The effect of type waves on vibroseismic implementation of changes properties of rock, oil viscosity, oil compound composition, and enhanced oil recovery

被引:5
|
作者
Louhenapessy S.C. [1 ]
Ariadji T. [1 ]
机构
[1] Petroleum Engineering, Faculty of Mining and Petroleum Engineering, Bandung Institue of Technology
来源
Petroleum Research | 2020年 / 5卷 / 04期
关键词
Chemical composition; Circular wave (C); Coreflooding; Enhanced oil recovery; Frequency; Longitudinal wave (P); Residual oil saturation (s[!sub]or[!/sub]); Vibroseismic; Viscosity;
D O I
10.1016/j.ptlrs.2020.05.001
中图分类号
学科分类号
摘要
Based on the results of laboratory studies, the frequency of 35 Hz in longitudinal waves and 20 Hz in circular waves is the optimum frequency that can increase the maximum oil recovery. Coreflooding test results before the vibration effect can increase oil production by 51.96% and reduce the residual oil saturation by 59.03%. The surprising results when the vibration effect was applied to the coreflooding test method with P wave types continuously succeeded in increasing oil production by 60.54%, intermittent P waves by 63.53% and circular waves by 64.76%, while also reducing Sor by 48.49% in continuous P waves, intermittent P waves at 44.81% and C waves at 43.3%. The P wave type vibrational method has an increase in oil gain by 16%, intermittently by 22%, Sor reduction by 18% and 24%, in circular wave oil gain increases by 25%, and Sor decreases by 27% from before the vibration effect given. Besides vibration can change the physical properties of rocks, among others; permeability has increased by 7% using P waves continuously, intermittently by 31% and C waves by 4%; porosity of 5.88% with P waves continuously, intermittently of 6.46% and circular waves of 4.63%; grain size before vibration of 45.16 μm after vibration using continuous P waves of 42.01 μm, intermittently of 47.98 μm, and circular of 50.46 μm; changes in oil composition to contain more alkanes, and lack of aromatic compounds; oil viscosity increased by 3% with continuous P waves, intermittent of 5%, and circular 61%. The new point from this paper is analyzing the vibroseismic effect by using SEM images in terms of the watershed segmentation of the Rabbani algorithm compared to lab results, which have an error rate of under 2%, and a review of oil composition by the GC-MS method. © 2020 Chinese Petroleum Society
引用
收藏
页码:304 / 314
页数:10
相关论文
共 50 条
  • [21] Effect of rock wettability on oil recovery by waterflooding
    Yan, Jienian
    Shiyou Daxue Xuebao/Journal of the University of Petroleum China, 1998, 22 (03): : 43 - 46
  • [22] The effect of chemically enhanced oil recovery on thin oil rim reservoirs
    Olabode, O. A.
    Ogbebor, V. O.
    Onyeka, E. O.
    Felix, B. C.
    JOURNAL OF PETROLEUM EXPLORATION AND PRODUCTION TECHNOLOGY, 2021, 11 (03) : 1461 - 1474
  • [23] Effect of polysilicon nanoparticles on enhanced oil recovery in Iranian oil reservoir
    Safari, M.
    Jamialahmadi, M.
    INTERNATIONAL JOURNAL OF NANO DIMENSION, 2013, 3 (03) : 199 - 205
  • [24] The effect of oil properties on oil recovery in dilute surfactant flooding
    Pu, Wan-Fen
    Zhao, Shuai
    Lu, Xin-Bian
    Yuan, Cheng-Dong
    Wang, Song
    Tang, Yan-Li
    Zhang, Lin-Yan
    Li, Rui
    PETROLEUM SCIENCE AND TECHNOLOGY, 2016, 34 (08) : 759 - 764
  • [25] CO2-monoethanolamine-induced oil swelling and viscosity reduction for enhanced oil recovery
    Hafez, Mazen
    Ratanpara, Abhishek P.
    Martiniere, Yoan
    Dagois, Maxime
    Ghazvini, Mahyar
    Kavosi, Mohammadhassan
    Mandin, Philippe
    Kim, Myeongsub
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 206
  • [26] Effect of a novel type of water-in-oil nanocomposite viscosity improver on rheological properties of crude oil
    Zhang, Huili
    Zhao, Yucui
    Chen, Xuyu
    Dong, Long
    Yu, Hailin
    Deng, Jinjun
    Tong, Yanbin
    Wu, Lingmin
    Sun, Liqun
    Liu, Hongsheng
    PETROLEUM SCIENCE AND TECHNOLOGY, 2023, 42 (24) : 3563 - 3579
  • [27] Physicochemical and Integrated Technologies for Enhanced Oil Recovery from High-Viscosity Oil Deposits
    Altunina, L. K.
    Kuvshinov, V. A.
    Kuvshinov, I., V
    Stasyeva, L. A.
    PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY, 2020, 2310
  • [28] A New Type of Surfactant for Enhanced Oil Recovery
    Shahri, M. Pordel
    Shadizadeh, S. R.
    Jamialahmadi, M.
    PETROLEUM SCIENCE AND TECHNOLOGY, 2012, 30 (06) : 585 - 593
  • [29] A New Type Surfactant for Enhanced Oil Recovery
    Liang, Chenghao
    Zhang, Zhijun
    ASIAN JOURNAL OF CHEMISTRY, 2009, 21 (06) : 4577 - 4582
  • [30] Influence of brine composition and fines migration on crude oil/brine/rock interactions and oil recovery
    Tang, GQ
    Morrow, NR
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 1999, 24 (2-4) : 99 - 111