Modeling oil-brine interfacial tension at high pressure and high salinity conditions

被引:50
作者
Amar, Menad Nait [1 ]
Shateri, Mohammadhadi [2 ]
Hemmati-Sarapardeh, Abdolhossein [3 ]
Alamatsaz, Alireza [4 ]
机构
[1] Sonatrach, Div Labs, Dept Etud Thermodynam, Boumerdes, Algeria
[2] McGill Univ, Dept Elect & Comp Engn, Montreal, PQ, Canada
[3] Shahid Bahonar Univ Kerman, Dept Petr Engn, Kerman, Iran
[4] Comp Modelling Grp, 3710,33 St NW, Calgary, AB T2L2M1, Canada
关键词
Interfacial tension (IFT); Crude oil; Brine; Gradient boosting trees; AdaBoost SVR; COMPUTATIONAL INTELLIGENCE SCHEME; SPONTANEOUS IMBIBITION; TEMPERATURE; WATER; SURFACTANT; PREDICTION; BEHAVIOR; SYSTEMS; RECOVERY;
D O I
10.1016/j.petrol.2019.106413
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Accurate estimation of interfacial tension (IFT) in crude oil/brine system is of great importance for many processes in petroleum and chemical engineering. The current study plays emphasis on introducing the "Gradient Boosting Decision Tree (GBDT)" and "Adaptive Boosting Support Vector Regression (AdaBoost SVR)" as novel powerful machine learning tools to determine the IFT of crude oil/brine system. Two sorts of models have been developed using each of these two data-driven methods. The first kind includes six inputs, namely pressure (P), temperature (T) and four parameters describing the proprieties of crude oil (total acid number (TAN) and specific gravity (SG) and brine (NaCl equivalent salinity (S-eq) and pH), while the second kind deals with four inputs (without including pH and TAN). To this end, an extensive databank including 560 experimental points was considered, in which 80% of the points were employed for the training phase and the remaining part was utilized as blind test data. Results revealed that the proposed approaches provide very satisfactory predictions, and the implemented GBDT model with six inputs is the most accurate model of all with an average absolute relative error of 1.01%. Moreover, the outcomes of the GBDT model are better than literature models. Finally, outlier diagnostic using Leverage approach was performed to investigate the applicability domain of the GBDT model and to evaluate the quality of employed data.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] A microfluidic flow focusing platform to screen the evolution of crude oil-brine interfacial elasticity
    Morin, Brendon
    Liu, Yafei
    Alvarado, Vladimir
    Oakey, John
    [J]. LAB ON A CHIP, 2016, 16 (16) : 3074 - 3081
  • [32] Characterizing the CO2-brine interfacial tension (IFT) using robust modeling approaches: A comparative study
    Kamari, Arash
    Pournik, Maysam
    Rostami, Alireza
    Amirlatifi, Amin
    Mohammadi, Amir H.
    [J]. JOURNAL OF MOLECULAR LIQUIDS, 2017, 246 : 32 - 38
  • [33] Strontium-based low salinity water as an IOR/EOR method: Oil-brine interaction
    Santos, Denisson
    Barros, Vanderson S.
    Silva, Maria Luiza P.
    Sales, Havila M. M. S.
    Borges, Gustavo R.
    Franceschi, Elton
    Dariva, Claudio
    [J]. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 202
  • [34] Synergy effects of ions, resin, and asphaltene on interfacial tension of acidic crude oil and low-high salinity brines
    Lashkarbolooki, Mostafa
    Riazi, Masoud
    Ayatollahi, Shahab
    Hezave, Ali Zeinolabedini
    [J]. FUEL, 2016, 165 : 75 - 85
  • [35] Lessons Learned in Interfacial Tension Prediction Using a Mixture of Sulfonate- and Ethoxylate-based Surfactants in a Waxy Oil-brine System
    Kurnia, Rani
    Nurfalah, Dian Asfriany
    Wahyuningrum, Deana
    Marhaendrajana, Taufan
    Siagian, Utjok W. R.
    [J]. JOURNAL OF ENGINEERING AND TECHNOLOGICAL SCIENCES, 2023, 55 (06): : 627 - 638
  • [36] Vapour-liquid interfacial tension of water and hydrocarbon mixture at high pressure and high temperature conditions
    Bahramian, A.
    Danesh, A.
    Gozalpour, F.
    Tohidi, B.
    Todd, A. C.
    [J]. FLUID PHASE EQUILIBRIA, 2007, 252 (1-2) : 66 - 73
  • [37] Molecular Insights into the Salinity Effects on Movability of Oil-Brine in Shale Nanopore-Throat Systems
    Cheng, Yongxian
    Lu, Xiancai
    Li, Qin
    Liu, Xiandong
    [J]. LANGMUIR, 2023, 39 (46) : 16494 - 16502
  • [38] Interfacial Tensions between Reservoir Brine and CO2 at High Pressures for Different Salinity
    Lun, Zengmin
    Fan, Hongfu
    Wang, Haitao
    Luo, Ming
    Pan, Weiyi
    Wang, Rui
    [J]. ENERGY & FUELS, 2012, 26 (06) : 3958 - 3962
  • [39] Effects of cation salinity on the dynamic interfacial tension and viscoelasticity of a water-oil system
    Mahmoudvand, Mohsen
    Javadi, Aliyar
    Pourafshary, Peyman
    Vatanparast, Hamid
    Bahramian, Alireza
    [J]. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 206
  • [40] Effects of Interfacial Tension, Emulsification, and Surfactant Concentration on Oil Recovery in Surfactant Flooding Process for High Temperature and High Salinity Reservoirs
    Yuan, Cheng-Dong
    Pu, Wan-Fen
    Wang, Xiao-Chao
    Sun, Lin
    Zhang, Yu-Chuan
    Cheng, Sheng
    [J]. ENERGY & FUELS, 2015, 29 (10) : 6165 - 6176