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Preformed particle gel for conformance-improvement

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Noteworthy papers in OnePetro

Abbasy, I., Vasquez, J.E., Eoff, L.S. et al. 2008. Laboratory Evaluation of Water-Swellable Materials for Fracture Shutoff. Presented at the SPE Symposium on Improved Oil Recovery, Tulsa, 20–23 April. SPE-113193-MS. http://dx.doi.org/10.2118/113193-MS

Albidrez, P., Dalrymple, E.D., Vasquez, J.E. et al. 2008. Using Crystallized Superabsorbent Copolymer for Plugging High-Permeability Channeling and Vugular Communication. Presented at the Abu Dhabi International Petroleum Exhibition and Conference, Abu Dhabi, UAE, 3–6 November. SPE-117155-MS. http://dx.doi.org/10.2118/117155-MS

Al-Ibadi, A. and Civan, F. 2013. Experimental Investigation and Correlation of Treatment in Weak and High-Permeability Formations by Use of Gel Particles. SPE Prod & Oper 28 (4): 387–401. SPE-153557-PA. http://dx.doi.org/10.2118/153557-PA

Bai, B. and Elsharafi, M.O.S. 2013. Effect of Strong Preformed Particle Gel on Unswept Oil Zones/Areas during Conformance Control Treatments. Presented at the EAGE Annual Conference & Exhibition incorporating SPE Europec, London, 10–13 June. SPE-164879-MS. http://dx.doi.org/10.2118/164879-MS

Bai, B. and Zhang, H. 2011. Preformed-Particle-Gel Transport Through Open Fractures and Its Effect on Water Flow. SPE J. 16 (2): 388–400. SPE-129908-PA. http://dx.doi.org/10.2118/129908-PA

Bai, B., Huang, C.G., Liu, H. et al. 2008. Case Study on Preformed Particle Gel for In-Depth Fluid Diversion. Presented at the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, 19–23 April. SPE-113997-MS. http://dx.doi.org/10.2118/113997-MS

Bai, B., Li, L., Liu, Y. et al. 2004. Preformed Particle Gel for Conformance Control: Factors Affecting Its Properties and Applications. Presented at the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, 17–21 April. http://dx.doi.org/10.2118/89389-MS

Bai, B., Liu, Y., Coste, J.-P. et al. 2007. Preformed Particle Gel for Conformance Control: Transport Mechanism Through Porous Media. SPE Res Eval & Eng 10 (2): 176–184. SPE-89468-PA. http://dx.doi.org/10.2118/89468-PA

Bai, B., Liu, Y., Coste, J.-P. et al. 2007. Preformed Particle Gel for Conformance Control: Transport Mechanism Through Porous Media. SPE Res Eval & Eng 10 (2): 176–184. SPE-89468-PA. http://dx.doi.org/10.2118/89468-PA

Bai, B., Liu, Y., Coste, J.P. et al. Preformed Particle Gel for Conformance Control: Transport Mechanism Through Porous Media. Presented at the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, 17–21 April. SPE-89468-MS. http://dx.doi.org/10.2118/89468-MS

Bai, B., Wei, M., and Liu, Y. 2013. Field and Lab Experience With a Successful Preformed Particle Gel Conformance Control Technology. Presented at the SPE Production and Operations Symposium, Oklahoma City, Oklahoma, USA, 23–26 March. SPE-164511-MS. http://dx.doi.org/10.2118/164511-MS

Beaman, D.J., Brink, D.I., Ritchie, B. et al. 2009. Qualification and Deployment of a Unique Polymer Conformance Control System. Presented at the International Petroleum Technology Conference, Doha, Qatar, 7–9 December. IPTC-13074-MS. http://dx.doi.org/10.2523/13074-MS

Dalrymple, D., Eoff, L., Vasquez, J. et al. 2008. Shallow Penetration Particle Gel System for Water and Gas Shut-Off Applications. Presented at the SPE Russian Oil and Gas Technical Conference and Exhibition, Moscow, 28–30 October. SPE-114886-MS. http://dx.doi.org/10.2118/114886-MS

Delshad, M., Varavei, A., Goudarzi, A. et al. 2013. Water Management in Mature Oil Fields using Preformed Particle Gels. Presented at the SPE Western Regional & AAPG Pacific Section Meeting 2013 Joint Technical Conference, Monterey, California, USA, 19–25 April. SPE-165356-MS. http://dx.doi.org/10.2118/165356-MS

Imqam, A. and Bai, B. 2014. Preformed Particle Gel Extrusion Through Open Conduits During Conformance Control Treatments. Accepted to present at the 19th IOR Symposium, Tulsa, 12–16 April. SPE-169107-MS

Liu, Y. and Bai, B. 2013. Thermo-Dissoluble Polymer for In-Depth Mobility Control. Presented at the International Petroleum Technology Conference, Beijing, China, 26–28 March. IPTC-16991-MS. http://dx.doi.org/10.2523/16991-MS

Liu, Y., Bai, B., and Schuler, P.J. 2006. Application and Development of Chemical-Based Conformance Control Treatments in China Oil Fields. Presented at the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, 22–26 April. SPE 99641-MS. http://dx.doi.org/10.2118/99641-MS

Muhammed, F. and Bai, B. 2014. A Simple Technique To Determine Gel Strength of Millimeter-Sized Particle Gel. Accepted to present at the 19th IOR Symposium, Tulsa, 12–16 April. SPE-169106-MS.

Muhammed, F.A., Bai, B., and Tang, T. 2012. Experimental study of the interaction between surfactants and super absorbent polymer gel. J. Pet. Sci. Eng. 90–91 (0): 159–164. http://dx.doi.org/10.1016/j.petrol.2012.04.010

Vasquez, J.E., Dalrymple, E.D., Abbasy, I. et al. 2008. Laboratory Evaluation of Water Swellable Materials for Fracture Shutoff. Presented at the SPE North Africa Technical Conference & Exhibition, Marrakech, Morocco, 12–14 March. SPE-111492-MS. http://dx.doi.org/10.2118/111492-MS

Vasquez, J.E., Eoff, L.S., Dalrymple, E.D. et al. 2008. Shallow Penetration Particle-Gel System for Water and Gas Shutoff Applications. Presented at the SPE Annual Technical Conference and Exhibition, Denver, 21–24 September. SPE-114885-MS. http://dx.doi.org/10.2118/114885-MS

Wang, Y., Bai, B., Gao, H. et al. 2008. Enhanced Oil Production Through a Combined Application of Gel Treatment and Surfactant Huff'n'Puff Technology. Presented at the SPE International Symposium and Exhibition on Formation Damage Control, Lafayette, Louisiana, USA, 13–15 February. SPE-112495-MS. http://dx.doi.org/10.2118/112495-MS

Wu, F. 2014. Lessons Learned From the Applications of Performed Particle Gel in Mature Oilfields. Accepted to present at the 19th IOR Symposium, Tulsa, 12–16 April. SPE-169161-MS.

Wu, Y.-S. and Bao, B. 2008. Modeling Particle Gel Propagation in Porous Media. Presented at the SPE Annual Technical Conference and Exhibition, Denver, 21–24 September. SPE-115678-MS. http://dx.doi.org/10.2118/115678-MS

External links

See also