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首页> 外文期刊>Journal of Applied Geophysics >A layer stripping approach for monitoring resistivity variations using surface magnetotelluric responses
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A layer stripping approach for monitoring resistivity variations using surface magnetotelluric responses

机译:使用表面大地电磁响应监测电阻率变化的分层方法

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摘要

The resolution of surface-acquired magnetotelluric data is typically not sufficiently high enough in monitoring surveys to detect and quantify small resistivity variations produced within an anomalous structure at a given depth within the subsurface. To address this deficiency we present an approach, called "layer stripping", based on the analytical solution of the one-dimensional magnetotelluric problem to enhance the sensitivity of surface magnetotelluric responses to such subtle subsurface temporal variations in resistivity within e.g. reservoirs. Given a well-known geoelectrical baseline model of a reservoir site, the layer stripping approach aims to remove the effect of the upper, unchanging structures in order to simulate the time-varying magnetotelluric responses at depth. This methodology is suggested for monitoring all kinds of reservoirs, e.g. hydrocarbons, gas, geothermal, compress air storage, etc., but here we focus on CO2 geological storage. We study one-dimensional and three-dimensional resistivity variations in the reservoir layer and the feasibility of the method is appraised by evaluating the error of the approach and defining different detectability parameters. The geoelectrical baseline model of the Hontomin site (Spain) for CO2 geological storage in a deep saline aquifer is taken as our exemplar for studying the validity of the 1D assumption in a real scenario. We conclude that layer stripping could help detect resistivity variations and locate them in the space, showing potential to also sense unforeseen resistivity variations at all depths. The proposed approach constitutes an innovative contribution to take greater advantage of surface magnetotelluric data and to use the method as a cost-effective permanent monitoring technique in suitable geoelectrical scenarios. (C) 2016 Elsevier B.V. All rights reserved.
机译:在监测调查中,表面获取的大地电磁数据的分辨率通常不够高,无法检测和量化在地下内给定深度的异常结构内产生的小电阻率变化。为了解决这一缺陷,我们基于一维大地电磁问题的解析解决方案,提出了一种称为“层剥离”的方法,以增强表面大地电磁响应对例如电阻率这样细微的地下时间变化的敏感性。水库。给定一个已知的储层地点的地电基线模型,层剥离方法旨在消除上部不变的结构的影响,以便模拟深处时变的大地电磁响应。建议使用此方法来监视各种储层,例如碳氢化合物,天然气,地热,压缩空气存储等,但是这里我们主要关注CO2的地质存储。我们研究了储层中的一维和三维电阻率变化,并通过评估方法的误差并定义了不同的可探测性参数,评价了该方法的可行性。以Hontomin站点(西班牙)在深盐水层中的CO2地质存储为基础的地电基线模型,作为我们在真实场景下研究一维假设有效性的范例。我们得出的结论是,剥离层可以帮助检测电阻率变化并将其定位在空间中,显示出在所有深度也可以感知不可预见的电阻率变化的潜力。所提出的方法构成了一种创新的贡献,它可以充分利用地面大地电磁数据的优势,并在适当的地电情况下将该方法用作具有成本效益的永久监测技术。 (C)2016 Elsevier B.V.保留所有权利。

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