代表性研究成果
[1] ZHANG, G.F., TANG, M., HE, S.M., et al. Wellbore-formation transient temperature distribution considering heat transfer by fluid seepage while drilling in horizontal well[J]. Geoenergy Science and Engineering, 2025, 251: 213886(SCI,2区TOP)
[2] TANG, M., ZHANG, G.F., HE, S.M., et al. Theoretical analysis and field application of cooling bottom hole by mud density reduction during drilling in deep shale gas well[J]. Geoenergy Science and Engineering,2024, 240: 213054(SCI,2区TOP,导师一作,本人二作兼通讯作者)
[3] TANG, M., ZHANG, G.F., HE, S.M., et al. Analysis of seepage and temperature fields and their influence on collapse pressure while drilling in shale oil reservoirs[J]. Geoenergy Science and Engineering,2023, 231: 212410(SCI,2区TOP,导师一作,本人二作兼通讯作者)
[4] TANG, M., ZHANG, G.F., HE, S.M., et al. Research and Application of Windowing for High-Grade Steel Thick-Wall Casing in Ultradeep Wells. [J].Arabian Journal for Science & Engineering (Springer Science & Business Media B.V. ),2024, 49(6): 1-15. (SCI, 4区,导师一作,本人二作兼通讯作者)
[5] ZHANG, G.F., H.B. Wang…HE, S.M.. Effects of Hydration during Drilling on Fracability of Shale Oil Formations: A Case Study of Da’anzhai Section Reservoir in Sichuan Basin, China[J].Processes,2022, 10(2313): 2313. (SCI,3区)
[6] ZHANG, G.F., HE, S.M., TANG, M., et al. The mechanism and countermeasures of inclined well wellbore instability in Dibei deep coal seam[J].Journal of Petroleum Exploration and Production Technology,2022, 12(10): 2833-2848 (SCI,3区)
[7] ZHANG, G.F., Tang, M., Lei, H., He, S. M., et al. "Analysis of Three Methods to Reduce Bottom Hole Temperature While Drilling in Deep Shale Gas Well: Circulation, Ground Cooling, and Mud Density Reduction." Paper presented at the GOTECH, Dubai, UAE, May 2024. doi: https://doi.org/10.2118/219075-MS(SPE会议,EI)
[8] ZHANG, G.F., HE, S.M., TANG, M., et al. "Effect of Fluid Invasion on the Failure and Deformation of Deep Coal and Wellbore Stability." Paper presented at the International Geomechanics Symposium, Abu Dhabi, UAE, November 2022. doi: https://doi.org/10.56952/IGS-2022-047. (SEG&ARMA国际会议)
[9] ZHANG, G.F., TANG, M., HE, S.M., et al. Simulation and Application of Windowing for High-Grade Steel Thick-Wall Casing in Ultradeep Wells: A Case Study of ST102 Well[J]. Journal of Physics: Conference Series,2024, 2694: 012053. (EI会议论文)
[10]张光福,汤明,雷豪杰,等.深层页岩气水平井温度场与降密度降温提速技术[C]//第二十一次中国岩石力学与工程学术年会. 2024-11-02.
[11]页岩油储层钻进过程中渗流场和温度场及其对坍塌压力的影响(2024年中国岩石力学与工程年会,摘要)
[12]张光福,何世明,汤明,等.基于3DEC离散元的煤层井壁稳定性[J].科学技术与工程,2020,20(04):1367-1373.(中文核心)
[13]张光福,汤明,何世明,等.煤系地层坍塌压力预测与井眼轨迹优化[J].石油钻采工艺,2019,41(04):405-411.(CSCD)
[14]张光福,何世明,汤明.一种煤岩三轴破坏测试实验装置:CN114382467A(已授权)