当前位置: 油气井工程研究所
王子振
作者: 发布者:赵小明 发布时间:2024-06-19 访问次数:12329

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:wangzzh@upc.edu.cn

联系电话:15689430806

地址邮编:

  • 个人主页
  • 学习与工作经历
    2005.09-2009.07,中国石油大学(华东),石油工程学士;
    2009.09-2016.07,中国石油大学(华东),油气井工程博士(硕博连读);
    2014.10-2015.10,University of Alberta,Geophysics, CSC联合培养博士;


    2016.08-2018.07,中国石油大学(华东),地质学博士后;
    2018.08-至今,中国石油大学(华东),石油工程学院,讲师、副教授、教授;
    2021.10-至今,中国石油大学(华东),油气井工程研究所党支部书记;
    2020.06硕士生导师,2022.06博士生导师。

  • 研究方向
    复杂地层工程地质力学
    油气钻探地球物理
    非常规能源储层改造与评价
    岩石损伤与高效破碎
    钻完井大数据与智能钻井



    硕士、博士招生专业:石油与天然气工程,资源与环境
    培养方向:① 油气井工程理论与技术,② 油气工程信息与智能技术,③ 非常规地质能源开发工程理论与技术
    欢迎石油与天然气工程、地球物理、工程力学、计算数学等学科专业背景的同学报考博士和硕士研究生!

  • 招生方向
  • 主讲课程
    1.本科生:《钻井工程》、《岩石力学》、《钻井地质环境描述》、《石油工业与碳中和概论》
    实习:认识实习,生产实习
    2.研究生:《现代油气井工程理论和方法》、《钻完井大数据决策与优化控制》
    3.博士生:《油气井工程理论和技术进展》
    4.研究生国际班:Modern Drilling and Completion Engineering, Academic English Reading and Writing of Petroleum & Oil Engineering
  • 学术兼职
    1. 中国石油学会青年工作委员会委员
    2. 国家自然基金委项目通讯评审专家
    3. 美国石油工程协会(SPE), 国际勘探地球物理学家学会(SEG), 美国地球物理协会(AGU), 国际岩石物理协会(IARP), 国际岩石力学学会(ISRM), 中国岩石力学与工程学会 会员
    4. 《International Journal of Oil, Gas and Coal Technology 》编委
    5. 《Petroleum Science》,《天然气工业》青年编委
    6. AAPG Bulletin, JGR-Solid Earth, Geophysics, International Journal of Mechanical Science, Journal of Petroleum Science and Engineering, Journal of Natural Gas Science and Engineering, Rock Mechanics and Rock Engineering, Applied Acoustics, Scientific Reports, International Journal of Oil, Gas and Coal Technology, Journal of Applied Geophysics, 石油学报,天然气工业,石油科学通报,石油钻探技术等国内外高水平期刊审稿人。
  • 指导研究生
    协助指导硕士研究生7人,博士研究生1人:
    2011级:单珣;
    2012级:柴迪(出国留学),邱浩;
    2013级:李天阳(硕博连读,CSC联合培养博士);
    2016级:赵明远;
    2017级:舒腾飞,牛锋;


    指导硕士/博士研究生:
    2020级:杨崇翔,赵儒,雷献波
    2021级:王晓康
    2022级:陈冠霖,倪得水,韩夏童
    2023级:张文盛,陈梓修
    2024级:陈冠霖,张豪,闫好,马同倡,张晓飞

  • 承担科研课题
    10.重点研发计划子课题,基于声波特性的水合物储层压裂缝高检测与解释,2023.12-2026.11,负责人;
    9.重点研发计划子课题,溢流/漏失智能监测和井喷风险综合预警方法与技术,2023.11-2026.10,负责人;
    8.国家自然基金面上项目,特深层极端温压环境下岩石对宽频域轴向冲击的响应规律与高效破岩机制,2024-2027,负责人;
    7.国家自然基金面上项目,基于低频弹性波特征响应的深层油气钻井气侵井下智能监测理论与方法,2021-2024,负责人;
    6.国家自然基金委与英国皇家学会(NSFC-RS)中英合作交流项目,地热井粒子射流钻井中的非线性动力学研究,2020-2022,负责人;
    5.国家自然基金青年基金,碳酸盐岩弹性波特性的应力敏感性定量描述及地层压力预测模型研究,2018-2020,负责人;
    4.国家自然基金面上项目,亚弹速钢质颗粒流冲击作用下岩石内部微观损伤机理与定量分析,2019-2022,技术骨干;
    3.国家自然基金面上项目,碳酸盐岩孔隙结构对其弹性波特性的影响规律研究,2013-2016,主要贡献者;
    2.加拿大国家自然科学基金委(NSERC)项目,Seismic and geomechanical physical properties of bitumen-saturated carbonates: application in the development of the Grosmont formation area,2013-2016,主要贡献者;
    1.中国博士后科学基金面上项目一等资助,碳酸盐岩油气藏地层压力预测理论与方法研究,2016-2018,负责人;



    19.横向课题,压裂实验用人工岩心制备及测试和低渗致密储层力学性能及可压性综合测试,2023-2024,负责人;
    18.横向课题,页岩油岩心岩石物理测试与综合分析,2023-2024,负责人
    17.横向课题,东营凹陷页岩油岩石力学参数测试,2022-2023,负责人
    16.横向课题,水合物储层水力压裂物模实验及数值模拟研究测试,2021-2025,负责人
    15.横向课题,低渗致密储层岩石力学参数测试(“低渗致密油藏地震工程一体化关键技术研究”外协),2020-2021,负责人;
    14.横向课题,大牛地岩溶缝洞性储层钻井井筒压力控制技术,2020-2021,负责人;
    13.横向课题,低渗致密油藏地震工程一体化关键技术研究-低渗致密储层岩石力学参数测试,2020-2021,负责人;
    12.国家重点实验室开放基金,连续冲击作用下硬地层岩石损伤破碎动力学响应规律,2020-2021,负责人;
    11.横向课题,顺北一区关键断裂带三压力剖面计算分析,2019-2020,负责人;
    10.横向课题,永乐区块超深水花岗岩储层防漏堵漏技术研究,2019-2022,技术骨干;
    9.横向课题,乌石17-2油田生产井防砂方式对产能影响评价,2019-2022,技术骨干;
    8.横向课题,水合物储层原位地层砂压裂物模实验,2019,技术骨干;
    7.横向课题,水合物储层压裂物模实验,2018-2019,技术骨干;
    6.山东省博士后创新项目专项资助,碳酸盐岩弹性波特性的应力敏感性定量评价,2017-2018,负责人;
    5.学校自主创新科研计划-优秀青年培育项目,基于低频弹性波响应特征的气侵早期井下监测方法研究,2018-2020,负责人;
    4.国家重点实验室开放基金,页岩气压裂区地层力学特性变化规律研究,2017-2018,负责人;
    3.青岛市博士后应用研究项目,复杂孔隙结构碳酸盐岩油气藏地层压力预测方法研究,2016-2018,负责人;
    2.学校科研启动基金项目,碳酸盐岩速度-应力敏感性定量描述及其控制机理研究,2017-2019,负责人;
    1.中国石油大学(华东)优秀博士学位论文培育项目,碳酸盐岩孔隙结构对其弹性波特性的影响规律研究,2013-2016,负责人;

  • 获奖情况
    科研奖励:
    2.复杂孔隙结构碳酸盐岩弹性波传播特性与裂缝预测研究,2023,青岛市自然科学二等奖,排名1/4;
    1.碳酸盐岩孔隙结构对其弹性波特性的影响规律研究,2017,年山东省优秀博士学位论文,指导老师:王瑞和教授;


    教学奖励:
    [3] “一高六艺二通”,石油工业与文化一流通识课程建设与实践, 2023年学校教学成果一等奖(排名7/10)
    [2] 新工科视域下石油与天然气工程学科研究生课程教育体系构建与实践,第四届中国石油大学(华东)研究生教学成果奖 特等奖,2023.(排名7/10)
    [1] “让研究成为习惯”的《中外石油文化》课堂革命,中国石油大学(华东)教学成果二等奖,2021。(排名5/10)

    指导学生获奖情况:
    1.2017年全国岩石力学与工程协会优秀毕业设计(论文)奖,杨建宇
    2.2018年全国研究生数学建模竞赛三等奖(成员:舒腾飞,牛锋,代志文)
    3.2018年“能源 智慧 未来”全国大学生创新创业大赛成功参赛奖,赵明远
    4.2019年全国石油工程设计大赛钻井组三等奖(舒腾飞,牛锋)
    5.2022年第18届学生与青年学者国际论坛优秀论文奖,陈冠霖
    6.2022年学校优秀本科毕业设计论文,基于录井数据的X油田地层压力监测与钻井地质风险分析,刘新宇
    7.2023年学校优秀本科毕业设计论文,天然气水合物沉积物模拟岩心断裂韧性实验测试研究,边伟平
    8.2024年学校优秀本科毕业设计论文,东营凹陷页岩油储层井眼坍塌压力计算与分析,闫好


  • 荣誉称号
    [5] 2023年中国石油大学(华东)优秀本科毕业设计论文指导老师
    [4] 2022-2023学年学校“十佳百优”班主任—“优秀班主任”
    [3] 2022年中国石油大学(华东)优秀本科毕业设计论文指导老师
    [2] 2022年中国石油大学(华东)暑期社会实践活动优秀指导教师
    [1]2018-2019年,中国石油大学(华东)“优秀班主任”;
  • 著作
    [1] 王子振 著. 复杂孔隙结构碳酸盐岩弹性波特性及其应用 [M]. 2023,青岛:中国石油大学出版社
    [2] Zizhen Wang & Qilong Xue, Chapter 7 Signal processing in Logging while drilling, in Qilong Xue, Data Analytics for Drilling Engineering:. In Information Fusion and Data Science, Series editor: Henry Leung. https://doi.org/10.1007/978-3-030-34035-3_7.
  • 论文
    [1] Wang Ruihe*, Wang Zizhen, Shan Xun, Qiu Hao, Li Tianyang. Factors influencing pore-pressure prediction in complex carbonates based on effective medium theory [J]. Petroleum Science, 2013, 10(4): 494-499.
    [2] 王子振*,王瑞和,李天阳,单珣,邱浩. 孔隙结构对干岩石弹性波衰减影响的数值模拟研究[J]. 地球物理学进展,2014, 29(6): 2766-2773. doi: 10.6038/pg2014064.
    [3] 王子振*,王瑞和,单珣,等. 常规方法预测碳酸盐岩地层压力的偏差分析[J]. 中国石油大学学报(自然科学版), 2014, 38(5): 96-101.
    [4] 王子振*, 何英明, 仲冠宇, 等. 流水中重物运动过程的数学建模与分析[J]. 数学的实践与认识, 2011, 41(14): 138-145.
    [5] 臧艳彬*, 王瑞和, 王子振, 等. 利用Eaton法计算地层孔隙压力的不确定性分析[J]. 西南石油大学学报(自然科学版), 2012, 34(4): 55-61.
    [6]李天阳,王子振,王瑞和,陈之尧,邱浩. 含裂缝VTI介质的弹性波传播特性研究[J]. 地球物理学进展,2015,30(6),2498-2504.
    [7] 邱浩,王子振*,王瑞和,郭溢,李天阳. 单轴压力下裂缝闭合压力及其影响因素的实验研究 [J]. 岩石力学与工程学报,2015,S2,3915-3921.
    [8] Zizhen Wang*, Douglas R. Schmitt, Ruihe Wang. Does wettability influence seismic wave propagation in liquid-saturated porous rocks? [J]. Geophysical Journal International, 2015, 203: 2182-2188.
    [9] Zizhen Wang*, Ruihe Wang*. Pore pressure prediction using geophysical methods in carbonate reservoirs: Current status, challenges and way ahead [J]. Journal of Natural Gas Science and Engineering, 2015, 27: 986-993.
    [10] 王子振*,王瑞和,邱浩,李天阳,单珣. 一种多重孔隙结构人造岩心的制备新方法及其应用[J]. 石油物探, 2015, 54(2): 150-156.
    [11] Rui Zhang, Zizhen Wang*, Shen Guan, Manzong Fang, Xiqiu Zhang, Induced flow by coiled tubing gas injection in depleted gas wells: modeling and applications [J], Journal of Natural Gas Science and Engineering, 2015, 24:272-278.
    [13] Zizhen Wang*, Ruihe Wang, Feifei Wang, Hao Qiu, and Tianyang Li. Experiment study of pore structure effects on velocities in synthetic carbonate rocks [J]. Geophysics, 2015, 80(3), D207-D219.(亮点论文)
    [14] Zizhen Wang*, Ruihe Wang, Ralf J.Weger, Tianyang Li, and Feifei Wang. Pore-scale modeling of elastic wave propagation in carbonate rocks [J]. Geophysics, 2015, 80(1): D51–D63.
    [15] 李天阳,王瑞和,王子振,等. VTI介质中裂缝对弹性波传播影响的模拟研究[J]. 哈尔滨工程大学学报,2016,37(7): 943-949.
    [16] Zizhen Wang*, Ruihe Wang*, Hao Qiu, Tianyang Li. Dynamic modeling of the crack deformation in dry/gas-saturated rocks with increasing normal stress [J]. Journal of Natural Gas Science and Engineering, 2016, 34, 170-177.
    [17] Tianyang Li, Ruihe Wang, Zizhen Wang, and Yuzhong Wang. Experimental study on the effects of fractures on elastic wave propagation in synthetic layered rocks [J]. Geophysics, 2016, 81(4), D441-D451.
    [18] Zizhen Wang*, Douglas R.Schmitt, Ruihe Wang. Modeling of viscoelastic properties of nonpermeable porous rocks saturated with highly viscous fluid at seismic frequencies at the core scale [J]. Journal of Geophysical Research: Solid Earth, 2017,122(8), 6067-6086.
    [19] Zizhen Wang*, Ruihe Wang, Tianyang Li, and Mingyuan Zhao. The combined effects of pore structure and pore fluid on the acoustic properties of cracked and vuggy synthetic rocks [J]. Journal of Petroleum Science and Engineering, 2017, 156, 202-211.
    [20] 王斐斐,王子振*,舒腾飞. 聚合物分散溶解系统数值模拟研究[J]. 石油机械,2018, 46(10):65-71.
    [21] Tianyang Li, Ruihe Wang, Zizhen Wang, Mingyuan Zhao, Lei Li. Prediction of fracture density using genetic algorithm support vector machine based on acoustic logging data[J], Geophysics. 2018, 83(2): D49-D60.
    [22] Tianyang Li*, Zizhen Wang*, Yu Jeffrey Gu, Ruihe Wang, Yuzhong Wang. Experimental study of fracture structure effects on acoustic logging data using a synthetic borehole model [J]. Journal of Petroleum Science and Engineering, 2019, 183: 106433
    [23] Yijin Zeng, Zizhen Wang*, Yanbin Zang, Ruihe Wang, Feifei Wang, Xinming Niu, and Feng Niu. Pore pressure disturbance induced by multistage hydraulic fracturing in shale gas: Modelling and field application [J]. Geofluids, 2019, article ID 1315451
    [24] Tianyang Li, Yu Jeffrey Gu*, Zizhen Wang*, Ruijia Wang, Yunfeng Chen, Teh-Ru Alex Song, and Ruihe Wang. Spatiotemporal variations in crustal seismic anisotropy surrounding induced earthquakes near Fox Creek, Alberta [J]. Geophysical Research Letters, 2019, 46, 5180-5189.
    [25] Tianyang Li, Ruihe Wang, Zizhen Wang*. A method of rough pore surface model and application in elastic wave propagation [J]. Applied Acoustics, 2019, 143, 100-111.
    [26] 龙腾,赵建国,刘欣泽,李智,肖增佳,王子振,欧阳芳. 碳酸盐岩跨频段岩石物理测量与理论建模——不同孔隙结构对碳酸盐岩频散与衰减的影响研究[J].地球物理学报,2020,63(12):4502-4516.
    [27] Heng Zhang, Hongjian Ni*, Zizhen Wang, Shubin Liu, and Hongjun Liang. Optimization and application of targeted formation rate of penetration enhancement with impact drilling modes based on clustering characteristics of logging[J]. Energy Reports, 2020, 6: 2903-2912.
    [28] Tianyang Li*, Zizhen Wang, Ruihe Wang, Nian Yu*, Pore type identification in carbonate rocks using convolutional neural network based on acoustic logging data[J]. Neural Computing & Applications, 2020, pp.1-13.
    [29] Tianyang Li*, Zizhen Wang*, Nian Yu*, Ruihe Wang and Yuzhong Wang. Numerical study of pore structure effects on acoustic logging data in the borehole environment [J]. Fractals, 2020, 28(3), ID=2050049.
    [30] Tianyang Li, Ruiheng Li, Nian Yu, Zizhen Wang, Ruihe Wang. A novel approach based on feature fusion for fracture identification using well log data [J]. Fractals, 2021, 29(8): 2150256.
    [31] 曹继飞,邹德永*,舒腾飞,王子振. 基于主成分分析的碳酸盐岩裂缝识别方法研究[J]. 科学技术与工程,2021,21 (36): 15421-15428.
    [32] Heng Zhang, Hongjian Ni*, Zizhen Wang, Bin Huang, Shubin Liu, Xiaoyue Xu. Discrete element modeling and simulation study on cutting rock behavior under spring-mass-damper system loading [J]. Journal of Petroleum Science and Engineering,2021.
    [33] Feifei Wang, Zizhen Wang, Di Zhang, Zhenqing Wang*. Statistical damage constitutive model based on self-consistent Eshelby method for natural gas hydrate sediments [J]. Energy Science & Engineering, 2021, 9: 2079-2098.
    [34] Zizhen Wang*, Gautier Njiekak, Douglas R. Schmitt, Ruihe Wang. Empirical rock physics relationships on carbonate dry-frame elastic properties [J]. Petroleum Science, 2021, 18(3),783-806.
    [35] Zizhen Wang*, Guanlin Chen, Rui Zhang, Weidong Zhou, Yitao Hu, Xunjie Zhao, Pan Wang. Early monitoring of gas kick in deepwater drilling based on ensemble learning method: a case study at South China Sea. Process Safety and Environmental Protection, 2023, 169: 504-514.
    [36] 王子振*,张辉,舒腾飞,王翔,赵儒,王健,张锐. 基于低频弹性波特征响应的油气钻井气侵井下监测模拟实验系统 [J]. 力学与实践, 2022, 44(1): 51-58.
    [37] Weidong Zhou, Luopeng Li, Zizhen Wang*, Xianbo Lei, Weidong Zhang, Fangxiang Wang. Motion analysis and modulation of steel particle swarm in high-pressure tank for particle impact drilling [J]. Energy Reports, 2022,8,1339-1349.
    [38] Zizhen Wang*, Weidong Zhou, Tengfei Shu, Qilong Xue, Rui Zhang, Marian Wiercigroch*. Modelling of low-frequency acoustic wave propagation in dilute gas-bubbly liquids [J]. International Journal of Mechanical Sciences, 2022, 216: 106979.
    [39] Zizhen Wang*, Weidong Zhou, Xianbo Lei, Chongxiang Yang, Yi Wang*, and Weidong Zhang. The changes to the rock physical and mechanical properties near the hole produced by successive impacts of a steel-particle water jet: a case study in a tight sandstone [J]. Rock Mechanics and Rock Engineering, 2023.
    [40] Feifei Wang, Zizhen Wang, Di Zhang, Zhenqing Wang*. Gas production enhancement by horizontal well with hydraulic fractures in a natural gas hydrate reservoir: A thermo-hydro-chemical study [J]. Energy & Fuels, 2023,37, 8258-8271
    [41] Zizhen Wang*, Xianbo Lei, Weidong Zhou, Yi Wang*, Jifei Cao, Chengwen Wang, Numerical simulation of the damage process of rock containing cracks by impacts of steel-particle water jet [J]. Powder Technology, 2023, 422, 118465.
    [42] Feifei Wang, Kaixiang Shen, Zhilei Zhang, Di Zhang, Zhenqing Wang*, Zizhen Wang*. Numerical simulation of natural gas hydrate development with radial horizontal wells based on thermo-hydro-chemistry coupling. Energy, 2023.
    [43] 盖姗姗,王子振*,刘浩杰,张文盛,于文政,杨崇翔,王玉萍. 永进油田致密储集层岩石力学参数剖面构建及应用 [J]. 新疆石油地质,2024,45(3): 362-370.
    [44] Zizhen Wang*, Ru Zhao, Yanbin Zang, Weidong Zhou*, Guanlin Chen, and Rui Zhang. Downhole detection of gas kick using low-frequency elastic wave: Multiphysics modeling and its implications [J]. Gas Science and Engineering, 2024, 125, 205297.
    [45] 王子振,王晓康,申凯翔,苏捷,赵志强,周卫东. 岩土材料中冰分布状态的冷冻电镜表征方法 [J]. 实验室研究与探索,2024,43(2):8-12+114.







  • 专利
    国家发明专利:
    1.一种声学实验模拟碳酸盐岩人造岩心的制备方法,ZL201310022534.X
    2.一种多重孔隙结构人造岩心及其制备方法,ZL201410341399.X
    3.一种测量液体环空气侵后低频弹性波响应特征的实验装置,ZL201611216869.5
    4.基于低频弹性波响应特征的井筒气侵早期主动监测方法,ZL201611216470.7
    5.一种二维不同表面粗糙度的随机孔隙生成方法,ZL201610591693.5
    6.一种可控裂缝参数的碳酸盐岩井筒模型制备方法及应用,ZL201810521918.9
    7.用于研究气侵后裂缝内气液交换情况的实验装置及方法,ZL202210057759.8
    8.一种基于岩屑纳米压痕的岩石可钻性评价方法,ZL202210057803.5
    9.一种基于蒙特卡罗方法的地层可压性概率分析方法,ZL202211140206.5
    10.一种基于弹性波信号的套管内外双向井下监测装置与方法,ZL202211593526.6
    11.一种深部地层岩石原位可钻性级值预测方法,ZL202310718008.0
    12.一种模拟海域水合物沉积物压裂的实验方法,ZL202311779561.1



    软件著作权:
    1.多孔介质/颗粒堆积体二维几何模拟软件,登记号:2016SR351323
    2.连续管注氮诱喷计算软件,登记号:2017SR86344
    3.非常规油气储层可压性定量评价计算软件V1.0,登记号:2023SR0738580
    4.基于测井资料的地下裂缝定量识别分析与预测软件(Frac-DAP),登记号:2024SR0145079
    5.基于多源信息的气侵智能预警软件,登记号:2024SR0710602


  • 学术交流
    [1] Zizhen Wang, Douglas R.Schmitt, Ruihe Wang, Tianyang Li, Feifei Wang, The pressure dependence of velocities and its influencing factors for carbonate rocks. 2018 AGU Fall Meeting, 10-14 December, 2018, Washington, D.C., USA. (Poster)
    [2] 王子振,碳酸盐岩岩石物理力学特性实验研究与应用,口头报告,中石化西北局钻井工程研究院“顺北碳酸盐岩缝洞型储层岩石力学特征与应用技术研讨会”,2018年7月31日-8月2日,武汉
    [3] Yijin Zeng, Xinming Niu, Yanbin Zang, Feifei Wang, Zizhen Wang*, Challenges and strategies of infill-drilling within large scale hydraulic fracturing zone for shale gas due to geostress disturbance. 2018 International Workshop on Environment and Geoscience, June 15-17, Hangzhou, China. IWEG14322 (Oral Presentation)
    [4] Tianyang Li, Ruihe Wang, and Wang Zizhen, The effect of roughness of pore surfaces on elastic wave velocity in pore-scale modeling. 2017 SEG Annual Meeting, 24-29 September, Houston, USA. (Oral Presentation)
    [5] Zizhen Wang, Ruihe Wang, Douglas R.Schmitt, Yaoqi Zhou, Feifei Wang, Carbonate rock physics modelling at ultrasonic and seismic frequencies. 4th International Workshop on Rock Physics, 29 May- 2 June, 2017, Trondheim, Norway. (Oral Presentation)
    [6] Zizhen Wang, Ruihe Wang, Tianyang Li, Douglas R. Schmitt. Modelling of Viscoelastic Properties of Porous Rocks Saturated with Viscous Fluid at Seismic Frequencies at the Core Scale. 2016 SEG Rock Physics and Borehole Geophysics Workshop, 28-30 August, Beijing, China. (Oral Presentation)
    [7] Arif Rabbani, Douglas R. Schmitt, Zizhen Wang, Xiwei Chen, Oliver Ong, Jason Nycz, and Ken Gray. Rock Physics of Bitumen Saturated Carbonates. AAPG 2016 Annual Convention & Exhibition, 19-22 June, Calgary, Alberta, Canada. (Oral Presentation)
    [8] Zizhen Wang, Douglas R.Schmitt, Ruihe Wang. Modeling of Visco-elastic Properties of Porous Rocks Saturated with Viscous Fluid at Seismic Frequencies on Core Scale. 2016 EAGE-SCA International Symposium on Digital Rock Physics and Applications, 30 - 31 March, 2016, Beijing, China. (Poster)
    [9] Zizhen Wang, Douglas R.Schmitt, Ruihe Wang. Modeling of Visco-elastic Properties of Porous Rocks Saturated with Viscous Fluid at Seismic Frequencies on Core Scale. AGU Fall Meeting, December 14-18, San Francisco, USA. (Poster)
    [10] Zizhen Wang, Douglas R.Schmitt, Ruihe Wang. The role of pore structure in the pressure dependence of velocities in carbonate rocks. Inaugural Mountjoy Carbonate Meeting: Advances in Characterization and Modeling of Complex Carbonate Reservoirs, August 23-28, 2015, Calgary, AB, Canada. (Poster)
    [11] Rui Zhang, Zizhen Wang, Shen Guan, Manzong Fang, Xiqiu Zhang, Induced flow by coiled tubing gas injection in depleted gas wells: modeling and applications. The 3rd International Symposium on Energy Challenges and Mechanics, July 7-9, 2015, Aberdeen, Scotland, UK. (Oral Presentation)
    [12] Zizhen Wang, Ruihe Wang, Doudlas R. Schmitt. The elastic moduli and velocities of artificial carbonate rocks with known pore structure at different saturation conditions. CSEG, GeoConvention& Core Conference, May 4-8, 2015, Calgary, AB, Canada. (Poster)
    [13] Xun Shan, Zizhen Wang, Ruihe Wang, et al. Influences of Fracture Angle on the Ultrasonic Compressional Wave Velocity [C]. Applied Mechanics and Materials, 2014, 528: 285-290.
    [14] Wang Zizhen, Wang Ruhe, Bu Yuhuan, et al. A New method of Preparing Artificial Cores with Certain Cracks for Experiment Study of Elastic Wave Propagation [C]. International Conference on Energy, Environment and Sustainable Development (ICEESD 2011), Advanced Materials Research, 2012, 356-360: 2954-2957.
    [15] Wang Zizhen, Wang Ruihe, Bu Yuhuan, et al. Integrated Risk Assessments of Deep Well Drilling under Complicated Conditions Using Fault Tree Analysis: a Case Study of Northeast Sichuan [C]. Resources and Engineering: 2010 SREE Conference on Resources and Engineering, Advanced Engineering Research, 2010, 4: 79-84.



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