Numerical Simulation of Reservoir Salt Dissolution Using Fully Implicit Scheme Within Isothermal Compositional Model of Hydrocarbon Filtration (Russian)

2018 ◽  
Author(s):  
Kirill Bogachev ◽  
Sergey Milyutin ◽  
Vladimir Nazarov
2021 ◽  
Vol 11 (12) ◽  
pp. 5509
Author(s):  
Hongjin Choi ◽  
Seonghwan Choi ◽  
Soo-Chang Kang ◽  
Myoung-Gyu Lee

A fully implicit stress integration algorithm is developed for the distortional hardening model, namely the e−HAH model, capable of simulating cross−hardening/softening under orthogonal loading path changes. The implicit algorithm solves a complete set of residuals as nonlinear functions of stress, a microstructure deviator, and plastic state variables of the constitutive model, and provides a consistent tangent modulus. The number of residuals is set to be 20 or 14 for the continuum or shell elements, respectively. Comprehensive comparison programs are presented regarding the predictive accuracy and stability with different numerical algorithms, strain increments, material properties, and loading conditions. The flow stress and r−value evolutions under reverse/cross−loading conditions prove that the algorithm is robust and accurate, even with large strain increments. By contrast, the cutting−plane method and partially implicit Euler backward method, which are characterized by a reduced number of residuals, result in unstable responses under abrupt loading path changes. Finally, the algorithm is implemented into the finite element modeling of large−size, S−rail forming and the springback for two automotive steel sheets, which is often solved by a hybrid dynamic explicit–implicit scheme. The fully implicit algorithm performs well for the whole simulation with the solely static implicit scheme.


2000 ◽  
Vol 65 (4) ◽  
pp. 342-351
Author(s):  
Toshinori Nakashima ◽  
Nario Arihara ◽  
Hideaki Takeda ◽  
Kozo Sato ◽  
Nintoku Yazawa

2020 ◽  
Vol 24 (4) ◽  
pp. 1557-1587
Author(s):  
Omar Duran ◽  
Manouchehr Sanei ◽  
Philippe R. B. Devloo ◽  
Erick S. R. Santos

2012 ◽  
Vol 524-527 ◽  
pp. 1507-1517
Author(s):  
Ji Cheng Zhang ◽  
Jin Yu Lan ◽  
Kao Ping Song

S-16 block of YSL oilfield is fault lithologic deposit. For the practical problems of low permeability, high injection pressure causing to difficult injection and low degree of reserve recovery due to delaying the supplement of producing energy, this paper applies the module E300 of Eclipse to establishing the triaxiality and triphase compositional model of the simulated block which takes the 11Y67-611 and 11Y69-56 as the target wells, completing the numerical simulation study of optimizing parameters of CO2 huff and puff by using of the evaluation indexes of oil increment and the oil-draining rate. It provided theoretical reference for YSL oilfield to carry out CO2 huff and puff that its optimized parameters.


1985 ◽  
Vol 113 (4) ◽  
pp. 436-448 ◽  
Author(s):  
S. E. Cohn ◽  
D. Dee ◽  
D. Marchesin ◽  
E. Isaacson ◽  
G. Zwas

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