研究方向:
·油气井固井工艺理论与技术
·水泥环密封完整性优化设计
·水泥基材料损伤劣化机制与控制技术
·水泥基材料跨尺度表征、分子模拟和数值模拟
·固井用功能性聚合物、聚合物纳米复合材料及工作液
论文著作:
·Huang S,Mao T,Su D,et al. Novel poroperm characteristics design method for cement sheath to improve the long-term sealing integrity in gas storage well[J]. Geoenergy Science and Engineering,2025,250,213832.
·Huang S,Luo M,Li Z Y,et al. A novel low molecular weight thermal responsive suspension stabilizer for oil well cement in high temperature environment:Synthesis,behavior and mechanism research[J]. Geoenergy Science and Engineering,2024,242C:213264.
·Huang S,Gao Y,Li Z Y,et al. Mitigating strategy and mechanism of Cement Slurry Contamination caused by Oil-Based Mud:Macro-micro Experiments,Molecular Dynamics Simulation and Dissipative Particle Dynamics Simulation[J]. Construction and Building Materials,2024,433C:136714.
·Huang S,Wang L,Li Z Y,et al. Machine learning-based prediction model for CO2-induced corrosion on oil well cement under high-pressure and high-temperature condition[J]. Construction and Building Materials,2024,414C:134999.
·黄盛、周灿、李早元,等.亲油水泥浆界面封隔性能评价研究[J].西南石油大学学报(自然科学版),2024,46(1):115-125
·Huang S,Yang Y L,Li Z Y,et al. Corrosion behavior and mechanism of P110 casing steel in alkaline-activated persulfate-based preflush fluid[J]. Engineering Failure Analysis,2023:107482.
·Huang S,Zhou C,Su D H,et al. Fatty alcohol polyoxyethylene ether sodium sulfate–modified cement to improve the bonding and sealing of cement to oil-wet casing or formation surface in shale gas wells[J]. SPE Journal,2023,28(04):1729–1743.
·Huang S,Feng B,Li Z Y,et al. Remediation of oil-based mud contaminated cement with talcum in shale gas well primary cementing:Mechanical properties,microstructure,and hydration[J]. Construction and Building Materials,2021,300C:124047.
·Huang S,Li Z Y,Chen C,et al. Synergetic activation of persulfate by heat and Fe(II)-complexes for hydrolyzed polyacrylamide degradation at high pH condition:Kinetics,mechanism,and application potential for filter cake removal during cementing in CO2 storage wells[J]. Science of The Total Environment,2020,713C:136561.
·Huang S,Cheng X W,Guo X Y,et al. Ethanol plasma-induced polymerization of carbon fiber surface for improving mechanical properties of carbon fiber-reinforced lightweight oil well cement[J]. Applied Surface Science,2019,497C:143765.
·Huang S,Guo X Y,Duan W H,et al. Degradation of high molecular weight polyacrylamide by alkali-activated persulfate:Reactivity and potential application in filter cake removal before cementing[J]. Journal of Petroleum Science and Engineering,2019,174C:70-79.
·Su D H,Huang S,Li Z Y,et al. Sealing integrity evaluation and optimization of cement sheath–formation interface under different formation conditions during fracturing[J]. Journal of Earth Science,2025,36:223-232.
·Luo Z G,Huang S,Li Z Y,et al. Carboxyl carbon nano-tubes modified calcium silicate hydrate (C-S-H-PCE/CNTs) to enhance the CO2 corrosion resistance of oil well cement[J]. Construction and Building Materials,2024,452C:138894.
·Zhang B,Huang S,Li Z,et al. Synthesized crosslinking suspension stabilizer for spacer fluid in high temperature condition:Synthesis,behavior and mechanism research[J]. SPE Journal,2024,SPE Journal,2024:29(12):6743-6755.
·Wang L,Huang S,Li Z Y,et al. Hybrid machine learning model based on GWO and PSO optimization for prediction of oil well cement compressive strength under acidic corrosion [J]. SPE Journal,2024:29(9):4684-4695.
·Shen Q H,Liu J,Li Z Y,Huang S,et al. Study on the early structural strength of a hardened GGBFS-based plugging slurry activated by alkali[J]. Construction and Building Materials,2024,433C:136586.
·Sun Q,Huang S,Li Z Y,et al. Synergistic activation of persulfate by heat and cobalt-doped-bimetallic-MOFs for effective methylene blue degradation:Synthesis,kinetics,DFT calculation,and mechanisms[J]. Journal of Environmental Chemical Engineering,2023,11(1):109065.
·Su D H,Li J,Huang S,et al. Novel method for characterizing the mechanical properties of the cement sheath based on hollow-cylinder specimen and multiaxial load tests[J]. SPE Journal,2022:1-15.
·Su D H,Huang S,Li Z Y,et al. Theoretical study on the hydraulic sealing integrity of cement sheath in horizontal shale oil wells under fracturing:Crack propagation mode and mechanism[J]. Advances in Mechanical Engineering,2022,14(6):1992380137.
·苏东华,黄盛,李早元,等.页岩油水平井压裂水泥环力学性能设计方法[J].石油勘探与开发,2022,49(4):798-805.
·Li J,Huang S,Li Z Y,et al. Filter cake removal during the cementing and completion stages in CO2 Storage wells:current developments,challenges,and prospects[J]. Energy Technology,2022,10(6):2101134.
发明专利:
·黄盛,苏子峰,李早元,等.一种延时成胶复合堵漏液及其制备方法:202210301756.4[P]. 2023-08-15.
·黄盛,周博,李早元,等.一种用于含水地层固井的抗水侵水泥浆及其制备方法:202210301740.3[P]. 2023-04-07.
·黄盛,周灿,李早元,等.一种可改善含油固井界面封隔性能的亲油性水泥浆:202111448521.X[P]. 2022-12-02.
·黄盛,冯波,李早元,等.一种固井中滤饼清除液用温度pH响应型活化剂:202110245005.0[P]. 2022-08-12.
·黄盛,杨涪杰,李早元,等.一种环境响应型固井滤饼清除液:202110246407.2[P]. 2022-05-24.
·黄盛,苏东华,李早元,等.适用于盐膏层固井的油井水泥防腐型早强剂及其制备方法:202110292421.6[P]. 2022-03-18.
·黄盛,郭小阳,李早元,等.适用于固井前水基钻井液滤饼清除的工作液体系:201611132354.7[P]. 2017-09-01.
·郭小阳、黄盛、张兴国,等,一种高温高压超深井全过程塞流防漏固井设计方法:201610896793.9[P]. 2017-07-11.
科研项目:
·国家自然科学基金青年基金项目,52004231,基于高聚物催化氧化降解动力学的滤饼快速清除机理研究,2021/01-2023/12,主持
·国家自然科学基金联合基金项目,U22B6003,复杂环境下水泥环全生命周期密封理论与控制方法,2023/01-2026/12,课题3技术首席
·四川省自然科学基金面上项目,2025ZNSFSC0374,热-力-化耦合下CCUS井腐蚀水泥环密封失效机理及调控研究,2025/01-2026/12,主持
·四川省自然科学基金青年项目,2022NSFSC0979,深层页岩气固井亲油-吸油水泥浆制备及机理研究,2022/01-2023/12,主持
·中国博士后面上基金项目,2020M673575XB,双金属掺杂MOFs/过硫酸盐体系的构筑及其在固井中分解钻井液滤饼的机理,2020/07-2022/01,主持
·油气藏地质及开发工程国家重点实验室开放基金项目,PLN2020-17,深井超深井固井用LDHs基插层缓凝剂的设计与合成研究,2020/10-2022/12,主持