当前位置: 油气井工程研究所
闫传梁
作者: 发布者:赵小明 发布时间:2024-05-30 访问次数:20432

职称:教授、博导

单位:油气井工程研究所

最高学历/学位:博士

学科:油气井工程学科,石油与天然气工程

所学专业:油气井工程

电子邮箱:yanchuanliang@163.com

联系电话:+86 18863968986

地址邮编:青岛市黄岛区长江西路66号石油工程学院油气井工程研究所,266580

  • 个人主页
  • 学习与工作经历
    2005-2009 中国石油大学(华东) 石油工程 本科
    2009-2014 中国石油大学(北京) 油气井工程 博士
    2014-至今 中国石油大学(华东) 石油工程学院 讲师、副教授、教授
    2018-至今 中国石油大学(华东) 油气井工程研究所副所长
  • 研究方向
    1、天然气水合物开发
    2、石油工程岩石力学
    3、井壁稳定
    4、钻井工程大数据应用
    5、水力压裂增产改造
  • 招生方向
  • 主讲课程
    本科生:《岩石力学》、《钻井地质环境描述》
    研究生:《石油工程岩石力学》》、《Advanced Rock Mechanics》
  • 学术兼职
    1、国家自然科学基金项目评议人
    2、《Petroleum Science》青年编委(SCI期刊)
    3、《中南大学学报(自然科学版)》青年编委(EI期刊)
    4、《Applied Energy》、《SPE Journal》、《Journal of Petroleum Science and Engineering》、《Journal of Natural Gas Science and Engineering》、《International Journal of Heat and Mass Transfer》、《Engineering Computations》、《Clays and Clay Minerals》、《Journal of Dispersion Science and Technology》、《Process Safety and Environmental Protection》、《Geomechanics for Energy and the Environment》、《Environmental Earth Sciences》、《Journal of geophysics and engineering》、《Marine Georesources & Geotechnology》、《Arabian Journal of Geosciences》、《Energy Science & Engineering》、《Chinese Journal of Chemical Engineering》、《Petroleum Sciense》、《石油勘探与开发》、《中国石油大学学报(自然科学版)》、《中国海洋大学学报(英文版)》、《中南大学学报(英文版)》、《中国科学: 物理学 力学 天文学》等二十余个SCI/EI期刊的论文审稿人。
  • 指导研究生
    硕士
    2017级:李阳
    2018级:任旭、田万顷
    2019级:李振琦、姜传祥
    2020级:陈勇、董磊峰
    2021级:杨瀚林、单祥福、邓悦
    2022级:张振、张朋辉
    2023级:秦勇、陈志友
    2024级:冯傲、陈家傲、杨自凯


    博士
    2019级:李阳
    2021级:陈勇
    2022级:周广旭、张喆
    2023级:赵珠宇
    2024级:张凯程、陈恒


    欢迎有志于非常规油气开发和石油工程岩石力学研究的同学报考硕士和博士研究生!

  • 承担科研课题
    (1) 基于井筒-地层耦合的天然气水合物储层水平井井眼失稳机制研究,国家自然科学基金面上项目,2020.1-2023.12,负责人
    (2) 二氧化碳置换法开采天然气水合物过程中储层出砂机制研究,国家自然科学基金青年项目, 2018.1-2020.12,负责人
    (3) 泥质粉砂水合物储层泥砂运移规律研究,国家重点研发计划子课题,2023.12-2026.12,负责人
    (4) 天然气水合物开发储层稳定性研究,山东省高等学校青年创新团队项目,2022.12-2025.12,负责人
    (5) 考虑应力损伤的硬脆性泥页岩井壁稳定评价技术研究,山东省重点研发计划项目,2019.1-2020.12,负责人
    (6) 海洋水合物钻完井及安全监测技术,国家重点研发计划课题, 2016.7-2020.12,任务负责人
    (7) 天然气水合物开发储层失稳机制及控制技术研究,青岛海洋科学与技术国家实验室开放基金,2017.4-2020.3,负责人
    (8) 天然气水合物开采出砂机理研究,山东省自然科学基金,2017.8-2019.12,负责人
    (9) 天然气水合物井壁蠕变失稳机制研究,中石油重大科技项目子任务,2019-2023,负责人
    (10) 低温钻井液体系作用下海洋水合物储层井壁稳定性评价及耦合作用机制,天然气水合物国家重点实验室开放基金,2022.12-2024.12,负责人
    (11) 稠油热采储层压缩系数温度影响规律研究,海洋石油高效开发国家重点实验室开放基金,2015/12-2017/12,负责人
    (12) 页岩气水平井井壁稳定性研究,青岛市科技计划项目,2015/09-2017/09,负责人
    (13) 井筒压力波动对页岩井壁稳定影响研究,中央高校自主创新科研项目,2015.1-2016.12,负责人
    (14) 深水钻井井壁稳定技术研究,中国石油大学(华东)人才引进项目,2015/01-2016/12,负责人
    (15) 深水钻井浅层水合物地质风险研究,973子课题,2015.1-2019.12,参与
    (16) 液氮辅助页岩体积压裂增效机理研究,国家自然科学基金, 2016/01-2019/12,参与
    (17) 深冷低温冲击作用下泥页岩脆性演化机制研究,国家自然科学基金, 2016/01-2018/12,参与
    (18) 致密储层水平井定面射孔水力压裂裂缝起裂与扩展机理,国家自然科学基金,2018.1-2020.12,参与
    (19) 基于多源信息的实时井筒压力预测及井下状况识别方法,国家自然科学基金,2018.1-2020.12,参与
    (20) 泥页岩井壁坍塌的力学化学耦合研究,国家自然科学基金,2012.01~2014.06,参与
    (21) 深水地层压力预测及井壁稳定性技术研究,国家科技重大专项,2011.08~2014.06,参与
    (22) 复杂结构井井壁不稳定性评估与控制技术,国家科技重大专项,2011.08~2014.06,参与
    (23) 深水巨厚盐层多维综合蠕变规律和套管挤毁风险评估研究,中海油研究总院,2022-2025,负责人
    (24) 人造盐岩岩芯制造和蠕变速率测试,中海油研究总院,2022-2023,负责人
    (25) 渗流条件下分支井井壁稳定技术研究,胜利油田钻井院,2021-2022,负责人
    (26) 岩石力学测试分析,中石化江汉油田分公司,2022-2025,负责人
  • 获奖情况
    (1) 2024,山东省科技进步二等奖,排名第1
    (2) 2023,青岛市科技进步一等奖,排名第2
    (3) 2023,海洋工程科技进步二等奖,排名第2
    (4) 2022,中国商业联合会一等奖,排名第1
    (5) 2022,中国石油和化学工业联合会科技进步二等奖,排名第3
    (6) 2022,中国岩石力学学会深层岩石力学专业委员会年度最佳科技进展,排名第1



  • 荣誉称号
    2023年 中国石油大学(华东)优秀本科毕业设计指导教师
    2021年 中国石油大学(华东)优秀硕士学位论文指导教师
    2018年 中国石油大学(华东)优秀本科毕业设计指导教师
    2017年 全国大学生石油科技创新创业大赛优秀指导教师
    2016年 青岛市西海岸新区高层次紧缺人才
    2014年 中国石油大学(北京)优秀毕业生
  • 著作
    [1] 复杂地层井壁稳定评价新技术,中国石化出版社,2018,1/2;
    [2] 复杂油气储层地质力学关键问题,中国原子能出版社,2023,2/2
  • 论文
    共发表论文100余篇,其中以第1作者或通讯作者发表SCI/EI检索论文40余篇。部分论文如下:
    [1] Yan Chuanliang*, Chen Yong, Tian Wanqing, Cheng Yuanfang, Li Yang. Effects of methane-carbon dioxide replacement on the mechanical properties of natural gas hydrate reservoirs. Journal of Cleaner Production, 2022, 354: 131703 (SCI一区,IF=11.07)
    [2] Yan Chuanliang, Dong Leifeng, Ren Xu, et al. Stability of submarine slopes during replacement of methane in natural gas hydrates with carbon dioxide[J]. Journal of Cleaner Production, 2023, 383: 135440. (SCI一区,IF=11.07)
    [3] Yan Chuanliang, Li Yang*, Cheng Yuanfang, Wei Jia, Tian Wanqing, Li Shuxia, Wang Zhiyuan. Multifield coupling mechanism in formations around a wellbore during the exploitation of methane hydrate with CO2 replacement. Energy, 2022, 245, 123283. (SCI一区,IF=8.86)
    [4] Yan Chuanliang, Dong Leifeng, Zhao Kai*, Cheng Yuanfang, Li Xiaorong, Deng Jingen, Chen Yong. Time-dependent borehole stability in hard-brittle shale. Petroleum Science, 2022, 19(2): 663-677. (SCI一区)
    [5] Yan Chuanliang*, Ren Xu, Cheng Yuanfang*, Song Benjian, Li Yang, Tian Wanqing. Geomechanical issues in the exploitation of natural gas hydrate. Gondwana Research. 2020, 81: 403-422. (SCI一区,ESI高被引论文)
    [6] Yan Chuanliang*, Chen Yong, Chen Tianqing, Cheng Yuanfang, Yan, Xinjiang. Experimental Study of Hydraulic Fracturing for Unconsolidated Reservoirs. Rock Mechanics and Rock Engineering, 2022, 55(6): 3399-3424.. (SCI二区)
    [7] Yan Chuanliang, Ren Xu, Cheng Yuanfang, et al. Experimental Study on the Hydraulic Fracturing of Radial Horizontal Wells, Geomechanics and Engineering 2019(6): 535-541(SCI三区, IF=2.59)
    [8] Yan Chuanliang, Li Yang, Yan Xinjiang, et al. Wellbore shrinkage during drilling in methane hydrate reservoirs. Energy Science & Engineering, 2019, 7, 930-942. (SCI三区, IF=2.89)
    [9] Yan Chuanliang, Li Yang, Cheng Yuanfang, Wang Wei, Song Benjian, Deng Fucheng, Feng Yongcun. Sand production evaluation during gas production from natural gas hydrates. Journal of Natural Gas Science and Engineering, 2018, 57, 77-88. (SCI二区, IF=3.86).
    [10] Yan Chuanliang, Deng Jingen, Cheng Yuanfang, et al. Mechanical Properties of Gas Shale During Drilling Operations. Rock Mechanics and Rock Engineering, 2017, 50(7): 1753-1765. (SCI二区Top, IF=2.82)
    [11] Chuanliang Yan, Jingen Deng, Baohua Yu, Wenliang Li, Zijian Chen, Lianbo Hu, Yang Li. Borehole Stability in High-Temperature Formations. Rock Mechanics and Rock Engineering, 2014, 47(6): 2199-2209, (SCI三区, IF=2.42).
    [12] Yan Chuanliang, Cheng Yuanfang, Li Menglai, et al. Mechanical experiments and constitutive model of natural gas hydrate reservoirs. International Journal of Hydrogen Energy, 2017, 42(31): 19810-19818. (SCI二区Top, IF=4.23)
    [13] Yan Chuanliang, Deng Jingen, Cheng Yuanfang, et al. Rock mechanics and wellbore stability in Dongfang 1-1 Gas Field in South China Sea. Geomechanics and Engineering, 2017, 12(3): 465-481. (SCI四区, IF=1.82)
    [14] Yan Chuanliang, Cheng Yuanfang, Deng Fucheng, Tian Ji. Permeability Change Caused by Stress Damage of Gas Shale. Energies, 2017, 10(9): 1350. (SCI三区, IF=2.68)
    [15] Chuanliang Yan, Jingen Deng, Xiangdong Lai, Xiaorong Li, Yongcun Feng. Borehole Stability Analysis in Deepwater Shallow Sediments. Journal of Energy Resources Technology 2015,137(1):1-7, (SCI三区, IF=1.34)
    [16] Chuanliang Yan, Jingen Deng, Lianbo Hu, Zijian Chen, Xinjiang Yan, Hai Lin, Qiang Tan, Baohua Yu. Brittle failure of shale under uniaxial compression. Arabian Journal of Geosciences, 2015, 8(5): 2467-2475, (SCI四区, IF=1.22)
    [17] Chuanliang Yan, Jingen Deng, and Baohua Yu. Wellbore Stability in Oil and Gas Drilling with Chemical-Mechanical Coupling, Scientific World Journal, 2013: 1-9, (SCI三区, IF=1.22)
    [18] Yan Chuanliang, Deng Jingen, Yu Baohua, Liu Hailong, Deng Fucheng, Chen Zijian, Hu Lianbo, Zhu Haiyan, Han Qin. Wellbore stability analysis and its application in Fergana Basin, central Asia. Journal of Geophysics and Engineering, 2014, 11(1): 1-9, (SCI四区, IF=0.78)
    [19] Chuanliang Yan, Jingen Deng, Lianbo Hu, and Baohua Yu. Fracturing Pressure of Shallow Sediment in Deep Water Drilling. Mathematical Problems in Engineering. 2013: 1-8, (SCI四区, IF=1.082).
    [20] Chuanliang Yan, Yuanfang Cheng, Ji Tian, Guojin Zhu, Zhongchao Yuan, Yuwen Liu, Fucheng Deng. The influence of steam stimulation on compression coefficient of heavy oil reservoirs. Journal of Petroleum Exploration and Production Technology, 2018, 8(4): 1287-1294.(EI).
    [21] Yan Chuanliang, Deng Jingen, Liu Shujie, Su Xiaofei, Fan Baitao. In-situ Stress and Wellbore Stability of Bohai Oilfield in China. Electronic Journal of Geotechnical Engineering. 2013, 18(M): 2575-2594, (EI).
    [22] Yan Chuanliang, Deng Jingen, Yu Baohua, Li Jinxiang. Rock mechanical characteristic and Wellbore Stability in Kingfisher Oilfield of Uganda. Proceedings of Oil Gas Scientific Research Project. 2013(3): 25-31, (EI).
    [23] ChuanliangYan, Jin’gen Deng, BaohuaYu & Zijian Chen, Xiaorong Li. Fracture modes of horizontal wells. “The 3rd ISRM Symposium on “Rock Modelling and Engineering Design Method”, June, 2013, (EI).
    [24] Yan Chuanliang, Deng Jingen, Lai Xiangdong, Hu Lianbo, Chen Zijian. Critical Drawdown Pressure of Depleted Reservoir. Indian Geotechnical Journal, 2014, 44(1): 101-106, (EI).
    [25] Yan Chuanliang, Deng Jin’gen, Xiao Kun, Deng Fucheng, Chen Zijian, Li Yang. Strength of hard brittle shale. National doctoral forum proceedings, 2013.5,Beijing,154-159.
    [26] Yan Chuanliang, Cheng Yuanfang, Deng Fucheng, Feng Yongcun, Ding Jiping Wang Guihu. Characteristics of Stress Damage and Seepage of Shale during Drilling. 2017 ISRM Young Scholars’ Symposium on Rock Mechanics, May, 19-21, 2017, Jeju Island, Korea.
    [27] Yan Chuanliang, Li Yang, Wang We, Tian Ji, Zhu Guojin, Deng Fucheng. Experimental Research on Compressive Coefficient of Heavy Oil Reservoir in Bohai Bay Oilfield. International Field Exploration and Development Conference 2017, September, 21-22, 2017, Chengdu, China.
    [28] Yang Li, Yuanfang Cheng, Chuanliang Yan*, Mingyu Xue, Chengcheng Niu, Yongde Gao, Tianqiang Wang. Simulating the Effect of Frozen Soil Thaw on Wellhead Stability during Oil and Gas Drilling Operations in Arctic Waters. Journal of Cold Regions Engineering, 2020, 34(4): 04020026
    [29] Li Yang, Cheng Yuanfang, Yan Chuanliang*, Wang Zhiyuan, Song Lifang. Effects of creep characteristics of natural gas hydrate-bearing sediments on wellbore stability. Petroleum Science, 2022,19(1)220-233. (SCI一区)
    [30] Ding Jiping, Cheng Yuanfang, Yan Chuanliang*, Lu Cheng, Li Yang, Xue Mingyu. Numerical simulation on sand production in the exploitation process of gas hydrates based on skeleton failure of reservoirs, Journal of Natural Gas Science and Engineering, 2021, 104052. (SCI二区).
    [31] Yang Li, Yuanfang Cheng*, Chuanliang Yan*, Lifang Song, Hailong Liu, Wanqing Tian, Xu Ren. Mechanical study on the wellbore stability of horizontal wells in natural gas hydrate reservoirs. Journal of Natural Gas Science and Engineering, 2020, 79: 103359
    [32] Yang Li, Yuanfang Cheng*, Chuanliang Yan*, Lifang Song, Xiaohui Zhou, Chengcheng Niu. Influence of drilling fluid temperature on borehole shrinkage during drilling operation in cold regions. Journal of Petroleum Science and Engineering, 2020, 190: 107050
    [33] Benjian Song, Yuanfang Cheng, Chuanliang Yan*, et al. Influences of hydrate decomposition on submarine landslide. Landslides, 2019. (SCI二区TOP, IF=4.25).
    [34] Wei, J., Cheng, Y. *, Yan, C.*, Li, Q., Zou, D., & Zhang, H. (2019). Drilling parameter optimizing strategies to prevent hydrate decomposition risks. Applied Thermal Engineering, 146, 405-412. (SCI二区TOP, IF=4.03).
    [35] Wei, J., Cheng, Y. *, Yan, C.*, et al. Decomposition prevention through thermal sensitivity of hydrate formations around wellbore. Applied Thermal Engineering, 2019: 113921. (SCI二区TOP, IF=4.03)
    [36] Benjian Song, Yuanfang Cheng, Chuanliang Yan*, Yahui Lyu, Jia Wei, Jiping Ding, Yang Li. Seafloor subsidence response and submarine slope stability evaluation in response to hydrate dissociation, Journal of Natural Gas Science and Engineering, 2019. (SCI三区, IF=3.86).
    [37] Baohua Yu, Chuanliang Yan*, and Zhen Nie. Chemical Effect on Wellbore Instability of Nahr Umr Shale. Scientific World Journal 2013:1-7, (SCI三区, IF=1.22).
    [38] Deng Fucheng*, Feng Yongcun*, Yan Chuanliang*, et al. Experimental investigation of factors affecting gravel pack efficiency for thermal recovery wells in Bohai Bay, China. Journal of Petroleum Science and Engineering, 2017, 156: 835-844. (SCI三区, IF=2.38).
    [39] Zhao K, Li X, Yan C, et al. A New Approach To Evaluate Fault-Sliding Potential With Reservoir Depletion[J]. SPE Journal, 2019. (SCI三区Top, IF=2.55).
    [40] Huaiwen Zhang, Yuanfang Cheng*, Jihui Shi, Lingdong Li, Menglai Li, Xiuting Han, ChuanliangYan*. Experimental study of water-based drilling fluid disturbance on natural gas hydrate-bearing sediments. Journal of Natural Gas Science and Engineering, 2017, 47: 1-10. (SCI三区, IF=2.72)
    [41] Wei, Jianguang, Yan Chuanliang*. Stability of Horizontal Coalbed Well. Electronic Journal of Geotechnical Engineering, 2015, 20(4): 1285-1294, (EI).
    [42] Yu Baohua, Yan Chuanliang*, Deng Jingen. Rock Mechanical Properties and Borehole Stability of Gas Shale. Scientific Bulletin of National Mining University, 2014,1, (EI).
    [43] Yu Baohua, Yan Chuanliang*, Tan Qiang, Deng Jingen, Guan Shen. Wellbore Stability in High Temperature and Highly-depleted Reservoir. Electronic Journal of Geotechnical Engineering. 2013, 18(E): 909-922, (EI).
    [44] Gao Q, Cheng Y, Yan C, et al. Initiation Pressure and Corresponding Initiation Mode of Drilling Induced Fracture in Pressure Depleted Reservoir[J]. Journal of Energy Resources Technology, 2019, 141(1): 012901. (SCI三区)
    [45] Gao, Q., Cheng, Y., Han, S., Yan, C., Jiang, L. Numerical modeling of hydraulic fracture propagation behaviors influenced by pre-existing injection and production wells. Journal of Petroleum Science and Engineering, 2019, 172, 976-987. (SCI三区, IF=2.38)
    [46] Han, S., Cheng, Y., Gao, Q., Yan, C., & Han, Z. Experimental study of the effect of liquid nitrogen pretreatment on shale fracability. Journal of Natural Gas Science and Engineering, 2018. 60, 11-23.
    [47] Wei Jianguang, Yan Chuanliang. Borehole stability analysis in oil and gas drilling in undrained condition. Geomechanics and Engineering, 2014, 7(5): 553-567, (SCI四区, IF=0.60).
    [48] Baohua Yu, Chuanliang Yan, Deli Gao, and Jinxiang Li. A Study on Borehole Stability of the Shale in Extended-reach Drilling. Computer Modeling in Engineering & Sicence, 2012, 89(1):57-78, (SCI四区, IF=0.72).
    [49] Wei Jianguang, Yan Chuanliang. Sand production prediction in pressure depleted reservoirs. Scientific Bulletin of National Mining University. 2015, 1: 49, (EI).
    [50] Yu Wang, Baolin Liu., Haiyan Zhu., Chuanliang Yan, Zhijun Li, Zhiqiao Wang. Thermophysical and mechanical properties of granite and its effects on borehole stability in high temperature and three-dimensional stress. The Scientific World Journal, 2014: 1-13. (SCI三区, IF=1.73)
    [51] Huaiwen Zhang, Yuanfang Cheng, Qingchao Li, Chuanliang Yan, Xiuting Han. Numerical analysis of wellbore instability in gas hydrate formation during deep-water drilling. Journal of Ocean University of China, 2018, 17(1): 8-16. (SCI四区, IF=0.6)
    [52] Qingchao Li, Yuanfang Cheng, Huaiwen Zhang, Chuanliang Yan, Yuwen Liu. Simulating the effect of hydrate dissociation on wellhead stability during oil and gas development in deepwater. Journal of Ocean University of China, 2018, 17(1): 35-45. (SCI四区, IF=0.6)
    [53] Lianbo Hu, JingenDeng, Fucheng Deng, Hai Lin, Chuanliang Yan, Yang Li. Calculation of collapse pressure in shale gas formation and the influence of formation anisotropy. Proceedings of Oil Gas Scientific Research Project. 2013(4): 47-53, (EI).
    [54] Chen Zijian, Deng Jingen, Yu Baohua, Yan Chuanliang. Pore pressure prediction in the Dongfang 1-1 gas field, Yinggehai basin. Scientific Bulletin of National Mining University, 2014 (2): 11-16. (EI)
    [55] Hu, Lianbo, Deng, Jingen, Zhu, Haiyan, Lin, Hai, Chen, Zijian, Deng, Fucheng, Yan, Chuanliang. A new pore pressure prediction method-back propagation artificial neural network. Electronic Journal of Geotechnical Engineering, v 18 S, p 4093-4107, 2013. (EI)
    [56] Sun, Qinghua; Deng, Jingen; Hu, Lianbo; Liu, Hailong; Yan, Chuanliang. Wellbore stability analysis of elastic-plastic damage considering the effect of seepage. Electronic Journal of Geotechnical Engineering, v 18 S, p 4119-4130, 2013. (EI)
    [57] 闫传梁, 陈勇, 任旭, 等. CO_ (2) 改造水合物藏海底边坡稳定性研究[J]. 中南大学学报: 自然科学版, 2022, 53(3): 1082-1094. (EI)
    [58] 闫传梁, 邓金根, 蔚宝华, 谭强, 邓福成, 朱海燕, 胡连波, 陈子剑. 页岩气储层井壁坍塌压力研究. 岩石力学与工程学报, 2013,32(8): 1595-1602, (EI)
    [59] 闫传梁, 谢玉洪, 邓金根, 蔚宝华, 朱海燕. 安全钻井液密度上限确定方法研究. 天然气工业, 2013,33(6): 80-85, (EI)
    [60] 闫传梁, 邓金根, 蔚宝华, 谭强, 邓福成, 胡连波. 压力衰竭储层井壁稳定变化规律研究. 石油钻采工艺, 2013,36(3) 36(3):5-8, (中文核心).
    [61] 闫传梁, 邓金根, 蔚宝华, 刘书杰, 谭强, 李文良. 深水油气田控制井眼缩径的钻井液密度研究. 科学技术与工程, 2013,(7): 1745-1748, (中文核心).
    [62] 闫传梁, 程远方, 袁忠超, 等. 高温高压岩石压缩系数实验装置研制[J]. 实验技术与管理, 2017, 34(7): 99-102,核心.
    [63] 蔚宝华; 闫传梁; 邓金根; 刘书杰; 谭强; 肖坤. 深水钻井井壁稳定性评估技术及其应用. 石油钻采工艺, 2011, 34(6):1-4,中文核心.
    [64] 蔚宝华; 闫传梁; 邓金根; 周建良; 刘书杰; 邢希金; 谭强. 深水钻井安全钻井液密度窗口计算模型的建立与应用——以西非AKPO深水油田为例. 中国海上油气, 2012, 24(2):58-60,中文核心.
    [65] 蔚宝华; 闫传梁; 邓金根; 刘书杰; 谭强; 朱海燕. 锦州25-1油田井壁稳定研究. 科技导报, 2013, 31(14):41-45,中文核心.
    [66] 谭强, 蔚宝华, 邓金根, 等. 深水油气田钻井安全密度窗口计算方法[J]. 石油天然气学报, 2012, 34(10): 98-100.
  • 专利
    (1) 闫传梁; 李晓蓉; 任旭; 程远方; 韩忠英; 李阳; 魏佳; 宋本健; 田万顷 ; 水和物の微小坑井を掘削しかつ迅速に坑井仕上げを行うための装置および作業方法, 2022-1-13, 日本, 发明专利号:特愿2021-544237
    (2) Yan Chuianliang; Ren Xu; Cheng Yuanfang; Tian Wanqing; Li Yang; Li Qingchao; Wei Jia; Song Benjian ; Drilling casing and method of performing fast drilling and completion of large-borehole multilateral well, 2021-4-27, 美国, 发明专利号:US10989036
    (3) Yan Chuanliang; Li Xiaorong; Ren Xu; Cheng Yuanfang; Han Zhongying; Li Yang; Wei Jia; Song Benjian; Tian Wanqing ; Device and Working Method for Drilling Hydrate Micro-Borehole and Performing Fast Completion, 2021-3-23, 美国, 发明专利号:US10954758
    (4) 闫传梁; 田万顷; 陈凯文; 程远方; 丁吉平; 滕飞; 李庆超; 张怀文 ; 一种天然气水合物降压开采模拟实验装置及工作方法, 中国, 发明专利号:ZL201710031511.3
    (5) 闫传梁; 李阳; 程远方; 韩忠英; 宋本健; 周晓辉 ; 一种模拟冻土地层水泥环固结的实验装置及方法, 2021-7-6, 中国, 发明专利号:ZL201810683622.7
    (6) 闫传梁,任旭,程远方,韩忠英,李阳,魏佳,宋本健,田万顷. 用于钻取水合物微小井眼并快速完井的装置及工作方法,中国,发明专利号:ZL 201910274015.X
    (7) 闫传梁,任旭,程远方,田万顷,李阳,李庆超,魏佳,宋本健. 新型钻井套管及大井眼多分支井快速钻完井方法,中国, 发明专利号:ZL 201811273919.2
    (8) 闫传梁,程远方,滕飞,丁吉平,张怀文,李庆超,一种水合物开采出砂模拟实验系统及方法. 发明专利号:ZL201710019538.0
    (9) 闫传梁,程远方,韩忠英,丁吉平,滕飞,李庆超,张怀文. 两步法制备天然气水合物岩样的实验装置及方法, 中国,发明专利号:ZL201611152896.0
    (10) 闫传梁,邓福成,张炜强. 可靠密封的板式止回阀, 中国,发明专利号:ZL201710035806.8
    (11) 闫传梁,刘钰文,程远方,丁吉平,滕飞,张怀文,李庆超. 地层条件下泥岩、钻井液相互作用模拟实验装置及方法, 中国,发明专利号:ZL201710010420.1
    (12) 闫传梁,李阳,王怀栋,程远方,韩忠英,丁吉平,滕飞,李庆超. 一种各向异性岩石渗透率和弹性模量的测量装置及方法, 中国,发明专利号:ZL201611217456.9
    (13) 闫传梁,陈勇,李泽钦,陈恒,许家豪,赵志超,王辰阳,程远方. 一种针对地层非均匀出砂的复合防砂管及完井方法. 中国,发明专利号:ZL2020114992012
    (14) 闫传梁,李振琦,程远方,姜传祥,一种天然气水合物安全开采方式中国,发明专利号:ZL202110100310.0
    (15) 闫传梁,姜传祥,程远方. 泥页岩应力-损伤-钻井液相互作用实验装置及测试方法. 申请号:202110059647.1
    (16) 闫传梁,董磊峰,程远方,任旭,田万顷,李振琦,姜传祥. 一种天然气水合物储层多级防砂方式及装置. 申请号:CN201910882553.7
    (17) 李阳,闫传梁,程远方,韩忠英,周晓辉,宋本建. 一种控制冻土地层井眼蠕变缩径的钻井液密度确定方法. 发明专利号/申请号:CN201810591957.6
    (18) 闫传梁,袁忠超,田冀,朱国金,郑强,谭先红,李娜,程远方,李卓林,刘钰文.一种岩石高温压缩系数和渗透率的测量装置及测量方法,发明专利号/申请号:CN201710212886.X
    (19) 韩忠英,程远方,闫传梁,刘钰文,韩松财,张闯. 测量低温下岩石断裂韧性的实验装置及方法. 发明专利号/申请号:CN201810501247.X
    (20) 黄浩勇,程远方,韩忠英,闫传梁,朱新潮,贾江鸿,马庆涛. 一种适用于欠平衡钻井的井壁稳定方法及实验装置. 发明专利号/申请号:ZL201410721094.1
    (21) 丁吉平,程远方,闫传梁,李庆超,王怀东,腾飞,韩松财, 弱胶结未成岩水合物声学和饱和度同步测试装置及方法. 发明专利号/申请号:CN201611020607.1
    (22) 蔚宝华,闫传梁,邓金根, 深水浅层破裂压力计算技术. 发明专利号/申请号:CN201310412022.4
    (23) 蔚宝华,闫传梁,邓金根,一种气体钻井井壁稳定的快速评价技术发明专利号/申请号:CN201310412024.3
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