DocumentCode :
2090268
Title :
Notice of Retraction
The Analysis of Coupling Law of Stress field / Seepage field In Low Permeability Reservoir
Author :
Xi Yi ; Shuren Yang ; Junxian Wu
Author_Institution :
Inst. of Pet. Eng., Daqing Pet. Inst., Daqing, China
fYear :
2010
fDate :
28-31 March 2010
Firstpage :
1
Lastpage :
5
Abstract :
Notice of Retraction

After careful and considered review of the content of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE´s Publication Principles.

We hereby retract the content of this paper. Reasonable effort should be made to remove all past references to this paper.

The presenting author of this paper has the option to appeal this decision by contacting TPII@ieee.org.

In order to forecast the mining process of oil and gas field rightly, simulate the flow process of reservoir fluid accurately and reveal the fluid distribution law, it must be considered that multiphase fluid seepage caused by water injection and exploitation, the change of stress state and the coupling between the reservoir deformations. According to the basic theory of rock mechanics, fluid mechanics in porous medium, geologic mechanics, calculated mechanics and fluid-solid coupling seepage, considering the trigger pressure gradient of seepage flow and fluid-solid coupling characters of low permeability reservoirs, a multi-phase and multi-component seepage flow mathematical model of coupling between stress field and seepage field in low permeability and porous medium reservoir is established. On the basis of the analysis of stress and strain in reservoir rock, combining the principle of effective stress and the relation of rock matrix constitutive, a mathematical model of rock skeleton in low-permeability reservoir is established. Combining the specific features of low permeability reservoir and according to the laboratory results, the theoretical calculation model of dynamic changes of material parameters such as porosity and permeability etc that is established and the dynamic model of computing pressure gradient is given. On this basis, the numerical model of iterative coupling is established, and program design is conducted by coupling numerical computing method combining finite difference with finite eleme- t, the analysis of coupling between seepage field and stress field in low permeability reservoir is conducted. By the method of numerical simulation, the variation law of stress-strain with time and space in the progress of depletion type drive for single well, dynamic variation law of petrophysics parameters is studied. It can be seen that the fluid-solid coupling effect in low permeability reservoirs is very obvious through analyzing and comparing to the- calculation results of rigid model.
Keywords :
finite difference methods; finite element analysis; fluid mechanics; hydrocarbon reservoirs; iterative methods; permeability; porosity; rods (structures); stress-strain relations; coupling law; finite difference method; finite element method; fluid distribution law; fluid mechanics; fluid-solid coupling seepage; gas field; geologic mechanics; iterative coupling; low permeability reservoir; mining process; multicomponent seepage flow mathematical model; multiphase fluid seepage; multiphase seepage flow mathematical model; oil field; porosity; porous medium reservoir; reservoir fluid; reservoir rock; rock matrix constitutive; rock mechanics; seepage field; stress field; stress state; stress-strain analysis; trigger pressure gradient; Capacitive sensors; Deformable models; Geology; Hydrocarbon reservoirs; Mathematical model; Permeability; Petroleum; Predictive models; Stress; Water resources;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2010 Asia-Pacific
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-4812-8
Type :
conf
DOI :
10.1109/APPEEC.2010.5448309
Filename :
5448309
Link To Document :
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