露头尺度构造和成岩非均质性对多孔砂岩含水层流动和物质输运的影响

IF 3.6 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Marco Antonellini , Leonardo Del Sole , Pauline Nella Mollema
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引用次数: 0

摘要

我们应用露头结构和原位岩石物理性质测量来构建多孔砂岩含水层的流动和质量输运校准数值模型。变形带和相关碳酸盐结核的存在影响了该含水层的导流性。研究表明,这些非均质性会使宿主岩石的水力导电性降低2-3个数量级。考虑到模型是用水文野外数据校准的,所得结果是稳健的。我们的水力导电性升级方法通过对保守颗粒的平流速度的反演,允许包含露头尺度结构和成岩特征。这种方法可以很容易地在含水层或其他地流体储层模拟器中实现现场数据。我们的实验表明,使用等效各向同性水力导电性方法不能正确地解释多孔砂岩含水层中的质量输运,我们建议在模型中尽可能地实现水力导电性的局部非均质性和各向异性,以便能够对平流和弥散进行更现实和保守的估计。我们的发现应该对那些研究地球流体模拟和地下水污染的科学家有所帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of outcrop-scale structural and diagenetic heterogeneities on flow and mass transport in a porous sandstone aquifer
We apply outcrop-based structural and in-situ petrophysical properties measurements for the construction of flow and mass transport calibrated numerical models in a porous sandstone aquifer. The hydraulic conductivity in this aquifer is influenced by the presence of deformation bands and related carbonate nodules. These heterogeneities are shown to decrease the hydraulic conductivity of the host rock by 2–3 orders of magnitude. The result obtained is robust, given that the models were calibrated with hydrologic field data. Our upscaling methodology for hydraulic conductivity allows inclusion of outcrop-scale structures and diagenetic features by means of inversion of the advective velocity for conservative particles. This approach can be used for easily implementing field data in aquifers or other geofluids reservoir simulators. Our experiments show that the use of an equivalent isotropic hydraulic conductivity approach fails to correctly account for mass transport in porous sandstone aquifers and we recommend implementing, as much as possible, the local heterogeneities and anisotropies in hydraulic conductivity within the model to be able to have a more realistic and conservative estimate of advection and dispersion. Our findings should be helpful to those scientists dealing with geofluids modeling and groundwater pollution.
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来源期刊
Marine and Petroleum Geology
Marine and Petroleum Geology 地学-地球科学综合
CiteScore
8.80
自引率
14.30%
发文量
475
审稿时长
63 days
期刊介绍: Marine and Petroleum Geology is the pre-eminent international forum for the exchange of multidisciplinary concepts, interpretations and techniques for all concerned with marine and petroleum geology in industry, government and academia. Rapid bimonthly publication allows early communications of papers or short communications to the geoscience community. Marine and Petroleum Geology is essential reading for geologists, geophysicists and explorationists in industry, government and academia working in the following areas: marine geology; basin analysis and evaluation; organic geochemistry; reserve/resource estimation; seismic stratigraphy; thermal models of basic evolution; sedimentary geology; continental margins; geophysical interpretation; structural geology/tectonics; formation evaluation techniques; well logging.
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