Zobrazeno 1 - 10
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pro vyhledávání: '"Thomas J. Boone"'
Autor:
Thomas J. Boone, Yanguang Yuan
Publikováno v:
Day 2 Wed, November 20, 2019.
Rock deformation and fracturing is an important causal mechanism that can compromise well integrity. Geomechanical simulation is a valuable tool to investigate this mechanism and connect well tubular designs with reservoir development strategies. Uti
Publikováno v:
Day 2 Wed, March 14, 2018.
Thermal-Solvent Assisted Gravity Drainage processes are heavy oil recovery processes in which the stimulation mechanism for bitumen viscosity reduction is by heating and dilution. The range of the injected solvent concentration with steam may be low
Publikováno v:
All Days.
Solvent Assisted-Steam Assisted Gravity Drainage (SA-SAGD) process is an enhancement to SAGD recovery technology. In this process a hydrocarbon solvent is injected simultaneously with steam to accelerate the oil production rate and reduce steam-to-oi
Publikováno v:
All Days.
Abstract ExxonMobil and its Canadian affiliate Imperial Oil Resources are pursuing an integrated research program targeted at developing the next generation of heavy oil recovery processes which utilize light hydrocarbon solvents in conjunction with
Autor:
Anthony R. Ingraffea, Thomas J. Boone
Publikováno v:
International Journal for Numerical and Analytical Methods in Geomechanics. 14:27-47
A procedure for numerical approximation to two-dimensional, hydraulically-driven fracture propagation in a poroelastic material is described. The method uses a partitioned solution procedure to solve a finite element approximation to problems describ
Publikováno v:
All Days.
Limited-entry perforations have been used in vertical wells in both California and at Imperial's Cold Lake field as a method for distributing steam to different zones. The technology relies simply upon designing the number, size and placement of the
Autor:
Thomas J. Boone, Paul A. Wawrzynek
Publikováno v:
Rock Mechanics in Petroleum Engineering.
Publikováno v:
Engineering Fracture Mechanics. 26:185-201
This paper presents a simple method for the analysis of fracture propagation in orthotropic materials. The method is applicable to a wide range of materials such as steel which may have anisotropic toughness characteristics, rock which often has anis
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