Analysis of different oil well cement slurry formulations exposed to a CO2-rich environment

被引:13
作者
Costa, B. L. S. [1 ]
Freitas, J. C. O. [1 ]
Araujo, R. G. S. [1 ]
Oliveira, Y. H. [1 ]
Santiago, R. C. [1 ]
Oliveira, F. S. [1 ]
机构
[1] Univ Fed Rio Grande do Norte, UFRN, BR-59072970 Natal, RN, Brazil
关键词
Oil well cement; Cementing; Carbonation; Solids concentration; CO2; attack; CO2; STORAGE; CARBONATION; CORROSION; BEHAVIOR; DEGRADATION; STRENGTH; CONCRETE;
D O I
10.1016/j.jcou.2021.101636
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Portland cement hydrated products exposure to carbon dioxide (CO2) results in physicochemical transformations which are deleterious for the cement matrix. Therefore, cement slurry formulations need to be designed carefully to handle situations where the hardened cement will be exposed to CO2, so optimized formulations need to be considered. The present study investigated different cement slurry formulations and different densities for each formulation, with all samples exposed to CO2 during periods of 30, 60 and 90 days. The densities studied were 15.8 ppg (1890 kg/m3), 16.5 ppg (1980 kg/m3) and 17.0 ppg (2040 kg/m3), for which the study started with a simple composition and other additives were put into the formulations, with the last being the most complex. Static sedimentation analysis, carbonation depth and area calculation were used to investigate the effects of carbonation on the systems, and the results showed that the optimized formulation designs presented the best results on CO2 attack in the highest densities of 16.5 ppg and 17.0 ppg. A proper formulation designed for application in CO2-rich wells is mandatory for the well integrity from the construction phase to abandonment.
引用
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页数:13
相关论文
共 44 条
  • [1] Aiex C., 2015, EXPT STUDY EFFECTS S, DOI [10.4043/25659-MS, DOI 10.4043/25659-MS]
  • [2] Experimental investigation of well integrity: Annular gas migration in cement column
    Al Ramadan, Mustafa
    Salehi, Saeed
    Kwatia, George
    Ezeakacha, Chinedum
    Teodoriu, Catalin
    [J]. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2019, 179 : 126 - 135
  • [3] API, 2019, 10A API ANSIAPI
  • [4] API, 2013, API 10B-2, V2
  • [5] A Comprehensive Theoretical and Experimental Study on Fluid Displacement for Oilwell-Cementing Operations
    Aranha, Pedro Esteves
    de Miranda, Cristiane Richard
    Cardoso, Walter F., Jr.
    Campos, Gilson
    Martins, Andre Leibsohn
    Gomes, Frederico C.
    de Araujo, Simone Bochner
    Carvalho, Marcia S.
    [J]. SPE DRILLING & COMPLETION, 2012, 27 (04) : 596 - 603
  • [6] Characterizing curing-cement slurries by permeability, tensile strength, and shrinkage
    Backe, KR
    Lile, OB
    Lyomov, SK
    Elvebakk, H
    Skalle, P
    [J]. SPE DRILLING & COMPLETION, 1999, 14 (03) : 162 - 167
  • [7] A solution against well cement degradation under CO2 geological storage environment
    Barlet-Gouedard, V.
    Rimmele, G.
    Porcherie, O.
    Quisel, N.
    Desroches, J.
    [J]. INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2009, 3 (02) : 206 - 216
  • [8] Bensted J., 1996, Concrete Admixtures Handbook, Vsecond, P1077
  • [9] Cementing Solutions for Corrosive Well Environments
    Brandl, A.
    Cutler, J.
    Seholm, A.
    Sansil, M.
    Braun, G.
    [J]. SPE DRILLING & COMPLETION, 2011, 26 (02) : 208 - 219
  • [10] Fluid-solid interactions related to subsurface storage of CO2 Experimental tests of well cement
    Brandvoll, O.
    Regnault, O.
    Munz, I. A.
    Iden, I. K.
    Johansen, H.
    [J]. GREENHOUSE GAS CONTROL TECHNOLOGIES 9, 2009, 1 (01): : 3367 - 3374