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A Study on the Breakthrough Pressure of Porous Rock Formations in Gas Storage Reservoirs
by
Gu, Chao
, Wang, Xiaoqiang
, Wang, Haiyan
, Gao, Tao
, Yang, Zhao
, Zhou, Ziyu
in
Computed tomography
/ Innovations
/ Line printers
/ Mathematical models
/ Membrane permeability
/ Natural gas
/ Numerical analysis
/ Permeability
/ Porosity
/ Reservoirs
/ Simulation methods
/ Software
/ Storage
/ Viscosity ratio
/ Wettability
2024
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A Study on the Breakthrough Pressure of Porous Rock Formations in Gas Storage Reservoirs
by
Gu, Chao
, Wang, Xiaoqiang
, Wang, Haiyan
, Gao, Tao
, Yang, Zhao
, Zhou, Ziyu
in
Computed tomography
/ Innovations
/ Line printers
/ Mathematical models
/ Membrane permeability
/ Natural gas
/ Numerical analysis
/ Permeability
/ Porosity
/ Reservoirs
/ Simulation methods
/ Software
/ Storage
/ Viscosity ratio
/ Wettability
2024
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Do you wish to request the book?
A Study on the Breakthrough Pressure of Porous Rock Formations in Gas Storage Reservoirs
by
Gu, Chao
, Wang, Xiaoqiang
, Wang, Haiyan
, Gao, Tao
, Yang, Zhao
, Zhou, Ziyu
in
Computed tomography
/ Innovations
/ Line printers
/ Mathematical models
/ Membrane permeability
/ Natural gas
/ Numerical analysis
/ Permeability
/ Porosity
/ Reservoirs
/ Simulation methods
/ Software
/ Storage
/ Viscosity ratio
/ Wettability
2024
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A Study on the Breakthrough Pressure of Porous Rock Formations in Gas Storage Reservoirs
Journal Article
A Study on the Breakthrough Pressure of Porous Rock Formations in Gas Storage Reservoirs
2024
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Overview
Breakthrough pressure of natural gas in rock is an important evaluation parameter in gas reservoir development. In this study, experimental measurements of porosity and permeability of the caprock core were carried out. A digital core model was obtained by body rendering of rock CT (Computed Tomography) slices using Avizo software. Then, the grid model was imported into Fluent software for a numerical simulation of natural gas breakthrough pressure in the core. The innovations of this paper include (1) an accurate calculation method of cap breakthrough pressure based on the VOF method; (2) the method performs a perceptual analysis of average pore radius, wettability, roughness height, and viscosity ratio.
Publisher
MDPI AG
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