Evaluating and Validating 3D Simulated MASW and SPAC In-Situ Tests in Argostoli, Greece

IF 2.8 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Andrea C Riaño, Fernando Lopez-Caballero, Fabrice Hollender
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引用次数: 0

Abstract

Summary Geophysics and Geotechnical Engineering commonly use one-dimensional (1D) wave propagation analysis, simplifying complex scenarios by assuming flat and homogeneous soil layers, vertical seismic wave propagation, and negligible pore water pressure effects (total stress analysis). These assumptions are commonly used in practice, providing the basis for applications like analyzing site responses to earthquakes and characterizing soil properties through inversion processes. These processes involve various in-situ tests to estimate the subsurface soil’s material profile, providing insights into its behavior during seismic events. This study seeks to address the limitations inherent to 1D analyses by using three-dimensional (3D) physics-based simulations to replicate in-situ tests performed in the Argostoli basin, Greece. Active and passive source surveys are simulated, and their results are used to determine material properties at specific locations, employing standard geophysical methods. Our findings underscore the potential of 3D simulations to explore different scenarios, considering different survey configurations, source types, and array sets.
评估和验证希腊阿尔戈斯托利的三维模拟 MASW 和 SPAC 现场试验
摘要 地球物理学和岩土工程通常使用一维(1D)波传播分析,通过假设土层平坦且均匀、地震波垂直传播以及孔隙水压力效应可忽略不计(总应力分析)来简化复杂情况。这些假设在实践中很常用,为分析场地对地震的响应以及通过反演过程确定土壤特性等应用提供了基础。这些过程涉及各种原位测试,以估算地下土壤的材料剖面,从而深入了解其在地震事件中的行为。本研究试图通过使用基于物理的三维(3D)模拟来复制在希腊阿尔戈斯托利盆地进行的原位测试,从而解决 1D 分析固有的局限性。我们模拟了主动源和被动源勘测,并采用标准地球物理方法将其结果用于确定特定位置的材料属性。我们的研究结果强调了三维模拟在探索不同方案、考虑不同勘测配置、源类型和阵列集方面的潜力。
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来源期刊
Geophysical Journal International
Geophysical Journal International 地学-地球化学与地球物理
CiteScore
5.40
自引率
10.70%
发文量
436
审稿时长
3.3 months
期刊介绍: Geophysical Journal International publishes top quality research papers, express letters, invited review papers and book reviews on all aspects of theoretical, computational, applied and observational geophysics.
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