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首页> 外文期刊>Journal of Applied Geophysics >The uncertainty of estimating the thickness of soft sediments with the HVSR method: A computational point of view on weak lateral variations
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The uncertainty of estimating the thickness of soft sediments with the HVSR method: A computational point of view on weak lateral variations

机译:HVSR方法估算软沉积物厚度的不确定性:弱横向变化的计算观点

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摘要

The use of the ratio of microtremor spectra, as computed by the Nakamura's technique, was recently proved successful for the evaluating the thickness of sedimentary covers laying over both shallow and deep rocky bedrocks thus enabling bedrock mapping. The experimental success of such application and its experimental uncertainties are today reported in many publications. To map bedrock, two approaches exist. The first is to assume a constant shear wave velocity profile of the sediments. The second, and most preferable, is lbs-von Seht and Wohlenberg's, based on correlating Nakamura's curves main peak and wells information. In the latter approach, the main sources of uncertainty addressed by authors, despite the lack of formal proof, comprise local deviations of the subsurface from the assumed model. I first discuss the reliability of the simplified constant velocity approach showing its limitations. As a second task, I evaluate the uncertainty of the lbs-von Seht and Wohlenberg's approach with focus on local subsurface variations. Since the experimental basis is well established, I entirely focus my investigation on numerical simulations to evaluate to what extent local subsurface deviations from the assumed model may affect the outcome of a bedrock mapping survey. Further, the present investigation strategy suggests that modeling and inversion, through the investigation of the parameters space around the reference model, may reveal a very convenient tool when lateral variations are suspected to exist or when the number of available wells is not sufficient to obtain an accurate frequency depth regression. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用Nakamura技术计算的微调光谱比率最近被证明是成功的,用于评估铺设浅层和深岩石基岩的沉积盖的厚度,从而使基岩映射能够。今天报告了这种应用的实验成功及其实验不确定性在许多出版物中报告。为了映射基岩,存在两种方法。首先是假设沉积物的恒定剪切波速度曲线。第二,最优选的是,基于与Nakamura的曲线主峰和井信息相关的相关性的LBS-Von Seht和Wohlenberg。在后一种方法中,作者所讨论的主要不确定性来源,尽管缺乏正式证据,但包括来自假定模型的局部偏差。我首先探讨了显示其限制的简化恒流方法的可靠性。作为第二项任务,我评估了LBS-Von SEHT和Wohlenberg的不确定性,重点关注当地地下变化。由于实验基础成立,我完全集中了我对数值模拟的调查,以评估来自假定模型的当地地下偏差在多大程度上可能影响基岩映射调查的结果。此外,本研究策略表明,通过调查参考模型周围的参数空间的建模和反演,可以在怀疑存在横向变化时或者当可用井的数量不足以获得时,这是一种非常方便的工具精确的频率深度回归。 (c)2017 Elsevier B.v.保留所有权利。

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