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  • 11
    UID:
    almahu_9947362537702882
    Format: XIV, 243 p. 135 illus., 18 illus. in color. , online resource.
    ISBN: 9783319292243
    Series Statement: Terrestrial Environmental Sciences,
    Content: This book presents a new suite of benchmarks for and examples of porous media mechanics collected over the last two years. It continues the assembly of benchmarks and examples for porous media mechanics published in 2014. The book covers various applications in the geosciences, geotechnics, geothermal energy, and geological waste deposition. The analysis of thermo-hydro-mechanical-chemical (THMC) processes is essential to many applications in environmental engineering, such as geological waste deposition, geothermal energy utilisation, carbon capture and storage, water resources management, hydrology, and even climate change. In order to assess the feasibility and safety of geotechnical applications, process-based modelling is the only tool that can effectively quantify future scenarios, a fact which also creates a huge burden of responsibility concerning the reliability of computational tools. The book shows that benchmarking offers a suitable methodology for verifying the quality of modelling tools based on best practices, and together with code comparison fosters community efforts. It also provides a brief introduction to the DECOVALEX, SeSBench and MOMAS initiatives. This benchmark book is part of the OpenGeoSys initiative – an open source project designed to share knowledge and experience in environmental analysis and scientific computation.
    Note: Benchmarking Initiatives -- Thermal Processes -- Flow Processes -- Deformation processes -- Variable Density Flow -- Multiphase Flow -- Hydro-Mechanical (Consolidation) Processes -- Thermomechanics -- Coupled THM-Processes -- Reactive Transport -- Mechanical-Chemical (MC) Processes -- THC Processes in Energy Systems.
    In: Springer eBooks
    Additional Edition: Printed edition: ISBN 9783319292236
    Language: English
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 12
    Online Resource
    Online Resource
    Berlin, Heidelberg : Springer Berlin Heidelberg
    UID:
    b3kat_BV042446218
    Format: 1 Online-Ressource (XV, 419 S.)
    ISBN: 9783642614071 , 9783642648267
    Series Statement: Handbuch zur Erkundung des Untergrundes von Deponien und Altlasten Band 2
    Content: Das Handbuch zur Erkundung des Untergrundes von Deponien und Altlasten besteht aus insgesamt sieben Einzelbänden. Es bietet eine in dieser Form einmalige Zusammenstellung effektiver geowissenschaftlicher Methoden im Bereich der Altlasten. Dieser Band erläutert zunächst die mathematischen Grundlagen der Modellierung und ermöglicht dem Leser anschließend - im Rahmen seiner Tätigkeit - selbst Modelle zu entwickeln und zu interpretieren
    Language: German
    Keywords: Altlast ; Untergrund ; Strömung ; Stoffübertragung ; Mathematisches Modell ; Deponie ; Untergrund ; Strömung ; Stoffübertragung ; Mathematisches Modell ; Deponie ; Grundwasserstrom ; Stoffübertragung ; Mathematisches Modell
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  • 13
    UID:
    b3kat_BV045336252
    Format: 1 Online-Ressource (XVII, 242 p. 162 illus., 153 illus. in color)
    ISBN: 9783319975689
    Series Statement: Terrestrial Environmental Sciences
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-319-97567-2
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-319-97569-6
    Language: English
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 14
    Online Resource
    Online Resource
    Berlin, Heidelberg : Springer Berlin Heidelberg
    UID:
    gbv_775524875
    Format: Online-Ressource (XV, 378 p) , online resource
    Edition: Springer eBook Collection. Engineering
    ISBN: 9783662047613
    Content: Fluids play an important role in environmental systems appearing as surface water in rivers, lakes, and coastal regions or in the subsurface as well as in the atmosphere. Mechanics of environmental fluids is concerned with fluid motion, associated mass and heat transport as well as deformation processes in subsurface systems. In this textbook the fundamental modelling approaches based on continuum mechanics for fluids in the environment are described, including porous media and turbulence. Numerical methods for solving the process governing equations as well as its object-oriented computer implementation are discussed and illustrated with examples. Finally the application of computer models in civil and environmental engineering is demonstrated
    Note: I - Continuum Mechanics1 Balance Equations of Fluid Mechanics -- 2 Turbulence -- 3 Porous Media -- 4 Problem Classification -- II - Numerical Methods -- 5 Numerical Methods -- 6 Finite Difference Method -- 7 Finite Element Method -- 8 Finite Volume Method -- III - Software-Engineering -- 9 Object-Oriented Methods for Hydrosystem Modeling -- 10 Object-Oriented Programming Techniques -- 11 Element Implementation -- IV - Selected Topics -- 12 Non-Linear Flow in Fractured Media -- 13 Heat Transport in Fractured-Porous Media -- 14 Density Dependent Flow in Porous Media -- 15 Multiphase Flow in Deformable Porous Media.
    Additional Edition: ISBN 9783642076831
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 9783642076831
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 9783540428954
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 9783662047620
    Language: English
    URL: Volltext  (lizenzpflichtig)
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  • 15
    UID:
    gbv_1651473056
    Format: Online-Ressource (XIII, 391p. 278 illus., 168 illus. in color, digital)
    ISBN: 9783642271779 , 9783642271762
    Series Statement: Lecture Notes in Computational Science and Engineering 86
    Content: The book comprises an assembly of benchmarks and examples for porous media mechanics collected over the last twenty years. Analysis of thermo-hydro-mechanical-chemical (THMC) processes is essential to many applications in environmental engineering, such as geological waste deposition, geothermal energy utilisation, carbon capture and storage, water resources management, hydrology, even climate chance. In order to assess the feasibility as well as the safety of geotechnical applications, process-based modelling is the only tool to put numbers, i.e. to quantify future scenarios. This charges a huge responsibility concerning the reliability of computational tools. Benchmarking is an appropriate methodology to verify the quality of modelling tools based on best practices. Moreover, benchmarking and code comparison foster community efforts. The benchmark book is part of the OpenGeoSys initiative - an open source project to share knowledge and experience in environmental analysis and scientific computation.
    Note: Description based upon print version of record , Thermo-Hydro-Mechanical-Chemical Processes in Fractured Porous Media; Contents; Contributors; Chapter1 Introduction; 1.1 Scope of This Book; 1.2 Application Areas; 1.2.1 Geotechnics; Part I - Theory and Numerics; Chapter2 Theory; 2.1 Continuum Mechanics; 2.1.1 Lagrangian and Eulerian Principles; 2.1.2 Kinematics of Continua; 2.1.3 Stress Tensor; 2.1.4 Conservation Principles; 2.2 Porous Medium; 2.2.1 Macroscopic Equations; 2.2.2 Theory of Mixtures; 2.3 Balance Equations; 2.3.1 Phase Mass Balance; Primary Variables; 2.3.2 Momentum Balance; Darcy's Law; 2.3.3 Energy Balance; Heat Transport , Porous Medium2.4 Fluid Properties; 2.4.1 Density; 2.4.2 Enthalpy; 2.4.3 Entropy; 2.4.4 Heat Capacity; 2.4.5 Viscosity; 2.4.6 Thermal Conductivity; 2.5 Mechanical Properties; 2.5.1 Effective Stress Principle; 2.5.2 Material Classes; 2.5.3 Elasticity; 2.5.4 Elastoplasticity; 2.5.5 Viscoelasticity; 2.5.6 Viscoplasticity; 2.6 Porous Medium Properties; 2.6.1 Saturation; 2.6.2 Capillary Pressure and Relative Permeability; van Genuchten Model [51]; Haverkamp Model [53]; Brooks & Corey Model [49]; Chapter3 Numerical Methods; 3.1 Introduction; 3.2 Object-Orientation in Finite Element Analysis , 3.2.1 Process (PCS) Types3.2.2 PDE Types; 3.2.3 Element (ELE) Types; 3.3 General Finite Element Formulations; 3.4 Element Objects: ELE; 3.4.1 Geometric Element Object: ELE-GEO; Core Object: CORE-Geometric Element Base Class; Node Object: NODE; Edge Object: EDGE; Element Object: ELEM; 3.4.2 Finite Element Object: ELE-FEM; 3.4.3 Process Related Finite Element Objects: ELE-PCS; 3.4.4 Element-Mesh Relations: ELE-MSH; ELE-GEO Relation; ELE-FEM Relation; ELE-PCS Relation; 3.5 Parallel Computing and Automatic Control for Time Stepping; Part II: Benchmarks for Single Processes , Chapter4 Heat Transport4.1 Linear Heat Conduction in a Finite Solid; 4.1.1 Definition; 4.1.2 Solution; Analytical Solution; Numerical Solution; 4.1.3 Results; 4.2 Radial Heat Conduction in a Solid; 4.2.1 Definition; 4.2.2 Solution; Analytical Solution; Numerical Solution; 4.2.3 Results; 4.3 Heat Transport in a Fracture; 4.3.1 Definition; 4.3.2 Solution; 4.3.3 Results; 4.4 Heat Transport in a Porous Medium; 4.4.1 Definition; 4.4.2 Solution; 4.4.3 Results; 4.5 Heat Transport in a Porous Medium; 4.5.1 Definition; 4.5.2 Solution; 4.5.3 Results; 4.6 Heat Transport in a Fracture-Matrix System , 4.6.1 Definition4.6.2 Solution; 4.6.3 Results; Chapter5 Groundwater Flow; 5.1 Groundwater Flow in an Anisotropic Medium; 5.1.1 Definition; 5.1.2 Evaluation Method; 5.1.3 Results; 5.2 Groundwater Flow in a Heterogeneous Medium; 5.2.1 Definition (2-D); 5.2.2 Results (2-D); 5.2.3 Definition (3-D); 5.2.4 Results (3-D); 5.3 Confined Aquifer with Constant Channel Source Term; 5.3.1 Definition; 5.3.2 Solution; 5.3.3 Results; 5.4 Theis' Problem; 5.4.1 Definition; 5.4.2 Solution; 5.4.3 Results; 5.4.4 2-D Application; 5.5 Unconfined Aquifer; 5.5.1 Definition; 5.5.2 Analytical Solution; 5.5.3 Results , 5.6 2-D Steady State Flow in Porous Media with a Discrete Fracture
    Additional Edition: ISBN 9783642271762
    Additional Edition: Buchausg. u.d.T. Thermo-hydro-mechanical-chemical processes in fractured porous media Berlin : Springer, 2012 ISBN 9783642271762
    Language: English
    Subjects: Physics
    RVK:
    Keywords: Poröser Stoff ; Klüftung ; Hydrologie ; Geotechnik ; Computersimulation ; Grundwasserstrom ; Stoffübertragung ; Wärmeübertragung ; Speichergestein ; Modellierung ; Poröser Stoff ; Klüftung ; Hydrologie ; Geotechnik ; Computersimulation ; Grundwasserstrom ; Stoffübertragung ; Wärmeübertragung ; Speichergestein ; Modellierung
    URL: Volltext  (lizenzpflichtig)
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  • 16
    UID:
    gbv_865465738
    Format: Karten
    ISSN: 1866-6299
    In: Environmental earth sciences, Berlin : Springer, 2009, 73(2015), 10, Seite 5785-5789, 1866-6299
    In: volume:73
    In: year:2015
    In: number:10
    In: pages:5785-5789
    Language: English
    Keywords: Erdgaslagerstätte ; China
    Author information: Were, Patrick
    Author information: Hou, Michael Zhengmeng 1963-
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  • 17
    UID:
    gbv_864801211
    Format: Karten
    ISSN: 1866-6299
    In: Environmental earth sciences, Berlin : Springer, 2009, 73(2015), 11, Seite 6727-6732, 1866-6299
    In: volume:73
    In: year:2015
    In: number:11
    In: pages:6727-6732
    Language: English
    Author information: Were, Patrick
    Author information: Hou, Michael Zhengmeng 1963-
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  • 18
    UID:
    gbv_747276447
    Format: graph. Darst., Kt
    ISSN: 1866-6299
    In: Environmental earth sciences, Berlin : Springer, 2009, 67(2012), 2, Seite 311-321, 1866-6299
    In: volume:67
    In: year:2012
    In: number:2
    In: pages:311-321
    Language: English
    Author information: Reinicke, Kurt M. 1947-
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  • 19
    UID:
    gbv_747275645
    Format: graph. Darst.
    ISSN: 1866-6299
    In: Environmental earth sciences, Berlin : Springer, 2009, 67(2012), 2, Seite 549-561, 1866-6299
    In: volume:67
    In: year:2012
    In: number:2
    In: pages:549-561
    Language: English
    Author information: Hou, Michael Zhengmeng 1963-
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