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姓名 贾品
性别 发明专利4999代写全部资料
学校 中国石油大学
部门 石油工程学院/油气田开发工程系
学位 博士
学历 专任教师
职称 岗位副教授
联系方式 89733726
邮箱 jiapin1990@163.com
   
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教育经历 2012-09至2018-06, 中国石油大学(北京), 油气田开发工程, 博士研究生 2008-09至2012-06, 中国石油大学(北京), 石油与天然气工程, 大学本科 个人概况 姓名: 贾品 职称: 副教授/硕导(校青年拔尖人才) 职务: 无 教育与工作经历: 2008-2012 中国石油大学(北京), 石油工程,本科 2012-2018 中国石油大学(北京),油气田开发工程,硕博连读 2016-2017 加拿大University of Calgary ,地球科学,国家公派联合培养 2018-2020 中国石油大学(北京),油气田开发系,师资博士后 2020-2021 中国石油大学(北京),油气田开发系,讲师 2021-至今 中国石油大学(北京),油气田开发系,副教授 个人主页: 电子邮箱: jiapin1990@163.com 联系电话: 010-89733726;13401099286 所在系所: 油气田开发工程系 研究方向: 油气渗流理论与应用、非常规油气藏高效开发理论与技术 教学情况: 主讲《复杂结构井开发理论与技术》,辅讲《渗流力学》、《高等渗流力学》、《油气渗流力学理论》 论文著作: [1] P. Jia*, L. Cheng, C.R. Clarkson, et al. A novel method for interpreting water data during flowback and early-time production of multi-fractured horizontal wells in shale reservoirs, International Journal of Coal Geology, 2018, 200: 186-198. [2] P. Jia*, L. Cheng, S. Huang, et al. Dynamic coupling of analytical linear flow solution and numerical fracture model for simulating early-time flowback of fractured tight oil wells (planar fracture and complex fracture network), Journal of Petroleum Science and Engineering, 2019, 177: 1-23. [3] P. Jia*, M. Ma, L. Cheng, et al. A semi-analytical model for capturing dynamic behavior of hydraulic fractures during flowback period in tight oil reservoir, Energy Science & Engineering, 2020, 00: 1-27. [4] P. Jia*, L. Cheng, S. Huang, et al. Pressure Transient Analysis of a Finite Conductivity Inclined Fracture Connected to a Slanted Wellbore. SPE Journal, 2016, 21(2): 522–537. SPE-178929-PA. [5] P. Jia*, L. Cheng, C.R. Clarkson, et al. A Laplace-Domain Hybrid Model for Representing Flow Behavior of Multifractured Horizontal Wells Communicating Through Secondary Fractures in Unconventional Reservoirs. SPE Journal, 2017, 22(6): 1856–1876. SPE-186109-PA. [6] P. Jia*, L. Cheng, C.R. Clarkson, et al. A novel method for interpreting water data during flowback and early-time production of multi-fractured horizontal wells in shale reservoirs. International Journal of Coal Geology, 2018, 200: 186–198. [7] P. Jia*, L. Cheng, C.R. Clarkson, et al. Flow behavior analysis of two-phase (gas/water) flowback and early-time production from hydraulically-fractured shale gas wells using a hybrid numerical/analytical model. International Journal of Coal Geology, 2017, 180: 14–31. [8] P. Jia*, L. Cheng, S. Huang, et al. A comprehensive model combining Laplace-transform finite-difference and boundary-element method for the flow behavior of a two-zone system with discrete fracture network. Journal of Hydrology, 2017, 551: 453–469. [9] P. Jia*, L. Cheng, S. Huang, et al. A Semi-analytical Model for the Flow Behavior of Naturally Fractured Formations with Multi-scale Fracture Networks. Journal of Hydrology, 2016, 537: 208–220. [10] P. Jia*, L. Cheng, S. Huang, et al. Transient behavior of complex fracture networks. Journal of Petroleum Science and Engineering, 2015, 132: 1-17. [11] L. Cheng, P. Jia*, S. Huang, et al. Transient responses of multifractured systems with discrete secondary fractures in unconventional reservoirs. Journal of Natural Gas Science and Engineering, 2015, 41: 49-62. [12] P. Jia, M. Ma, L. Cheng, et al. Capturing Dynamic Behavior of Propped and Unpropped Fractures During Flowback and Early-Time Production of Shale Gas Wells using a Novel Flow-Geomechanics Coupled Model: A Field Example from the ChangNing Shale in China. Paper URTeC-3314-MS Presented at the SPE/AAPG/SEG Unconventional Resources Technology Conference held in Denver, Colorado, USA, 20-22 July, 2020. [13] P. Jia, L. Cheng, C.R. Clarkson, et al. Flow Behavior Analysis of Multi-Well Communication Through Secondary Fractures in Tight Oil Reservoirs Using a Laplace Domain Hybrid Model: A Field Example From the Western Canadian Sedimentary Basin. Paper URTeC-2671483-MS Presented at the Unconventional Resources Technology Conference held in Austin, Texas, USA, 24-26 July, 2017. [14] P. Jia, L. Cheng, S. Huang, et al. Production Simulation of Complex Fracture Networks for Shale Gas Reservoirs Using a Semi-analytical Model. Paper SPE-176981-MS Presented at the SPE Asia Pacific Unconventional Resources Conference and Exhibition held in Brisbane, Australia, 9-11 November, 2015. [15] P. Jia, L. Cheng, S. Huang, et al. A Semi-Analytical Model for Production Simulation of Complex Fracture Network in Unconventional Reservoirs. Paper SPE-176227-MS Presented at the SPE Asia Pacific Oil & Gas Conference and Exhibition held in Bali, Indonesia, 20–22 October, 2015. [16] 贾品, 王远征,程林松, 等. 基于物质平衡方程的断溶体油藏动态油水界面预测新模型. 中国石油大学学报(自然科学版).2021 [17] 贾品, 李壮,尹恒飞, 等. 高地饱压差油藏应力敏感特征及定量表征研究,特种油气藏. 2021 [18] 贾品, 程林松, 黄世军, 等. 有限导流压裂定向井不稳定压力分析模型. 石油学报. 2015, [19] 贾品, 程林松, 黄世军, 等. 压裂裂缝网络不稳态流动半解析模型. 中国石油大学学报(自然科学版). 2015 [20] 贾品, 程林松, 黄世军, 等. 水平井体积压裂缝网表征及流动耦合模型. 计算物理. 2015 [21] 贾品, 程林松, 黄世军, 等. 有限导流压裂定向井耦合流动模型. 计算物理. 2014 著作: [1] 程林松, 贾品, 曹仁义 著. 致密油藏体积压裂产能评价方法. 科学出版社. 2020, 20万字 [2] 程林松, 曹仁义, 贾品 编著. 高等渗流力学(第二版). 石油工业出版社. 2020, 86万字 科研项目: [1] 国家自然科学基金青年项目,“致密储层'压裂成藏'油水赋存状态变化机理及渗流数学模型研究”,负责人,2021-2023 [2] 国家人社部“博士后创新人才支持计划”,“致密油藏体积压裂动态缝网表征及数值模拟”,负责人,2018-2020 [3] 黑龙江省“揭榜挂帅”科技攻关项目,“古龙页岩油提高采收率关键问题研究”,课题长,2021-2022 [4] 中国博士后科学基金第64批面上一等资助项目,“致密油藏水相缝内蓄存机理及返排研究”,负责人,2018-2020 [5] 中国石油大学(北京)人才引进科研启动基金项目,“非常规油气藏压裂液返排模型及动态分析方法”,负责人,2019-2022 [6] 国家自然科学基金重点项目,“超低渗透油藏渗流规律及高效开发的关键科学问题”,主要参与人 [7] 中石油战略合作项目,鄂尔多斯盆地致密油-页岩油油藏工程方法及关键技术,主要参与人 [8] 中石油川庆钻探页岩气勘探开发项目部委托课题,威远低品质页岩压裂缝网反演研究,负责人 [9] 中石油勘探开发研究院委托课题,弱挥发碳酸盐岩油藏水驱规律研究,主要参与人 [10] 中石化勘探开发研究院委托课题,缝洞油藏注采井间动态油水界面预测研究,主要参与人 科研教学奖励: [1] 水平井体积压裂缝网表征及渗流数学模型研究,中国石油大学(北京)优秀博士论文,2019 [2] 页岩气复杂缝网监测与多尺度传输仿真理论技术研究及应用,中国石油和化学工业联合会科学技术进步一等奖,2018 [3] 致密储层多尺度渗流机理与高精度仿真模拟技术,中国石油和化学工业联合会科学技术进步二等奖,2019 授权发明专利: [1] 一种非均质压裂后储层流动数值模拟方法及系统,ZL201910145078.5,2020,排名1/5 [2] 地下储层单元线流动数据处理方法及装置,ZL201811557270.7,2020,排名1/5 社会与学术兼职: [1] SCI期刊Geofluids 2021年专刊“Advanced Numerical Methods for Simulation of Multiphase Flow in Fractured Reservoirs” 主编 [2] SCI期刊Lithosphere 2021年专刊“Advances in Fracture Characterization in Engineering Geology: Monitoring, Interpretation, and Modeling”客座编辑 [3] SPE Journal、JPSE、Journal of Hydrology、Advance in Water Resources 等SCI期刊审稿人

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