Affiliation:
1. School of Chemistry and Chemical Engineering, Chongqing University of Science and Technology, Chongqing 401331, China
2. Chongqing Oil and Gas Chemical Engineering Technology Research Center, Chongqing 401331, China
3. Gree Energy Services Inc., Shenzhen 518000, China
Abstract
Lost circulation is a world-class problem, and the contradiction between plugging and unplugging in reservoirs is a problem that needs to be solved urgently. The traditional LCM is not suitable for reservoirs and the complex subsequent operations. Currently, a self-degrading plugging material is proposed. In this paper, a new self-degradation plugging material, CKS-DPPG, was prepared by AM, GG, nano silica, and PEGDA. The effects of reactant concentration, pH, mineralization, etc., on the swelling and degradation performance of CKS-DPPG were investigated. The plugging capacity was tested by fracture plugging equipment, and the mechanism of self-degradation was revealed. The results show that the CKS-DPPG reached a 50% degradation rate in 54 h and complete degradation in 106 h at 80 °C and pH = 8. Low temperatures, high mineralization, and weak alkaline conditions prolong the complete degradation time of CKS-DPPG, which facilitates subsequent operations. The simulation of the 3 mm opening fracture plugging experiment showed that the pressure-bearing capacity reached 6.85 MPa and that a 0.16 MPa pressure difference could unplug after degradation. The ester bond of PEGDA is hydrolyzed under high-temperature conditions, and the spatial three-dimensional structure of CKS-DPPG becomes linear. The CKS-DPPG can effectively reduce subsequent unplugging operations and lower production costs.
Funder
National Natural Science Foundation of China
Chongqing Natural Science Foundation
Chongqing Municipal Education Commission
Chongqing University of Science and Technology
Subject
Polymers and Plastics,Organic Chemistry,Biomaterials,Bioengineering
Reference29 articles.
1. Ghalambor, A., Salehi, S., Shahri, M.P., and Karimi, M. (2014). SPE International Conference and Exhibition on Formation Damage Control, OnePetro.
2. An analysis and the control of lost circulation;Howard;J. Pet. Technol.,1951
3. Application of machine learning methods in modeling the loss of circulation rate while drilling operation;Alsaihati;ACS Omega,2022
4. Loss circulation in drilling and well construction: The significance of applications of crosslinked polymers in wellbore strengthening: A review;Magzoub;J. Pet. Sci. Eng.,2020
5. Microscopic insights into synergism effect of different hydrate inhibitors on methane hydrate formation: Experiments and molecular dynamics simulations;Liao;Fuel,2023
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