是不幸的是一个共同的地球物理和工程实践,即使在火山环境评价与单维的调查方法地下速度场(即探测有关记录地质学,折射调查结果显示,井下等)之前的地震现场响应计算其在这种情况下,显然也与1D算法做出。这种做法往往会导致非常不准确的结果。在本文中,我们使用不同的方法,即完全2D P波ÇturningRAYE断层调查,随后二维地震现场响应建模。我们在这里报告在位于距离维苏威火山和坎比Flegrei短距离和特点,通过与他们的弹性性质的大的横向和纵向的变化火山碎屑沉积物构成埋深三个网站这种做法的结果。在从地质剖面的清晰bidimensionality预期所有报告的病例完全不同的结果,无论是在高峰期和频谱内容的方面,一维和二维动态放大系数显示的比较。因此,这些研究表明,仔细评估中,以达到正确的地震现场响应曲线特征的弹性性能的可能大的横向和纵向的变化领域的地下地质构造用于工程项目。

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