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Emerging Advances in Petrophysics. Porous Media Characterization and Modeling of Multiphase Flow

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

liquid rate; particle size; greenhouse gas emission; wellbore multiphase flow; oscillating motion; oil tanker; Lattice Boltzmann method; base-level cycle; fracture characterization and prediction; submarine landslide; Wilkins equation; bulk density; low-temperature nitrogen adsorption; unconventional reservoirs; air-entry value; fractal model; tight sandstone; hazard prevention; South China Sea; loose media; soil-water characteristic curve; tight conglomerate; supercritical CO2; creep; seepage resistance; classification; mouth bar sand body; Peng-Robinson equation of state (PR EOS); digital rock; methane; coal; marine gas hydrate; pore structure; acoustic emission; porous media; damage; initial void ratio; Huanghua Depression; fractal method; gas rate; petrophysics; fractal porous media; true density; multilayer reservoir; microfractures; multifractal; overburden pressure; turbulence modelling; numerical simulation; diffusion coefficient; inclined angle; Ordos Basin; producing degree; pore-scale simulations; lifecycle management; porosity; fractal dimension; fractional derivative; interlayer interference; isotopic composition; non-laminar flow; temperature drop; CT; Bakken Formation; salt rock; gas hydrate; multiphase flow; oil properties; pressure drawdown model with new coefficients; controlling factors

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-03897-795-7

País de edición

Suiza

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