部分代表論著: 1.祝效華,劉偉吉. 鉆井巖石破碎學[M].科學出版社,2022.(學術專著) 2.Liu W, Zhang Y, Zhu X, et al. The influence of pore characteristics on rock fragmentation mechanism by high voltage electric pulses[J]. Plasma Science and Technology, 2022 3. Liu W, Luo Y, Zhu X, et al. The ductile-brittle failure mode transition of hard brittle rock cutting—new insights from numerical simulation[J]. Geomechanics and Geophysics for Geo-Energy and Geo-Resources,2022, 8(4): 1-24. 4.Liu W, Zhu X*, Lv Y, Hua Tong. On the mechanism of thermally induced micro-cracking assisted rock cutting in hard formation[J]. Journal of Petroleum Science and Engineering, 2021, 196: 311-319. 5.Liu W, Qian X, Li T, et al. Investigation of the tool-rock interaction using Drucker-Prager failure criterion[J]. Journal of Petroleum Science and Engineering, 2019, 173: 269-278. 6.Liu W, Zhu X*, Jing J. The analysis of ductile-brittle failure mode transition in rock cutting[J]. Journal of Petroleum Science and Engineering, 2018, 163: 311-319. 7.Zhu X, Luo Y, Liu W*, et al. Numerical electric breakdown model of heterogeneous granite for electro-pulse-boring[J]. International Journal of Rock Mechanics and Mining Sciences, 2022, 154: 105128. 8.Zhu X, Chen M, Liu W*, et al. The Fragmentation Mechanism of Heterogeneous Granite by High-Voltage Electrical Pulses[J]. Rock Mechanics and Rock Engineering, 2022, 55: 4351–4372. 9.Zhu X, Luo Y, Liu W*, et al. Rock cutting mechanism of special-shaped PDC cutter in heterogeneous granite formation[J]. Journal of Petroleum Science and Engineering, 2022,210: 110020. 10.Zhu X*, Liu W, Jiang J. Research regarding coal-bed wellbore stability based on a discrete element model[J]. Petroleum Science, 2014, 11(4): 526-531. 11.Zhu X* and Liu W. Research on the effect of drill string impact on wellbore stability. Journal of Petroleum Science and Engineering, 2013, 109: 217-229. 12.Zhu X*, Luo Y, Liu W. On the rock-breaking mechanism of plasma channel drilling technology[J]. Journal of Petroleum Science and Engineering, 2020, 194, 107356. IF=5.1 13.Zhu X, Luo Y*, Liu W. On the Mechanism of High?Voltage Pulsed Fragmentation from Electrical Breakdown Process[J]. Rock Mechanics and Rock Engineering, 2021, 1-24. IF=6.5 14.劉偉吉,張有建,羅云旭,祝效華. 巖石內部高壓電脈沖等離子體通道生成機理研究[J].石油學報,2023,卓越期刊 15.劉偉吉,向暢,譚賓等.局部高溫誘導致裂非均質花崗巖機理研究[J].工程力學,2022,卓越期刊 16.劉偉吉,胡海,祝效華等.圍壓條件下電脈沖破碎干熱巖機理研究[J].天然氣工業,2022,卓越期刊 17.劉偉吉,陽飛龍,董洪鐸等.異形PDC齒混合切削破碎花崗巖特性研究[J].工程力學,2022,卓越期刊 18.劉偉吉,王燕飛,郭天陽,祝效華等.單齒切削破碎非均質花崗巖微宏觀機理研究[J].工程力學,2021,卓越期刊 19.祝效華,劉偉吉. 單齒高頻扭轉沖擊切削的破巖及提速機理研究[J].石油學報,2017,卓越期刊 20.祝效華, 劉偉吉. 旋沖鉆井技術的破巖及提速機理[J].石油學報, 2018,卓越期刊 21.祝效華, 羅云旭, 劉偉吉,等. 等離子體電脈沖鉆井破巖機理的電擊穿實驗與數值模擬方法[J].石油學報, 2020,卓越期刊 部分發明專利: 1.一種基于塑性耗能比的巖石破碎效率評價方法,發明專利(專利技術許可,29.8萬) 2.一種用于電脈沖-機械復合破巖鉆頭的鉆井實驗裝置,發明專利 3.一種用于深部難鉆地層的電脈沖-機械復合破巖鉆頭,發明專利 4.一種用于電脈沖-機械復合破巖鉆頭與鉆具間的電纜連接裝置,發明專利 5.一種熱致裂輔助鉆頭高效破巖鉆井提速系統,發明專利 6.一種基于反饋控制的預擊穿-儲能放電破巖系統,發明專利 7.一種用于電脈沖破巖的磁開關脈沖發生器拓撲結構,發明專利 8.一種釹磁鐵式水力振蕩器,發明專利 9.一種適用于深部硬地層的強動力復合沖擊器,發明專利 10.一種切削破巖實驗裝置及其實驗方法,發明專利 11.一種基于高壓電脈沖液電效應的沖擊提速鉆具,發明專利 12.一種三維井筒系統的提速評價方法,發明專利 13.一種用于減少井壁掉塊導致鉆頭埋鉆發生幾率的方法,發明專利 14.一種安裝于鉆頭內部的三軸振動測量裝置,發明專利 |