A new evaluation method of gel’s dynamic sealing characteristic in porous media

Zhi-wei Wu , Xiang-an Yue , Li-feng Li , Yi Zhang , Zhi-guo Yang

Journal of Central South University ›› 2014, Vol. 21 ›› Issue (8) : 3225 -3232.

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Journal of Central South University ›› 2014, Vol. 21 ›› Issue (8) : 3225 -3232. DOI: 10.1007/s11771-014-2294-8
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A new evaluation method of gel’s dynamic sealing characteristic in porous media

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Abstract

Water shutoff through injection wells is one of the most important techniques used for water injection profile control and modification in severely heterogeneous reservoirs, aiming at stabilizing oil production. It has been widely reported that the effectiveness and efficiency of water shutoff using gel is mostly dependent on the gel dynamic sealing properties in the porous media. Firstly the gelation strength and gelation time of polymer gel were evaluated. Then, core flowing experiments were conducted before and after gelation in a 32 m long sand pack. In addition, water flooding core experiments were also carried out in a long core of 80 cm before and after injecting gel system to check the reliability of this evaluation method. The experimental results show that moderate-strength gel can be formed at 65 °C. According to the integrated evaluation of the plugging coefficient, plugging strength and water breakthrough time, the gel particles are capable of migrating to a distance of 7.47 m from the injection point of the 32 m long sand pack during the water injection process after gelation. Based on sands gelation status and effluent analyses, the effective migration distance of the gel particles is 4–14 m. Through the core flooding experiments using the 80 cm heterogeneous core, it is evidenced that the gel can be formed in the deep reservoir (40.63% of total length) with the plugging strength as high as 6.33 MPa/m, which leads to extra oil recovery of 10.55% of original oil in place (OOIP) by water flooding after gel treatment.

Keywords

polyacrylamide / gel / sealing characteristic / oil recovery

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Zhi-wei Wu, Xiang-an Yue, Li-feng Li, Yi Zhang, Zhi-guo Yang. A new evaluation method of gel’s dynamic sealing characteristic in porous media. Journal of Central South University, 2014, 21(8): 3225-3232 DOI:10.1007/s11771-014-2294-8

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References

[1]

WangH-t, LinK-y, JingB-x, KrylovaG, SigmonG E, McginnP, ZhuY-x, NaC-zheng. Removal of oil droplets from contaminated water using magnetic carbon nanotubes [J]. Water research, 2013, 47: 4198-4205

[2]

CosultchiA, SheremetovL, Velasco-hernandezJ, BatyrshinI. A method for aquifer identification in petroleum reservoirs: A case study of Puerto Ceiba oilfield [J]. Journal of Petroleum Science and Engineering, 2012, 94–95: 55-65

[3]

JaripatkeO, DalrympleD, Halliburton. Water-control management technologies: A review of successful chemical technologies in the last two decades [C]. SPE international symposium and exhibition on formation damage control, 2010, Louisiana, SPE: 1-14

[4]

QiaoR, ZhuW-qun. Evaluation of modified cationic starch for impeding polymer channeling and in-depth profile control after polymer flooding [J]. Journal of Industrial and Engineering Chemistry, 2010, 16: 278-282

[5]

SenguptaB, SharmaV P, UdayabhanuG. Gelation studies of an organically cross-linked polyacrylamide water shut-off gel system at different temperatures and pH [J]. Journal of Petroleum Science and Engineering, 2012, 81: 145-150

[6]

MuhammedF A, BaiB-j, TangT-ji. Experimental study of the interaction between surfactants and super absorbent polymer gel [J]. Journal of Petroleum Science and Engineering, 2012, 90-91: 159-164

[7]

BjørsvikM, HøilandH, SkaugeA. Formation of colloidal dispersion gels from aqueous polyacrylamide solutions [J]. Colloids and Surfaces A: Physicochem Eng Aspects, 2008, 317: 504-511

[8]

Al-AnaziM S, Al-MutairiS H, Al-KhaldiM H, Al-ZahraniA A, Al-YamiI S, AramcoS, GurmenM N. Laboratory evaluation of organic water shut-off gelling system for carbonate formations [C]. SPE European Formation Damage Conference, 2011, The Netherlands, SPE: 1-20

[9]

ShriwalP, LaneR H. Impacts of timing of crosslinker addition on water shutoff polymer gel properties [C]. SPE Improved Oil Recovery Symposium, 2012, Oklahoma, SPE: 1-15

[10]

Al-ibadiA, CivanF. Experimental study of gel particles transport through porous media [C]. SPE Latin American and Caribbean Petroleum Engineering Conference, 2012, Mexico, SPE: 1-26

[11]

JayakumarS, LaneR H. Delayed crosslink polymer gel system for water shutoff in conventional and unconventional oil and gas reservoirs [C]. SPE International Symposium on Oilfield Chemistry, 2013, Texas, SPE: 1-9

[12]

BaiB-j, WeiM-z, LiuY-zhang. Field and lab experience with a successful preformed particle gel conformance control technology [C]. SPE Production and Operations Symposium, 2013, Oklahoma, SPE: 1-17

[13]

LiY-l, SuY-c, MaK-qian. Gel flooding pilt test and evaluation method studies to control water channeling in conventional heavy oil reservoir of Bohai Bay [C]. SPE Annual Technical Conference and Exhibition, 2011, Denver, SPE: 1-8

[14]

ZhouW, WangZ, DelshadM. A multi-well performance particle gel injection evaluation using a sophisticated simulator [C]. International Petroleum Technology Conference, 2013, Beijing, SPE: 1-10

[15]

Al-MuntasheriG A, Nasr-Ei-DinH A, ZlthaP L J. Gelation kinetics and performance evaluation of an organically crosslinked gel at high temperature and pressure [J]. SPE J, 2008337-344

[16]

WuY-s, BaiB-jun. Modeling particle gel propagation in porous media [C]. SPE Annual Technical Conference and Exhibition, 2008, Denver, SPE: 1-10

[17]

HeH, WangY-f, ZhaoM-yun. Laboratory evaluation of thermoreversible gel for in depth conformance control in steam-stimulated wells [C]. SPE Heavy Oil Conference, 2012, Calgary, SPE: 1-8

[18]

ZhaoJ-z, JiaH, PuW-fen. Influences of fracture aperture on the water-shutoff performance of polyethyleneimine cross-linking partially hydrolyzed polyacrylamide gels in hydraulic fractured reservoirs [J]. Energy & Fuels, 2011, 25: 2616-2634

[19]

YaoC-j, LeiG-l, GaoX-mei. Selectivity of pore-scale elastic microspheres as a novel profile control and oil displacement agent [J]. Energy & Fuels, 2012, 26: 5092-5101

[20]

SmithJ E. The transition pressure: A quick method for quantifying polyacrylamide gel strength [C]. SPE International Symposium on Oilfield Chemistry, 1989, Houston, SPE: 1-4

[21]

JiaH, PuW-f, ZhaoJ-zhou. Experimental investigation of the novel phenol-formaldehyde cross-linking HPAM gel system: based on the secondary cross-linking method of organic cross-linkers and its gelation performance study after flowing through porous media [J]. Energy & Fuels, 2011, 25: 727-736

[22]

Prashant Shriwal, RobertH. LANE. Impacts of timing of cross-linker addition on water shutoff polymer gel properties [C]. The 18th SPE Improved Oil Recovery Symposium, 2012, Tulsa, SPE: 1-14

[23]

SY/T 6296-1997, China National Petroleum Corporation. Determination of the strength of polymer gels used for oil production-Method on rheological parameters [S]. (in Chinese)

[24]

YueX-a, HouJ-r, QiuM-jun. Evaluation on character of profile control by polymer gel particle [J]. Petroleum Geology and Recovery Efficiency, 2006, 13(2): 81-84

[25]

ZhangJ-hua. Study of crossing linking and transport blocking properties of polymer gel system in porous media [J]. Petroleum Geology and Recovery Efficiency, 2012, 19(2): 54-56

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