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教师队伍

王金凯

  • 作者:金沙js4399首页
  • 浏览次数:


基本情况

姓名:

王金凯

性别:

男

职务:

/

职称:

学术教授

所在系别:

矿产地质系

导师类别:

博士生导师

最高学历:

研究生

最高学位:

博士

电话:

18669888675

Email:

wangjk@sdust.edu.cn

详细情况

所在学科专业:

地质资源与地质工程,地质学

所研究方向:

油气田开发地质,地下储气(氢)库运行数值模拟

教育经历:

2001-2005,山东科技大学金沙js4399首页地质工程专业本科生,获学士学位;

2005-2008,山东科技大学金沙js4399首页古生物学与地层学专业研究生,获硕士学位;

2008-2011,中国海洋大学海洋地球科学学院海洋地球物理学专业,获博士学位。

工作经历:

2011-现在,山东科技大学金沙js4399首页教师。

期间:2018.08-2019.08,中国石油化工股份有限公司胜利油田分公司挂职;

2023.01-2024.01,美国Missouri University of   Science and Technology 访学。

科研项目:

1. 2025-2030,大跨度复杂断块油藏精细水驱关键技术研究(国家科技重大专项子课题,负责人)

2. 2016-2018,水淹油环地下储气库高强度注采过程中损失气赋存规律及表征方法研究(国家自然科学基金,负责人)

3. 2020-2023,砂岩地下储气库多轮次、高强度注采过程中储层孔隙结构参数变化机理研究(山东省自然科学基金,负责人)

4. 2014-2017,砂岩地下储气库高强度注采过程中损失气的赋存规律及表征方法研究(山东省自然科学基金,负责人)

5. 2014-2015,大情字井油田黑帝庙油层水平井能量补充技术对策研究(企业委托课题,负责人)

6. 2017-2017,柴窝堡-大河沿地区二叠系沉积特征及演化模式(企业委托课题,负责人)

7. 2018-2018,临93馆三5油藏相控地质建模及剩余油研究(企业委托课题,负责人)

8. 2019-2019,丽水凹陷北部新三维地震数据深层叠后特殊处理(企业委托课题,负责人)

9. 2021-2021,大芦家临23块馆三段剩余油分布研究(企业委托课题,负责人)

10. 2021-2022,东道海子凹陷乌尔禾组成岩作用及演化研究(企业委托课题,负责人)

11. 2022-2022,盘58南块低序级断层及井网调整研究(企业委托课题,负责人)

12. 2022-2023,牛庄油田河122块沙三段沉积微相及储层地震预测可行性研究(企业委托课题,负责人)

13. 2024-2025,马19油藏储气库数值模拟研究(企业委托课题,负责人)

14. 2025-2025,临 93 块馆三 5 油藏流动单元表征研究(企业委托课题,负责人)

15. 2025-2026,潍北油田昌3断块区精细油藏描述及开发调整对策研究(企业委托课题,负责人)

16. 2025-2026,大芦家临93块馆三5油藏注采连通性定量表征及剩余油挖潜技术(企业委托课题,负责人)

学术论文:

学术论文:

(1) Wang Jinkai*, Feng Xiaoyong, Wanyan   Qiqi, et al. Influence of Rock Surface Roughness on the Contact Angle in the   CO2 Geological Sequestration Process. Energy & Fuels, 2025, 39(31): 15051-15064.(SCI,三区 )

(2) Wang Jinkai*, Feng Xiaoyong, Wanyan   Qiqi, et al. Numerical simulation of underground hydrogen storage converted   from a depleted low-permeability oil reservoir. International Journal of   Hydrogen Energy, 2024, 69: 1069-1083.(SCI,二区)

(3) Wang Jinkai*, Feng Xiaoyong, Wanyan   Qiqi, et al. A comprehensive review of site selection, experiment and   numerical simulation for underground hydrogen storage. Gas Science and   Engineering, 2023,118: 205105.(SCI,二区)

(4) Wang Jinkai*, Feng Xiaoyong, Wanyan   Qiqi, et al. Hysteresis effect of three-phase fluids in the high-intensity   injection–production process of sandstone underground gas storages. Energy,   2022, 242: 123058.(SCI,一区 Top)

(5) Wang   Jieming, Wang Jinkai*, Xu Shujuan,   et al. A novel mode for “three zones” collaborative reconstruction of   underground gas storage and its application to large, low-permeability   lithologic gas reservoirs. Energy, 2022, 253: 124148.(SCI,一区   Top)

(6) Wang Jinkai*, Li Yuhan, et al. Change   mechanism of pore structure and filling efficiency during injection   production of sandstone underground gas storage. Journal of Natural Gas   Science and Engineering. 2022, 97: 104366. (SCI二区)

(7) Wang Jinkai*, Fu Jialin, Xie Jun.   Quantitative characterisation of gas loss and numerical simulations of   underground gas storage based on gas displacement experiments performed with   systems of small-core devices connected in series. Journal of Natural Gas   Scienceand Engineering. 2020 (81): 103495. (SCI二区)

(8) Wang Jinkai*, Zhang Jinliang, Xie Jun,   et al. Initial gas full-component simulation experiment of Ban-876   underground gas storage. Journal of Natural Gas Science and Engineering,   2014,18:131-136. (SCI二区)

(9) Wang Jinkai, Shen Wenlong, Zhang   Jinliang* et al. Comparison of the Pore Structure of Ultralow-Permeability   Reservoirs Between the East and West Subsags of the Lishui Sag Using   Constant-Rate Mercury Injection. Journal of Ocean University of China, 2021,   20(2):315-328. (SCI二区)

(10)Wang   Jieming, Wang Jinkai*. Estimating   reservoir parameters and gas storage volumeavailable in the DU6 gas field,   Northeast China. International Journal of Energy Research,2021, 45(9):   13397-13413. (SCI二区)

(11)Zhang   YP, Li Chuanhua, Wang Jinkai*, et al. Sedimentary characteristics   of lacustrine deep-water gravity flow in the third member of Paleogene   Shahejie Formation in Dongying Sag, Bohai Bay Basin, China. Frontiers of   Earth Science, 2023, 17: 487-504. (SCI三区)

(12)Wang Jinkai*, Fu Jialin, Wang Jieming,   et al. Sedimentological Influence on Physical Properties of a Tight Sandstone   Reservoir: The Cretaceous Nenjiang Formation, Southern Northeast China.   Frontiers in Earth Science, 2021, 9: 606701. (SCI三区)

(13)Wang Jinkai*, Fu Yuxiang, et al.   Influence of sedimentation and diagenesis on reservoir physical properties: a   case study of the Funing Formation, Subei Basin, eastern China. Frontiers of   Earth Science, 2021, 15(4): 892-908. (SCI三区)

(14) Wang Jinkai*, Liu Hengyi, Zhang   Jinliang, et al. Lost Gas Mechanism and Quantitative Characterization during   Injection and Production of Water-Flooded Sandstone Underground Gas Storage.   Energies, 2018, 11(2):272. (SCI三区)

(15) Wang Jinkai*, Zhang Yuanpei, Xie Jun.   Influencing factors and application prospects of CO2 flooding in heterogeneous   glutenite reservoirs. Scientific Reports, 2020, 10(1): 1839.(SCI三区)

(16) Wang Jinkai*, Zhao Kai, Yan Zhaoxun, Fu   Yuxiang, Xie Jun. Relationship between well pattern density and variation   function of stochastic modelling and database establishment. Oil &   GasScience and Technology–Revue d’IFP Energies nouvelles. 2020 (75): 84. (SCI四区)

(17) Wang Jinkai*, Zhang Jinliang, Xie   Jun. Determination of the Microstructure of a Lithologic Interface Using the   Delayed Response Characteristics of Horizontal Well Gamma Ray Logging Curves:   A Case Study of the Daqingzijing Oilfield, Northeast China. Arabian for   Science & Engineering, 2018, 43(11):6653-6664(SCI四区)

(18) Wang   Jinkai*, Xie Jun, Lu Hao. CO2 miscible flooding influence degree analysis of   reservoir heterogeneity in low permeability reservoir. International Journal   of Oil Gas &CoalTechnology, 2016, 13(2):142. (SCI四区)

(19) YanJiaqi, Wang   Jinkai*, Yu Qinghui. Magmatic Lithology and Genesis of Lingshan Island,   Northwest of the Yellow Sea, Northeast of China. Indian Journal of Geo Marine   Sciences. 2020.49(5): 868-881.(SCI四区)

(20) Wang Jinkai* and Xie Jun. Seismic   recognition and quantitative characterization of siliciclastic-carbonate   mixed sedimentary rocks in the Bohaiwan Basin, Northeast of China. Carbonates   and Evaporites, 2020, 35(2): 51(SCI四区)

(21) Wang Jinkai*, Jiang Shaobo. Lithofacies   Stochastic Modelling of a Braided River Reservoir: A Case Study of the Linpan   Oilfield, Bohaiwan Basin, China. Arabian Journal for Scienceand Engineering,   2020, 45(6): 4891-4905(SCI四区)

(22) Wang Jinkai*, Zhang Jinliang, Xie Jun.   Analysis of the Factors that Influence Diagenesisin the Terminal Fan   Reservoir of Fuyu Oil Layer in the Southern Songliao Basin, Northeast China.   Open Geosciences, 2018, 10(1):866-881.(SCI四区)

(23) Wang Jinkai*, Xie Jun, Lu Hao, et al.   Numerical simulation on oil rim impact on underground gas storage injection   and production. Journal of Petroleum Exploration & Production Technology,   2015, 6(3): 367-377.(SCI四区)

(24) Xiao   Feng, Wang Jinkai* and Xu Wen.   Well-controlled area seepage law and disturbance degree between production wells prediction of tight gas   reservoir: a case study of Sulige gasfield, Ordos Basin, NW China. Journal of   Petroleum Exploration & Production Technology, 2020,10(6): 2303-2311. (SCI四区)

(25) Gong Mingze, Zhang Jinliang, Yan Zhaoxun, Wang Jinkai*. Prediction of interwell   connectivity and interference degree between production wells in a tight gas   reservoir[J]. Journal of Petroleum Exploration and Production Technology   technology, 2021 (11): 3301–3310.(SCI四区)

(26) Zhang Yuanpei, Zhang Xuecai, Cao Haifang, Zheng   Xuguang, Wang Jinkai*, Zhang   Jinliang. Paleogene lake deep water sedimentary facies in the northern zone   of the Chezhen Sag, Bohai Bay Basin, China. Journal of Petroleum Exploration   and Production Technology, 2021 (11): 3903–3916. (SCI四区)

(27)Fu   Jialin, Wang Jieming, Li Chun, Xu Shujuan, Wang Jinkai*. Study on the sedimentary characteristics of   braided fluvial fan. Journal of Taibah University for Science, 2024, 18(1): 2286715. (SCI四区)

(28) Guo SS, Zhang XC, Wang Jinkai*. Deeply buried clastic rock diagenesis evolution   mechanism of Dongdaohaizi sag in the center of Junggar fault basin, Northwest   China. Open Geosciences, 2024, 16(1): 20220711. (SCI四区)

(29) Wang Jinkai*, Zhang Jinliang.   Sedimentary Characteristics of the Fourth Member of Cretaceous Nenjiang   Formation in the Southern Songliao Basin, Northeast of China. CAJG-2019   (Paleobiodiversity and Tectono-Sedimentary Records in the Mediterranean   Tethys and Related Eastern Areas), pp.159-162. (SCI四区)

(30) Feng, XY, Zhao, K, Zhang, JG, Wang, Jinkai*. Carbonate reservoir fracture-cavity system   identification based on the improved YOLOv5s deep learning algorithm. Energy   Science & Engineering, 2024, 12(6): 2643-2660. (SCI四区)

(31) Wu Rui, Wang Jinkai,   He Ruiwu, et al. Application of Principal Component Analysis to Diagenetic   Facies Division of Lake Gravity Flow Sandstone Reservoirs in Dongying   Depression of Bohai Bay Basin, China. Arabian Journal for Science and   Engineering, 2024, 49(1): 899-912. (SCI四区)

(32) Li Yuhan, Wang   Jinkai, Li Chun, et al. Fracture modeling of carbonate rocks via radial   basis interpolation and discrete fracture network. Carbonates and Evaporites,   2023, 38(4): 85. (SCI四区)

(33)张朝辉, 闵忠顺, 刘洁, 李滨, 郭泽萍, 谢俊, 王金凯*, 张文轩. 复杂断块扇三角洲地震沉积学表征——以辽河油田HH19断块沙二段油藏为例. 山东科技大学学报(自然科学版). 2025,3: 68-71.

(34) 王金凯*,张金亮,谢俊. 松辽盆地南部海坨子油田特低渗透储层裂缝识别及预测模型.中国海洋大学学报. 2014,44(6):81-84.


发明专利:

(1) 一种模拟低渗水平井渗流规律的实验装置及实验方法.   ZL201510602805.8(发明专利)

(2) 一种利用大尺寸岩心测量高速注气过程中损失气的装置.   ZL201510607737.4(发明专利)

(3) 利用水平井入层点信息校正油藏顶面微构造的方法.   ZL201510267859.3(发明专利)

(4) 模拟地下储气库注采过程中油气接触反应的装置及方法.   ZL202010985012.X(发明专利)


著作教材:

河流储层构型和建模技术, 石油工业出版社, 2018.

获奖情况:

1.2009年,严重非均质油藏提高采收率技术研究,山东省教育厅自然科学一等奖;

2.2010年,严重非均质油藏提高采收率技术研究,中国石油和化学工业联合会科技进步三等奖;

3.2011年,济阳坳陷深层精细勘探和油气快速检测技术研究,教育部科技进步二等奖;

4.2011年,深部复杂油气藏形成机理与评价技术,青岛市科技进步一等奖;

5.2014年,水淹型砂岩地下储气库有效砂体评价及高强度注采过程中气-水宏观运动规律分析,山东地学科技创新二等奖;

6.2017年,低渗-致密砂岩储层综合表征技术及开发实践,中国石油和化学工业联合会三等奖;

7.2019年,复杂岩性油气藏生储岩系评价和预测关键技术及应用,中国石油和化学工业联合会三等奖

2020年,勘探老区剩余油气资 源挖潜关键技术及规模应用,中国石油和化工自动化应用协会科技进步一等奖

8. 2021年,碎屑岩储库构型精准表征和优化设计关键技术及规模应用,中国石油和化工自动化应用协会科技进步特等奖.

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