Horizontal fracture-simulated completions remain the most reliable method of producing hydrocarbons from shale formations. The vast majority of unconventional wells are completed using the “Plug and Perf” method. This method involves using either a coiled tubing (CT) with a positive displacement motor or a jointed pipe to mill out composite plugs after fracturing operations are completed. An estimated average of 120,000 composite plugs is installed in the US alone each year. Bridge plug drillouts from milling operations tend to accumulate in horizontal wells and can cause stuck pipe incidents and loss of well control. Efficient removal of composite plugs’ debris is crucial in achieving operational efficacies and full production potential. This paper provides an overview of the various bridge plug drillouts cleaning practices adopted in horizontal wells. It discusses several case histories, showcasing how operators solved cleanout challenges. Developed mechanistic models to better understand hole cleaning are also reviewed. As more unconventional wells are being set at more extensive depths, an economical and optimized coiled tubing process becomes increasingly important. This paper focuses on delivering a more conclusive set of recommendations to increase efficiency and improve current composite plug coiled tubing cleaning-milling practices, increase operational efficiency and reduce cost.
References
[1]
Craig, S., Harris, J., Lehr, D. and Brandt, N. (2012) Best Practices for Composite Plug Milling. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, The Woodlands, 27-28 March 2012, SPE Paper No. SPE-154060-MS. https://doi.org/10.2118/154060-MS
[2]
Cromer, C.M., Aviles, I. and Li, N. (2014) Composite: Is Multi-Plug Milling That Fast? SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, The Woodlands, 25-26 March, SPE Paper No. SPE-168301-MS. https://doi.org/10.2118/168301-MS
[3]
Huynh, D., Medvedev, O., Hamid, S. and Anas, Y. (2014) Composite Plug Milling Efficiency Improvement through Rheology Control-Lessons Learned from the Horizontal Completions in the Duvernay Shale. SPE Annual Technical Conference and Exhibition, Amsterdam, 27-29 October 2014, SPE Paper No. SPE-170738-MS. https://doi.org/10.2118/170738-MS
[4]
Pawlik, M., Champagne, J., Whitworth, J. and Trebing, C. (2014) Optimizing Frac Plug Mill Outs in Horizontal Wells using Coiled Tubing. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, The Woodlands, 25-26 March 2014, SPE Paper No. SPE-168279-MS. https://doi.org/10.2118/168279-MS
[5]
Ahn, J. (2015) Achieving Economically Successful Coiled Tubing Composite Plug Drillouts in Extended Reach Wells. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, The Woodlands, 24-25 March 2015, SPE Paper No. SPE-173665-MS. https://doi.org/10.2118/173665-MS
[6]
Li, Y., Terry, A., Parr, C., Stanley, R. and Dunsmore, B. (2015) Using Coiled Tubing to Safely and Efficiently Mill Out Composite Bridge Plugs Set Across Zones with Significant Differential Pressures. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, The Woodlands, 24-25 March 2015, SPE Paper No. SPE-173671-MS. https://doi.org/10.2118/173671-MS
[7]
Cano, V., Cardona, W.G., Murphy, C. and de Araujo, M. (2016) Improved CT Well Cleanout and Milling Procedures Utilizing Only Non-Viscous Cleanout Fluids. SPE/ ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, Houston, 22-23 March 2016, SPE Paper No. SPE-179070-MS. https://doi.org/10.2118/179070-MS
[8]
Snyder, E. and Noland, J. (2016) Optimization of Single Trip Milling Using 2-Inch Coiled Tubing. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, Houston, 22-23 March 2016, SPE Paper No. SPE-179090-MS. https://doi.org/10.2118/179090-MS
[9]
Vijayvargia, U., Tiwari, S., Anand, S., Sidharth, P., Sharma, A., Manish, K., Yadav, J. and Goyal, R. (2016) Optimized Coiled Tubing Based Milling of Multiple Composite thru Tubing Bridge Plugs in High Condensate Hydraulically Fractured Deep Gas Wells—A Case Study. International Petroleum Technology Conference, Bangkok, 14-16 November 2016, IPTC Paper No. IPTC-18728-MS. https://doi.org/10.2523/IPTC-18728-MS
[10]
Zanellato, G., Szklarz, J.M., Pach, E. and Nebiolo, M. (2017) Fracturing Plugs Drillout Experiences in Unconventional Applications. SPE/ICoTA Coiled Tubing & Well Intervention Conference & Exhibition, Houston, 21-22 March 2017, SPE Paper No. SPE-184765-MS. https://doi.org/10.2118/184765-MS
[11]
Barraza, J., Champeaux, C., Myatt, H., Lamon, K., Bowland, R., Bishop, T., Noles, J. and Garlow, R. (2018) Factory Model Approach for Successful Coil Tubing Unit Drillout Operations in Unconventional Horizontal Wells. 2018 SPE Annual Technical Conference and Exhibition, Dallas, 24-26 September 2018, SPE Paper No. SPE-191689-MS. https://doi.org/10.2118/191689-MS
[12]
Potapenko, D., Theuveny, B., Williams, R., Moncada, K., Campos, M., Spesivtsev, P. and Willberg, D. (2019) State of the Art of Flow Management for Frac Plug Drillout and Flowback. SPE Annual Technical Conference and Exhibition, Calgary, 30 Sepember-2 October 2019, SPE Paper No. SPE-196084-MS. https://doi.org/10.2118/196084-MS
[13]
Comer, A. and Alferez, O. (2019) Composite Plug Milling via Wireline Reduces HSE Risks and Logistics on Location. SPE Eastern Regional Meeting, Charleston, 15-17 October 2019, SPE Paper No. SPE-196584-MS. https://doi.org/10.2118/196584-MS
[14]
Yekta, Y., Stang, B., Hilling, S., Schwartz, C., Cheung, B., Elliott, K.J. and Williams, C.D. (2020) A Success Story: Utilizing Different Variables in Design and Execution of Coiled Tubing Extended Reach Milling Operations. Proceedings of SPE/ICoTA Well Intervention Conference and Exhibition, The Woodlands, 24-25 March 2020, SPE Paper No. SPE-199802-MS. https://doi.org/10.2118/199802-MS
[15]
Singh, I., Saraf, A., Pathak, A.R., Bandyopadhyay, B., Dehingia, M., Wijoseno, D.A., Shaik, M. and Rao, D.P. (2020) Best Practices for Using Coiled Tubing to Assist Plug-and-Perf Multistage Fracturing Operations in HP/HT Wells. Offshore Technology Conference, Houston, 4-7 May 2020, OTC Paper No. OTC-30532-MS. https://doi.org/10.4043/30532-MS
[16]
Larsen, T.I. (1990) A Study of the Critical Fluid Velocity in Cuttings Transport. MS Thesis, University of Tulsa, Tulsa.
[17]
Nguyen, D. (1997) Mathematical Models of Cuttings Transport & Drilling Fluid Displacement by Cement Slurry in Horizontal Wells. Ph.D. Dissertation, University of New South Wales, New South Wales.
[18]
Saintpere, S., Marcillat, Y., Bruni, F. and Toure, A. (2000) Hole Cleaning Capabilities of Drilling Foams Compared to Conventional Fluids. SPE Annual Technical Conference and Exhibition, Dallas, October 2000, SPE Paper No. SPE-63049-MS. https://doi.org/10.2118/63049-MS
[19]
Martins, A.L., Lourenço, A.M.F. and de Sa, C.H.M. (2001) Foam Property Requirements for Proper Hole Cleaning While Drilling Horizontal Wells in Underbalanced Conditions. SPE Asia Pacific Oil and Gas Conference and Exhibition, Brisbane, October 2000, SPE Paper No. SPE-64382-MS. https://doi.org/10.2118/64382-MS
[20]
Li, J. and Walker, S. (2001) Sensitivity Analysis of Hole Cleaning Parameters in Directional Wells. SPE Journal, 6, 356-363. https://doi.org/10.2118/74710-PA
[21]
Ozbayoglu, E.M., Miska, S.Z. and Reed, T. (2003) Cuttings Transport with Foam in Horizontal and Highly Inclined Wellbores. SPE/IADC Drilling Conference, Amsterdam, February 2003, SPE Paper No. SPE-79856-MS. https://doi.org/10.2118/79856-MS
[22]
Li, Y. and Kuru, E. (2004). Prediction of Critical Foam Velocity for Effective Cuttings Transport in Horizontal Wells. SPE/ICoTA Coiled Tubing Conference and Exhibition, Houston, March 2004, SPE Paper No. SPE-89324-MS. https://doi.org/10.2118/89324-MS
[23]
Meza, G.G., Alarcon, X.B. and Loundy, R. (2020) A Detailed Evaluation of Coiled Tubing Drillouts of Composites and Dissolvable Plugs in Permian Basin and Eagle Ford Fields. SPE/ICoTA Well Intervention Conference and Exhibition, The Woodlands, 24-25 March 2020, SPE Paper No. SPE-199790-MS. https://doi.org/10.2118/199790-MS
[24]
Motamedi, M. and Farshad, F.J. (2020). An Overview on Applications of Machine learning in Petroleum Engineering. 3rd International Congress on Science and Engineering, Hamburg, March 2020.