Upscaling Solute Transport in Naturally Fractured Porous Media with the Continuous Time Random Walk Method

Upscaling Solute Transport in Naturally Fractured Porous Media with the Continuous Time Random Walk Method
Title Upscaling Solute Transport in Naturally Fractured Porous Media with the Continuous Time Random Walk Method PDF eBook
Author
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Pages
Release 2010
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ISBN

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Solute transport in fractured porous media is typically 'non-Fickian'; that is, it is characterized by early breakthrough and long tailing and by nonlinear growth of the Green function-centered second moment. This behavior is due to the effects of (1) multirate diffusion occurring between the highly permeable fracture network and the low-permeability rock matrix, (2) a wide range of advection rates in the fractures and, possibly, the matrix as well, and (3) a range of path lengths. As a consequence, prediction of solute transport processes at the macroscale represents a formidable challenge. Classical dual-porosity (or mobile-immobile) approaches in conjunction with an advection-dispersion equation and macroscopic dispersivity commonly fail to predict breakthrough of fractured porous media accurately. It was recently demonstrated that the continuous time random walk (CTRW) method can be used as a generalized upscaling approach. Here we extend this work and use results from high-resolution finite element-finite volume-based simulations of solute transport in an outcrop analogue of a naturally fractured reservoir to calibrate the CTRW method by extracting a distribution of retention times. This procedure allows us to predict breakthrough at other model locations accurately and to gain significant insight into the nature of the fracture-matrix interaction in naturally fractured porous reservoirs with geologically realistic fracture geometries.

Continuous Time Random Walk Analysis of Solute Transport in Fractured Porous Media

Continuous Time Random Walk Analysis of Solute Transport in Fractured Porous Media
Title Continuous Time Random Walk Analysis of Solute Transport in Fractured Porous Media PDF eBook
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Pages
Release 2008
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ISBN

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The objective of this work is to discuss solute transport phenomena in fractured porous media, where the macroscopic transport of contaminants in the highly permeable interconnected fractures can be strongly affected by solute exchange with the porous rock matrix. We are interested in a wide range of rock types, with matrix hydraulic conductivities varying from almost impermeable (e.g., granites) to somewhat permeable (e.g., porous sandstones). In the first case, molecular diffusion is the only transport process causing the transfer of contaminants between the fractures and the matrix blocks. In the second case, additional solute transfer occurs as a result of a combination of advective and dispersive transport mechanisms, with considerable impact on the macroscopic transport behavior. We start our study by conducting numerical tracer experiments employing a discrete (microscopic) representation of fractures and matrix. Using the discrete simulations as a surrogate for the 'correct' transport behavior, we then evaluate the accuracy of macroscopic (continuum) approaches in comparison with the discrete results. However, instead of using dual-continuum models, which are quite often used to account for this type of heterogeneity, we develop a macroscopic model based on the Continuous Time Random Walk (CTRW) framework, which characterizes the interaction between the fractured and porous rock domains by using a probability distribution function of residence times. A parametric study of how CTRW parameters evolve is presented, describing transport as a function of the hydraulic conductivity ratio between fractured and porous domains.

Advances in Groundwater Flow and Solute Transport: Pushing the Hidden Boundary

Advances in Groundwater Flow and Solute Transport: Pushing the Hidden Boundary
Title Advances in Groundwater Flow and Solute Transport: Pushing the Hidden Boundary PDF eBook
Author Hongbin Zhan
Publisher MDPI
Pages 196
Release 2019-10-01
Genre Science
ISBN 3039210742

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In recent decades, the study of groundwater flow and solute transport has advanced into new territories that are beyond conventional theories, such as Darcy’s law and Fick’s law. The studied media have changed from permeable porous and fractured ones to much less permeable ones, such as clay and shale. The studied pore sizes have also changed from millimetres to micro-meters or even nano-meters. The objective of this Special Issue is to report recent advances in groundwater flow and solute transport that push the knowledge boundary into new territories which include, but are not limited to, flow and transport in sloping aquifer/hillslopes, coupled unsaturated and saturated flow, coupled aquifer-vertical/horizontal/slant well flow, interaction of aquifer with connected and disconnected rivers, non-Darcian flow, anomalous transport beyond the Fickian scheme, and flow and transport in extremely small pore spaces such as shale and tight sandstones. Contributions focusing on innovative experimental, numerical, and analytical methods for understanding unconventional problems, such as the above-listed ones, are encouraged, and contributions addressing flow and transport at interfaces of different media and crossing multiple temporal and spatial scales are of great value

Fractional Calculus: Theory and Applications

Fractional Calculus: Theory and Applications
Title Fractional Calculus: Theory and Applications PDF eBook
Author Francesco Mainardi
Publisher MDPI
Pages 209
Release 2018-09-20
Genre Mathematics
ISBN 3038972061

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This book is a printed edition of the Special Issue "Fractional Calculus: Theory and Applications" that was published in Mathematics

Issues in Environmental Research and Application: 2012 Edition

Issues in Environmental Research and Application: 2012 Edition
Title Issues in Environmental Research and Application: 2012 Edition PDF eBook
Author
Publisher ScholarlyEditions
Pages 1286
Release 2013-01-10
Genre Technology & Engineering
ISBN 1481645463

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Issues in Environmental Research and Application: 2012 Edition is a ScholarlyEditions™ eBook that delivers timely, authoritative, and comprehensive information about Environmental Research. The editors have built Issues in Environmental Research and Application: 2012 Edition on the vast information databases of ScholarlyNews.™ You can expect the information about Environmental Research in this eBook to be deeper than what you can access anywhere else, as well as consistently reliable, authoritative, informed, and relevant. The content of Issues in Environmental Research and Application: 2012 Edition has been produced by the world’s leading scientists, engineers, analysts, research institutions, and companies. All of the content is from peer-reviewed sources, and all of it is written, assembled, and edited by the editors at ScholarlyEditions™ and available exclusively from us. You now have a source you can cite with authority, confidence, and credibility. More information is available at http://www.ScholarlyEditions.com/.

Statistical Rock Physics

Statistical Rock Physics
Title Statistical Rock Physics PDF eBook
Author Gabor Korvin
Publisher Springer Nature
Pages 541
Release
Genre
ISBN 3031467000

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Percolation Theory for Flow in Porous Media

Percolation Theory for Flow in Porous Media
Title Percolation Theory for Flow in Porous Media PDF eBook
Author Allen Hunt
Publisher Springer
Pages 466
Release 2014-02-04
Genre Science
ISBN 3319037714

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This monograph presents, for the first time, a unified and comprehensive introduction to some of the basic transport properties of porous media, such as electrical and hydraulic conductivity, air permeability and diffusion. The approach is based on critical path analysis and the scaling of transport properties, which are individually described as functions of saturation. At the same time, the book supplies a tutorial on percolation theory for hydrologists, providing them with the tools for solving actual problems. In turn, a separate chapter serves to introduce physicists to some of the language and complications of groundwater hydrology necessary for successful modeling. The end-of-chapter problems often indicate open questions, which young researchers entering the field can readily start working on. This significantly revised and expanded third edition includes in particular two new chapters: one on advanced fractal-based models, and one devoted to the discussion of various open issues such as the role of diffusion vs. advection, preferential flow vs. critical path, universal vs. non-universal exponents for conduction, and last but not least, the overall influence of the experimental apparatus in data collection and theory validation. "The book is suitable for advanced graduate courses, with selected problems and questions appearing at the end of each chapter. [...] I think the book is an important work that will guide soil scientists, hydrologists, and physicists to gain a better qualitative and quantitative understanding of multitransport properties of soils." (Marcel G. Schaap, Soil Science Society of America Journal, May-June, 2006)