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This book presents an overview of techniques that are available to characterize sedimentary aquifers. Groundwater flow and solute transport are strongly affected by aquifer heterogeneity. Improved aquifer characterization can allow for a better conceptual understanding of aquifer systems, which can lead to more accurate groundwater models and successful water management solutions, such as contaminant remediation and managed aquifer recharge systems. This book has an applied perspective in that it considers the practicality of techniques for actual groundwater management and development projects in terms of costs, technical resources and expertise required, and investigation time. A discussion of the geological causes, types, and scales of aquifer heterogeneity is first provided. Aquifer characterization methods are then discussed, followed by chapters on data upscaling, groundwater modelling, and geostatistics. This book is a must for every practitioner, graduate student, or researcher dealing with aquifer characterization .
A synthesis of years of interdisciplinary research and practice, the second edition of this bestseller continues to serve as a primary resource for information on the assessment, remediation, and control of contamination on and below the ground surface. Practical Handbook of Soil, Vadose Zone, and Ground-Water Contamination: Assessment, Prev
This book summarises the main results of many contributions from researchers worldwide who have used the water infiltration process to characterize soil in the field. Determining soil hydrodynamic properties is essential to interpret and simulate the hydrological processes of economic and environmental interest. This book can be used as a guide to soil hydraulic characterization and in addition it gives a complete description of the treated techniques, including an outline of the most significant research results, with the main points that still needing development and improvement.
Proceedings of the Fifth Biot Conference on Poromechanics, held in Vienna, Austria, July 10-12, 2013. Sponsored by the Vienna University of Technology; the Engineering Mechanics Institute of ASCE. This collection contains 297 papers reflecting the advances in poromechanics since 2009. Applications of poromechanics in fields as varied as civil and geotechnical engineering, geophysics, acoustics, materials science, and bioengineering were addressed. Topics covered include: Biot theory in seismic wave propagation and dynamic poroelasticity for rocksMechanics of fluid-infiltrated earth materialsBlast and impact responses of porous mediaMulti-scale poromechanics of geomaterials and biomaterialsMulti-scale modeling and simulation of granular and porous mediaPoromechanical behavior of microporous and mesoporous materialsBiomechanics and biophysics of soft tissue and boneMulti-physics numerical modeling of geomaterialsComputational poromechanicsExperimental characterization and constitutive modeling of porous materialsModeling of underground storage of wastes and hydrocarbonsGas shale poromechanics at all scalesGeotechnical engineering applications and the mechanics of cohesive soilsCivil and geotechnical engineers, geophysicists, material scientists, and bio-engineering researchers will find these proceedings an excellent reference on poromechanics.