[1] 郭建春, 张宇, 曾凡辉, 等. 非常规油气储层智能压裂技术研究进展与展望[J]. 天然气工业, 2024, 44(9): 13-26.
Guo Jianchun, Zhang Yu, Zeng Fanhui, et al. Research progress and prospects of intelligent fracturing technology for unconventional reservoirs[J]. Natural Gas Industry, 2024, 44(9): 13-26.
[2] 李根生, 宋先知, 祝兆鹏, 等. 智能钻完井技术研究进展与前景展望[J]. 石油钻探技术, 2023, 51(4): 35-47.
Li Gensheng, Song Xianzhi, Zhu Zhaopeng, et al. Research progress and the prospect of intelligent drilling and completion technologies[J]. Petroleum Drilling Techniques, 2023, 51(4): 35-47.
[3] 张世昆, 陈作. 人工智能在压裂技术中的应用现状及前景展望[J]. 石油钻探技术, 2023, 51(1): 69-77.
Zhang Shikun, Chen Zuo. Status and prospect of artificial intelligence application in fracturing technology[J]. Petroleum Drilling Techniques, 2023, 51(1): 69-77.
[4] 盛茂, 李根生, 田守嶒, 等. 人工智能在油气压裂增产中的研究现状与展望[J]. 钻采工艺, 2022, 45(4): 1-6.
Sheng Mao, Li Gensheng, Tian Shouceng, et al. Research status and prospect of artificial intelligence in reservoir fracturing stimulation[J]. Drilling & Production Technology, 2022, 45(4): 1-8.
[5] 蒋廷学, 周臖, 廖璐璐. 国内外智能压裂技术现状及发展趋势[J].石油钻探技术, 2022, 50(3): 1-9.
Jiang Tingxue, Zhou Jun, Liao Lulu. Development status and future trends of intelligent fracturing technologies[J]. Petroleum Drilling Techniques, 2022, 50(3): 1-9.
[6] 匡立春, 刘合, 任义丽, 等. 人工智能在石油勘探开发领域的应用现状与发展趋势[J]. 石油勘探与开发, 2021, 48(1): 1-11.
Kuang Lichun, Liu He, Ren Yili, et al. Application and development trend of artificial intelligence in petroleum exploration and development[J]. Petroleum Exploration & Development, 2021,48(1): 1-11.
[7] 杨明澔, 李小波, 刘兴邦, 等. 人工智能大模型在油气勘探开发领域的应用及挑战[J]. 石油科技论坛, 2024, 43(6): 107-113.
Yang Minghao, Li Xiaobo, Liu Xingbang, et al. Application of artificial intelligence pretrained foundation models in exploration and development and challenges in this area[J]. Petroleum Science and Technology Forum, 2024, 43(6): 107-113.
[8] 刘合. 油气勘探开发数字化转型 人工智能应用大势所趋[J]. 石油科技论坛, 2023, 42(3): 1-9.
Liu He. Digital transformation of oil and gas exploration and development; unstoppable artificial intelligence application[J].Petroleum Science and Technology Forum, 2023, 42(3): 1-9.
[9] Guevara J, Zadrozny B, Buoro A, et al. A machine-learning methodology using domain-knowledge constraints for well-data integration and well-production prediction[J]. SPE Reservoir Evaluation & Engineering, 2019, 22(4): 1185-1200.
[10] Lord D L, Shackelford D. Real-time fracturing fluid rheology measurements with the helical screw rheometer[C]. SPE 19734,1989.
[11] Kotlar H K. Use of microbial NDA probes as a potential new tool in oil exploration and characterization[C]. SPE 106418, 2007.
[12] 唐瑞欢. 川渝地区页岩气压裂设备发展新方向[J]. 石油机械,2023, 51 (9): 94-100.
Tang Ruihuan. New development direction of shale gas fracturing equipment in Sichuan-Chongqing Area[J]. China Petroleum Machinery, 2023, 51 (9): 94-100.
[13] 盛茂, 田守嶒, 朱丹丹, 等. 压裂泵注智能决策系统设计理念与路径探讨[J]. 天然气工业, 2024, 44(9): 108-113.
Sheng Mao, Tian Shouceng, Zhu Dandan, et al. Design concept and key technologies of intelligent decision-making system for hydraulic fracturing pumping[J]. Natural Gas Industry, 2024, 44(9):108-113.
[14] 台广锋, 潘社卫, 舒峰, 等. 工厂化压裂连续输砂装置智能控制系统研究[J]. 矿冶, 2015, 24(5): 67-71.
Tai Guangfeng, Pan Shewei, Shu Feng, et al. Study on an intelligent control system of the sand conveyance device for factory fracturing[J]. Mining & Metallurgy, 2015, 24(5): 67-71.
[15] Mingyue Cui, Zhenzhou Yang, Yandong Chen, et al. Case study of fracturing fluid optimization for MHF in a low-permeability gasfield in China[C]. SPE 64773, 2000.
[16] 梁天博, 苏航, 昝晶鸽, 等. 变黏滑溜水性能评价及吉木萨尔页岩油藏矿场应用[J]. 石油科学通报, 2022, 7(2): 185-195.
Liang Tianbo, Su Hang, Zan Jingge, et al. Laboratory evaluation of viscous slickwater and its field application in Jimsar shale oil reservoirs[J]. Petroleum Science Bulletin, 2022, 7(2): 185-195.
[17] 马喜平, 马文杰, 马启睿. TCA温控变粘酸体系的研制与性能评价[J]. 油田化学, 2014, 31(2): 187-190.
Ma Xiping, Ma Wenjie, Ma Qirui. Research and property evaluation of temperature controlling viscosity acid (TCA) [J].Oilfield Chemistry, 2014, 31(2): 187-190.
[18] 崔明月. 压裂暂堵剂需要革命[J]. 石油知识, 2020(2): 12.
Cui Mingyue. Revolutionized to be need of temporary plugging for fracturing[J]. Petroleum Knowledge, 2020(2): 12.
[19] Sho-Wei Lo. Encapsulated breaker release rate at hydrostatic pressure and elevated temperatures[C]. SPE 77744, 2002.
[20] Woo G T. A new micro-emulsion polymer gelling agent with an external surfactant gellant activator improves acid fracturing[C].SPE 53792, 1999.
[21] 王金冉, 武俊文, 殷俊荣, 等. 超分子压裂液: 作用机理及研究进展[J]. 化工进展, 2024, 43(10): 5555-5568.
Wang Jinran, Wu Junwen, Yin Junrong, et al. Supramolecular fracturing fluids: Mechanism of action and research progress[J].Chemical Industry and Engineering Progress, 2024, 43(10): 5555-5568.
[22] 郑新权, 王欣, 杨能宇, 等. 国内石英砂支撑剂评价及砂源本地化研究进展与前景展望[J]. 中国石油勘探, 2021, 26(1): 131-137.
Zheng Xinquan, Wang Xin, Yang Nengyu, et al. Domestic sand proppant evaluation and research progress of sand source localization and its prospects[J]. China Petroleum Exploration,2021, 26(1): 131-137.
[23] 赵立强, 张楠林, 张以明, 等. 自支撑相变压裂技术室内研究与现场应用[J]. 天然气工业, 2020, 40(11): 60-67.
Zhao Liqiang, Zhang Nanlin, Zhang Yiming, et al. Laboratory study and field application of self-propping phase-transition fracturing technology[J]. Natural Gas Industry, 2020, 40(11): 60-67.
[24] 余东合, 陈雨薇, 刘国华, 等. 温度刺激响应超分子相变压裂液的制备与性能评价[J]. 油田化学, 2021, 38(2): 223-228.
Yu Donghe, Chen Yuwei, Liu Guohua, et al. Preparation and performance evaluation of supramolecular phase change fracturing fluid with thermal stimuli-response[J]. Oilfield Chemistry, 2021, 38(2): 223-228.
[25] Hu Jinqiu, Khan F, Zhang Laibin, et al. Data-driven early waring model for screenout scenarios in shale gas fracturing operation[J].Computers & Chemical Engineering, 2020, 143(2): 107116.
[26] Parkhonyuk S, Fedorov A, Kabannik A, et al. Measurements while fracturing: Nonintrusive method of hydraulic fracturing monitoring[C]. SPE 189886, 2018.
[27] Zhu Dawei, Cui Mingyue, Chen Yandong, et al. First successful application of multi-stage proppant fracturing on horizontal well in carbonate reservoirs in Iraq[C]. SPE 205281-MS, 2020.
[28] Cui Mingyue, Ding Yunhong, Zhu Dawei, et al. A case study: The first hydraulically fractured well in carbonate reservoirs in Iraq[C].SPE 191908-MS, 2018. |