The effects of variations of pressure-dependent viscosity and gas law deviation factor on the flow of real gases through porous media are considered. Numerical solutions of the gas flow equation, which is a non-linear partial differential equation, are obtained for constant and variable rate performance. Results indicate that prediction of gas well performance utilizing current methods based on flow of ideal gases can lead to serious errors. To obtain a unique solution to the rigorous gas flow equation a new method of linearization is proposed. A new real gas flow equation has been developed by means of a change of variable which couples pressure, viscosity and gas law deviation factor. This substitution, called the real gas pseudo-pressure...
Typescript (photocopy).Isochronal testing of gas wells suggests that high velocity flow in wells con...
When developing a transient numerical reservoir simulator, it is important to consider the back pres...
Based on the porous flow theory, an extension of the pseudo-functions approach for the solution of n...
The effects of variations of pressure-dependent viscosity and gas law deviation factor on the flow o...
Due to the highly nonlinear variation of gas density and viscosity with respect to pressure, no anal...
Typescript (photocopy).The differential equation describing flow of real fluids through porous media...
Modeling liquid flow for well test interpretation considers constant values of both density and comp...
Due to the character of the original source materials and the nature of batch digitization, quality ...
It has been known for some time that, using concepts of pseudo-pressure and pseudo-time, the partial...
The accurate description of fluid flow through porous media allows an engineer to properly analyze p...
In reservoir engineering studies of gas fields, three important parameters are needed: the permeabil...
The differential equation for the difusión of real gas in a porous and isotermic medium, is solved. ...
Gas flow behavior from a spherical source is explored by using linear and nonlinear models, not only...
The theoretical basis for the analysis of well test data presented in this study is the use of a pse...
The variation of porous flow resistance of solution-gas drive for tight oil reservoirs has been stud...
Typescript (photocopy).Isochronal testing of gas wells suggests that high velocity flow in wells con...
When developing a transient numerical reservoir simulator, it is important to consider the back pres...
Based on the porous flow theory, an extension of the pseudo-functions approach for the solution of n...
The effects of variations of pressure-dependent viscosity and gas law deviation factor on the flow o...
Due to the highly nonlinear variation of gas density and viscosity with respect to pressure, no anal...
Typescript (photocopy).The differential equation describing flow of real fluids through porous media...
Modeling liquid flow for well test interpretation considers constant values of both density and comp...
Due to the character of the original source materials and the nature of batch digitization, quality ...
It has been known for some time that, using concepts of pseudo-pressure and pseudo-time, the partial...
The accurate description of fluid flow through porous media allows an engineer to properly analyze p...
In reservoir engineering studies of gas fields, three important parameters are needed: the permeabil...
The differential equation for the difusión of real gas in a porous and isotermic medium, is solved. ...
Gas flow behavior from a spherical source is explored by using linear and nonlinear models, not only...
The theoretical basis for the analysis of well test data presented in this study is the use of a pse...
The variation of porous flow resistance of solution-gas drive for tight oil reservoirs has been stud...
Typescript (photocopy).Isochronal testing of gas wells suggests that high velocity flow in wells con...
When developing a transient numerical reservoir simulator, it is important to consider the back pres...
Based on the porous flow theory, an extension of the pseudo-functions approach for the solution of n...