| [1] |
刘永旺, 李坤, 管志川, 等. 降低井底岩石抗钻能力的钻速提高方法研究及钻头设计[J]. 石油钻探技术, 2024, 52(3): 11-14.
|
|
[LIU Y W, LI K, GUAN Z C, et al. Research on drilling rate improvement method and bit design for reducing drilling resistance of rock at bottom hole[J]. Petroleum Drilling Techniques, 2024, 52(3): 11-14.]
|
| [2] |
陈钢花, 何宇龙, 邱正松, 等. 钻井过程中井漏特征精细识别方法研究与应用[J]. 石油钻探技术, 2023, 52(1): 1-26.
|
|
[CHEN G H, HE Y L, QIU Z S, et al. Research and application of fine identification methods for lost circulation characteristics during drilling[J]. Oil Drilling & Production Technology, 2023, 52(1): 1-26.]
|
| [3] |
陈宗琦, 刘景涛, 陈修平. 顺北油气田古生界钻井提速技术现状与发展建议[J]. 石油钻探技术, 2023, 51(2): 1-6.
|
|
[CHEN Z Q, LIU J T, CHEN X P. Study and application of precise identification methods for lost circulation characteristics in drilling operations[J]. Oil Drilling & Production Technology, 2023, 51(2): 1-6.]
|
| [4] |
刘长晔, 杨现禹, 蔡记华, 等. 基于机器学习的钻井液流变参数智能识别方法[J]. 煤田地质与勘探, 2024, 52(5): 179-183.
|
|
[LIU C Y, YANG X Y, CAI J H, et al. Machine learning-based intelligent recognition method for drilling fluid rheological parameters[J]. Coal Geology & Exploration, 2024, 52(5): 179-183.]
|
| [5] |
李博志, 杨明合, 许楷, 等. 基于注意力机制的卷积神经网络机械钻速预测方法[J]. 科学技术与工程, 2024, 24(21): 8910-8916.
|
|
[LI B Z, YANG M H, XU K, et al. Convolutional neural network prediction method of ROP based on attention mechanism[J]. Science Technology and Engineering, 2024, 24(21): 8910-8916.]
|
| [6] |
张继军. 钻井时效随钻统计分析系统研发与应用[J]. 录井工程, 2018, 29(03): 82-87.
|
|
[ZHANG J J. Research and application of statistical analysis system of drilling time while drilling[J]. Mud Logging Engineering, 2018, 29(03): 82-87.]
|
| [7] |
张海军, 张高峰, 王国娜, 等. 基于遗传算法优化随机森林模型的机械钻速分类预测方法[J]. 科学技术与工程, 2022, 22(35): 15572-15578.
|
|
[ZHANG H J, ZHANG G F, WANG G N, et al. Mechanical penetration rate classification prediction method based on genetic algorithm optimization random forest model[J]. Science Technology and Engineering, 2022, 22(35): 15572-15578.]
|
| [8] |
娄文强, 王志远, 孙大林, 等. 基于压力-速度解耦的深水井筒多相流高精度数值模拟新算法[J]. 天然气工业, 2024, 44(2): 132-144.
|
|
[LOU W Q, WANG Z Y, SUN D L, et al. A novel high-accuracy numerical algorithm for multiphase flow in deepwater wellbores based on pressure-velocity decoupling[J]. Natural Gas Industry, 2024, 44(2): 132-144.]
|
| [9] |
高凯歌, 赵超杰, 闫柯乐, 等. 气井钻井四通材料冲蚀行为研究及性能优选[J]. 断块油气田, 2025, 32(1): 165-169.
|
|
[GAO K G, ZHAO C J, YAN K L, et al. Erosion behavior study and material optimization of Christmas tree for gas well drilling[J]. Fault-Block Oil and Gas Field, 2025, 32(1): 165-169.]
|
| [10] |
杨进, 李磊, 宋宇, 等. 中国海洋油气钻井技术发展现状及展望[J]. 石油学报, 2023, 44(12): 2308-2318.
doi: 10.7623/syxb202312019
|
|
[YANG J, LI L, SONG Y, et al. Development status and prospect of offshore oil and gas drilling technology in China[J]. Acta Petrolei Sinica, 2023, 44(12): 2308-2318.]
|
| [11] |
范宇, 郭建华, 马勇, 等. 基于提高液相渗入能力的钻井提速技术研究及应用[J]. 钻采工艺, 2023, 46(4): 7-12.
|
|
[FAN Y, GUO J H, MA Y, et al. Research and application of drilling acceleration technology based on enhanced liquid phase infiltration capacity[J]. Drilling & production technology, 2023, 46(4): 7-12.]
|
| [12] |
孙宝江, 王春生, 辛桂振, 等. 复杂压力体系地层钻探溢流压井技术研究[J]. 钻采工艺, 2024, 47(4): 42-50.
|
|
[SUN B J, WANG C S, XIN G Z, et al. Research on drilling overflow killing technique in complex pressure system formation[J]. Drilling & Production Technology, 2024, 47(4): 42-50.]
|
| [13] |
毛光黔, 宋先知, 丁燕, 等. 基于梯度提升决策树算法的钻井工况识别方法[J]. 石油钻采工艺, 2023, 45(5): 532-539.
|
|
[MAO G Q, SONG X Z, DING Y, et al. Drilling condition identification method based on gradient boosting decision tree algorithm[J]. Oil Drilling & Production Technology, 2023, 45(5): 532-539.]
|
| [14] |
谢棋军, 底青云, 杨永友, 等. 旋转导向系统中非接触电能与信号一体化传输技术[J]. 地球物理学报, 2023, 66(1): 101-110.
|
|
[XIE Q J, DI Q Y, YANG Y Y, et al. Integrated non-contact power and signal transmission technology for rotary steering systems[J]. Chinese Journal of Geophysics, 2023, 66(1): 101-110.]
|
| [15] |
张文平, 王怡, 臧艳彬, 等. 复兴区块陆相页岩油水平井降摩减阻技术[J]. 断块油气田, 2024, 31(3): 409-414.
|
|
[ZHANG W P, WANG YI, ZANG Y B, et al. Friction and drag reduction technology for horizontal wells in continental shale oil of the Fuxing Block[J]. Fault-Block Oil and Gas Field, 2024, 31(3): 409-414.]
|
| [16] |
贺立勤, 王军, 简旭, 等. 铁山坡高含硫气藏安全快速钻井技术优化与应用[J]. 钻采工艺, 2024, 47(3): 49-57.
doi: 10.3969/J.ISSN.1006-768X.2024.03.07
|
|
[HE L Q, WANG J, JIAN X, et al. Optimization and application of safe and high-speed drilling technologies for high-sulfur gas reservoirs in Tieshanpo Area[J]. Drilling & production technology, 2024, 47(3): 49-57.]
|
| [17] |
霍晗勇, 王鑫, 李晶晶, 等. 井控快速偏移成像技术在地震导向钻井中的应用[J]. 石油物探, 2023, 62(S01): 95-104.
|
|
[HUO H Y, WANG X, LI J J, et al. Application of well-control fast migration imaging technology in seismic-guided drilling[J]. Geophysical Prospecting for Petroleum, 2023, 62(S01): 95-104.]
|
| [18] |
李根生, 宋先知, 田守嶒. 智能钻井技术研究现状及发展趋势[J]. 石油钻探技术, 2020, 48(1): 1-8.
|
|
[LI G S, SONG X Z, TIAN S Z. Research status and development trend of intelligent drilling technology[J]. Petroleum Drilling Techniques, 2020, 48(1): 1-8.]
|
| [19] |
张伟国, 蒋昆, 宋宇, 等. 基于机器学习和贝叶斯优化的大位移井钻井提速方法[J]. 石油钻探技术, 2025, 53(2): 32-38.
|
|
[ZHANG W G, JIANG K, SONG YU, et al. Machine learning and Bayesian optimization-based approach for rate of penetration enhancement in extended-reach drilling[J]. Petroleum Drilling Techniques, 2025, 53(2): 32-38.]
|
| [20] |
何淼, 陈欢, 张党生, 等. 基于深度自编码器的钻井工况智能识别研究[J]. 长江大学学报(自然科学版), 2023, 20(3): 84-93.
|
|
[HE M, CHEN H, ZHANG D S, et al. Intelligent identification of drilling conditions based on deep autoencoder[J]. Journal of Yangtze University (Natural Science Edition), 2023, 20(3): 84-93.]
|
| [21] |
刘永旺, 李坤, 管志川, 等. 差压步进钻头提高破岩速度原理及现场试验[J]. 中国石油大学学报(自然科学版), 2024, 48(4): 101-108.
|
|
[LIU Y W, LI K, GUAN Z C, et al. Mechanism and field testing of differential pressure stepping bit for enhancing rock breaking efficiency[J]. Journal of China University of Petroleum (Edition of Natural Science), 2024, 48(4): 101-108.]
|
| [22] |
HARELAND G, HALSEY G, LESSO G. Real-time drilling performance optimization using automated decision support systems[J]. SPE Drilling & Completion, 2021, 36(2): 145-152.
|
| [23] |
SCHUBERT J, WENZEL M, POETTMANN M. Machine learning applications for drilling KPI prediction in shale gas horizontal wells[J]. Journal of Petroleum Science and Engineering, 2022, 216: 110523.
|
| [24] |
AHMED R, BAYRAKTAR H, GRAY K. Enhanced rate of penetration through mechanical specific energy analysis and real-time parameter adjustment[J]. Journal of Natural Gas Science and Engineering, 2023, 114: 105789.
|
| [25] |
SUI L, LIU G, YUAN C. A comparative study on drilling efficiency improvement techniques in deepwater fields[J]. Petroleum Science, 2024, 21(1): 289-304.
|
| [26] |
唐得勇. 石油钻井工艺技术现状与发展探讨[J]. 西部探矿工程, 2022, 34(7): 49-51.
|
|
[TANG D Y. The present situation and development of petroleum drilling technology[J]. West-China Exploration Engineering, 2022, 34(7): 49-51.]
|
| [27] |
曹华庆, 燕建成, 龙志平. 川东南页岩气井岩溶浅表层安全高效钻井技术[J]. 石油钻探技术, 2023, 51(2): 22-28.
|
|
[CAO H Q, YAN J C, LONG Z P. Safe and efficient drilling technologies for karst shallow formations in shale gas wells, southeastern Sichuan Basin[J]. Petroleum Drilling Techniques, 2023, 51(2): 22-28.]
|
| [28] |
杨智光, 潘荣山, 苑晓静, 等. 古龙页岩油开发试验钻井设计优化与实践[J]. 大庆石油地质与开发, 2024, 43(4): 181-190.
|
|
[YANG Z G, PAN R S, YUAN X J, et al. Design optimization and field practice of pilot drilling for Gulong shale oil development[J]. Petroleum Geology & Oilfield Development in Daqing, 2024, 43(4): 181-190.]
|
| [29] |
喻著成, 许期聪, 邱儒义, 等. 随钻声波井下全景成像技术现状及展望[J]. 钻采工艺, 2023, 46(3): 171-175.
|
|
[YU Z C, XU Q C, QIU R Y, et al. Present situation and prospect of downhole panoramic imaging technology of acoustic wave while drilling[J]. Drilling & Production Technology, 2023, 46(3): 171-175.]
|
| [30] |
李涛, 杨哲, 徐卫强, 等. 泸州区块深层页岩气水平井优快钻井技术[J]. 石油钻探技术, 2023, 51(1): 1-6.
|
|
[LI T, YANG Z, XU W Q, et al. Optimized and fast-drilling technologies for deep shale gas horizontal wells in Luzhou Block[J]. Petroleum Drilling Techniques, 2023, 51(1): 1-6.]
|
| [31] |
周长所, 杨进, 幸雪松, 等. 基于机械比能理论的渤海深层钻井参数优化[J]. 石油钻采工艺, 2021(006): 043-047.
|
|
[ZHOU C S, YANG J, XING X S, et al. Optimization of deep drilling parameters in Bohai Sea based on mechanical specific energy theory[J]. Oil Drilling & Production Technology, 2021(006): 043-047.]
|
| [32] |
CHEN F, GAO J, FENG Y, et al. Optimizing the wellbore trajectory of directional wells considering wellbore stability subjected to the non-independence and uncertainty of geomechanical parameters[J]. Geoenergy Science and Engineering, 2024, 241: 213085.
doi: 10.1016/j.geoen.2024.213085
URL
|
| [33] |
钱浩东, 张治文, 王鹏. 基于工程地质一体化数据库的钻头优选应用与实践[J]. 钻采工艺, 2021, 44(4): 15-18.
doi: 10.3969/J. ISSN.1006-768X.2021.04.04
|
|
[QIAN H D, ZHANG Z W, WANG P. Application and practice of drill bit optimization based on integrated database of engineering geology[J]. Drilling & Production Technology, 2021, 44(4): 15-18.]
|
| [34] |
李琪, 屈峰涛, 何璟彬, 等. 基于PSO-BP的钻井机械钻速预测模型[J]. 科学技术与工程, 2021, 21(19): 7984-7990.
|
|
[LI Q, QU F T, HE J B, et al. Drilling machine penetration rate prediction model based on PSO-BP[J]. Science Technology and Engineering, 2021, 21(19): 7984-7990.]
|
| [35] |
刘世彬. 固井无线监测与智能决策系统开发与应用[J]. 钻采工艺, 2023, 46(6): 41-46.
doi: 10.3969/J.ISSN.1006-768X.2023.06.07
|
|
[LIU S B. Development and application of wireless monitoring and intelligent decision making system for cementing[J]. Drilling & Production Technology, 2023, 46(6): 41-46.]
|