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  • 1
    UID:
    almahu_BV013496852
    Format: XXIV, 553 S. : , graph. Darst.
    ISBN: 0-7923-1106-X
    Series Statement: Theory and applications of transport in porous media 4
    Language: English
    Subjects: Mathematics
    RVK:
    Keywords: Poröser Stoff ; Transportprozess ; Mathematisches Modell ; Aufsatzsammlung
    Author information: Bear, Jacob, 1929-
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    UID:
    b3kat_BV004198679
    Format: XXIV, 553 S. , graph. Darst.
    ISBN: 079231106X , 0792305574
    Series Statement: Theory and applications of transport in porous media 4
    Language: English
    Subjects: Engineering , Mathematics
    RVK:
    RVK:
    Keywords: Poröser Stoff ; Transportprozess ; Mathematisches Modell ; Poröser Stoff ; Transportprozess ; Aufsatzsammlung
    URL: Cover
    Author information: Bear, Jacob 1929-
    Library Location Call Number Volume/Issue/Year Availability
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  • 3
    Online Resource
    Online Resource
    Dordrecht : Springer Netherlands
    UID:
    b3kat_BV045178821
    Format: 1 Online-Ressource (XXIV, 554 p)
    ISBN: 9789400919266
    Series Statement: Theory and Applications of Transport in Porous Media 4
    Content: The main purpose of this book is to provide the theoretical background to engineers and scientists engaged in modeling transport phenomena in porous media, in connection with various engineering projects, and to serve as a text for senior and graduate courses on transport phenomena in porous media. Such courses are taught in various disciplines, e. g. , civil engineering, chemical engineering, reservoir engineering, agricultural engineering and soil science. In these disciplines, problems are encountered in which various extensive quantities, e. g. , mass and heat, are transported through a porous material domain. Often the porous material contains several fluid phases, and the various extensive quantities are transported simultaneously throughout the multiphase system. In all these disciplines, management decisions related to a system's development and its operation have to be made. To do so, the 'manager', or the planner, needs a tool that will enable him to forecast the response of the system to the implementation of proposed management schemes. This forecast takes the form of spatial and temporal distributions of variables that describe the future state of the considered system. Pressure, stress, strain, density, velocity, solute concentration, temperature, etc. , for each phase in the system, and sometime for a component of a phase, may serve as examples of state variables. The tool that enables the required predictions is the model. A model may be defined as a simplified version of the real (porous medium) system that approximately simulates the excitation-response relations of the latter
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 9780792311065
    Language: English
    Subjects: Engineering , Mathematics
    RVK:
    RVK:
    Keywords: Poröser Stoff ; Transportprozess ; Mathematisches Modell ; Aufsatzsammlung
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 4
    UID:
    almahu_9948600922002882
    Format: XXIV, 554 p. , online resource.
    Edition: 1st ed. 1990.
    ISBN: 9789400919266
    Series Statement: Theory and Applications of Transport in Porous Media, 4
    Content: The main purpose of this book is to provide the theoretical background to engineers and scientists engaged in modeling transport phenomena in porous media, in connection with various engineering projects, and to serve as a text for senior and graduate courses on transport phenomena in porous media. Such courses are taught in various disciplines, e. g. , civil engineering, chemical engineering, reservoir engineering, agricultural engineering and soil science. In these disciplines, problems are encountered in which various extensive quantities, e. g. , mass and heat, are transported through a porous material domain. Often the porous material contains several fluid phases, and the various extensive quantities are transported simultaneously throughout the multiphase system. In all these disciplines, management decisions related to a system's development and its operation have to be made. To do so, the 'manager', or the planner, needs a tool that will enable him to forecast the response of the system to the implementation of proposed management schemes. This forecast takes the form of spatial and temporal distributions of variables that describe the future state of the considered system. Pressure, stress, strain, density, velocity, solute concentration, temperature, etc. , for each phase in the system, and sometime for a component of a phase, may serve as examples of state variables. The tool that enables the required predictions is the model. A model may be defined as a simplified version of the real (porous medium) system that approximately simulates the excitation-response relations of the latter.
    Note: A General Theory -- 1 The Porous Medium -- 2 Macroscopic Description of Transport Phenomena in Porous Media -- 3 Mathematical Statement of a Transport Problem -- B Application -- 4 Mass Transport of a Single Fluid Phase Under Isothermal Conditions -- 5 Mass Transport of Multiple Fluid Phases Under Isothermal Conditions -- 6 Transport of a Component in a Fluid Phase Under Isothermal Conditions -- 7 Heat and Mass Transport -- 8 Hydraulic Approach to Transport in Aquifers -- References -- Problems.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9780792311065
    Additional Edition: Printed edition: ISBN 9780792305576
    Additional Edition: Printed edition: ISBN 9789400919273
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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