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Titlebook: Advances in Transport Phenomena in Porous Media; Jacob Bear,M. Yavuz Corapcioglu Book 1987 Martinus Nijhoff Publishers, Dordrecht 1987 Fun

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Multiphase Flow in Fractured Reservoirsoundary conditions. Simulation of one of the experiments shows that the prediction of imbibition flow rate by simulation models is critically dependent on a well defined capillary pressure curve..An improved dual porosity model for simulation of multiphase flow in fractured reservoirs is discussed.
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Book 1987may be isothermal or non-isothermal, with or without phase changes. Porous medium domains in which extensive quantities, such as mass of a fluid phase, component of a fluid phase, or heat of the porous medium as a whole, are being transported occur in the practice in a variety of disciplines.
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Preventive Psychiatry and World Problemscting reservoir performance. This chapter describes the micromodel techniques developed at Imperial College, highlighting particularly those involving pore scale events which depend on network and pore morphology.
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Davide Carneiro,Paulo Novais,José Nevese first part presents an analysis of buoyancy flow causing the tilting of the interface (thermal front) between hot and cold water. The second part describes a numerical approach that studies the thermohydraulics of an aquifer thermal energy system where all three processes are taken into account.
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Pore Scale Physical Modeling of Transport Phenomena in Porous Mediacting reservoir performance. This chapter describes the micromodel techniques developed at Imperial College, highlighting particularly those involving pore scale events which depend on network and pore morphology.
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Advective and Diffusive Fluxes in Porous Media transported in a porous medium domain (2). The objective of this chapter is to develop expressions for the macroscopic advective and diffusive fluxes of mass and heat in terms of macroscopic state variables.
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