win德赢手机版下载

陈绪跃

发布时间:2026-09-02来源:


姓名:陈绪跃

姓名:陈绪跃

职称:教授

职务:海洋油气工程系教工党支部书记


win德赢手机版下载及工作经历

2007.9-2011.7,长江大学,石油工程,本科

2011.9-2017.7,win德赢手机版下载(北京),油气井工程,硕博连读

2015.8-2016.10,美国The University of Texas at Austin,石油工程,win德赢手机版下载公派联合培养博士

2017.9-2020.7,win德赢手机版下载(北京),助理研究员

2020.7-2025.6,win德赢手机版下载(北京),副研究员

2025.7-至今,win德赢手机版下载(北京),教授/研究员


电子邮箱:chenxuyue2011@163. com; chenxuyue@visitkutahya.com

所在系所:海洋油气工程

教学情况:

研究方向:海洋钻井力学与提速方法

win德赢手机版下载方向:


代表性论文著作:

[1] Xuyue Chen, Jin Yang, Deli Gao, et al. Unlocking the deepwater natural gas hydrates commercial potential with extended reach wells from shallow water: Review and an innovative method. Renewable and Sustainable Energy Reviews, 2020, 134: 110388. (SCI, IF=18) 对照阅读

[2] Xuyue Chen, Xu Du, Jin Yang, Deli Gao, et al. Developing offshore natural gas hydrate from existing oil & gas platform based on a novel multilateral wells system: Depressurization combined with thermal flooding by utilizing geothermal heat from existing oil & gas wellbore. Energy, 2022, 258: 124870. (SCI, IF=10.1) 延伸阅读

[3] Qiqi Yang, Xuyue Chen, Pu Huang, ea tl. Numerical and Experimental Investigation on the Wellbore Stability for Horizontal Drilling in Deep Coal Seams with Partings. Rock Mechanics and Rock Engineering, 2026, 59: 5365-5386. (SCI, IF=7.1) 继续了解

[4] Xuyue Chen, Tong Cao, Kaian Yu, Deli Gao, ea tl. Numerical and experimental investigation on the depressurization capacity of a new type of depressure-dominated jet mill bit. Petroleum Science, 2020, 17(6):1602-1615. (SCI, IF=6.4)

[5] Xuyue Chen, Chengkai Weng, Lin Tao, Jin Yang, Deli Gao, et al. A novel method for predicting formation pore pressure ahead of the drill bit by embedding petrophysical theory into machine learning based on seismic and logging-while-drilling data. Petroleum Science, 2025, 22(7): 2868-2883. (SCI, IF=6.4)

[6] Tong Cao, Xuyue Chen, Kaian Yu, et al. Hydraulic modeling and optimization of jet mill bit considering the characteristics of depressurization and cuttings cleaning. Petroleum Science, 2023, 20(5): 3085-3099. (SCI, IF=6.4)

[7] Xuyue Chen, Jin Ming, Jin Yang, Deli Gao, et al. Numerical investigation on the flow field characteristics of a new type of double-stage jetting PDC bit for deepwater shallow formations drilling. Ocean Engineering, 2024, 313: 119463. (SCI, IF=6.3)

[8] Xuyue Chen, Chengkai Weng, Xu Du, Jin Yang, Deli Gao, et al. Prediction of the rate of penetration in offshore large-scale cluster extended reach wells drilling based on machine learning and big-data techniques. Ocean Engineering, 2023, 285: 115404. (SCI, IF=6.3)

[9] Xuyue Chen, Xu Du, Chengkai Weng, Jin Yang, Deli Gao, et al. A real-time drilling parameters optimization method for offshore large-scale cluster extended reach drilling based on intelligent optimization algorithm and machine learning. Ocean Engineering, 2024, 291: 116375. (SCI, IF= 6.3)

[10] Xuyue Chen, Qiqi Yang, Jin Yang, Deli Gao, et al. The stress field simulation of a novel M-type convex stepped bottomhole and the rate of penetration enhancement mechanism of a new type of central-grooved PDC bit for offshore deep & ultradeep well drilling. Ocean Engineering, 2024, 293: 116706. (SCI, IF= 6.3)

[11] Xuyue Chen, Deli Gao. The Maximum Allowable Well Depth While Drilling of Ultra-Extended-Reach Drilling from Shallow Water to Deepwater Target. SPE Journal, 2018, 23(1), 224-236. (SCI, IF= 2.9)

[12] Xuyue Chen, Deli Gao, Boyun Guo. A Method for Optimizing Jet-Mill-Bit Hydraulics in Horizontal Drilling. SPE Journal, 2016, 21(2), 416-422. (SCI, IF= 2.9)

[13] Xuyue Chen, Qiqi Yang, Naitong Yang, Deli Gao, et al. The bottomhole stress field analysis and the rate of penetration enhancement mechanism of a new type of central-grooved single-cone/multi-blade hybrid bit for deep well drilling, Geoenergy Science and Engineering, 2024, 233: 212485. (SCI, IF= 4.4)

[14] Xuyue Chen, Deli Gao, Boyun Guo, and Yongcun Feng. Real-time optimization of drilling parameters based on mechanical specific energy for rotating drilling with positive displacement motor in the hard formation. Journal of Natural Gas Science and Engineering, 2016, 35, 686-694. (SCI, IF= 5.9)

[15] Xuyue Chen, Deli Gao, Boyun Guo. Optimal design of jet mill bit for jet comminuting cuttings in horizontal gas drilling hard formations. Journal of Natural Gas Science and Engineering, 2016, 28, 587-593. (SCI, IF= 5.9)

[16] Xuyue Chen, Deli Gao, Boyun Guo, ea tl. A new method for determining the minimum gas injection rate required for hole cleaning in horizontal gas drilling, Journal of Natural Gas Science and Engineering, 2014, 21: 1084-1090 (SCI, IF= 5.9)

[17] Xuyue Chen, Deli Gao, Jin Yang, ea tl. A comprehensive wellbore stability model considering poroelastic and thermal effects for inclined wellbores in deepwater drilling, Journal of Energy Resources Technology, 2018, 140(9): 092903. (SCI, IF= 2.8)

[18] Xuyue Chen, Honghai Fan, Boyun Guo, Deli Gao, ea tl. Real-time prediction and optimization of drilling performance based on a new mechanical specific energy model, Arabian Journal for Science and Engineering, 2014, 39(11): 8221-8231. (SCI, IF= 3.1)

[19] Xuyue Chen, Rong Wang, Jin Yang, Deli Gao, et al. A new intelligent optimization method for drilling parameters of extended reach wells based on mechanical specific energy and machine learning. Petroleum Research, 2025, 10(3): 485-500. (ESCI/EI, IF= 3.8)

[20] 陈绪跃, 金铭, 杨进, 高德利, . 深水浅层内外排屑双级喷射PDC钻头二开钻进井底流场特性[J]. 中南大学学报(自然科学版), 2025, 56(7): 2848-2858. EI

[21] Xuyue Chen, Jin Yang, Deli Gao. Real-Time Optimization of Drilling Performance Based on Mechanical Specific Energy Technologies. Drilling, Croatia: InTech Press, 2018, PP.133-161. ISBN: 978-953-51-6015-1.


代表性专利与软著:

1陈绪跃, 高德利, 杨进. 内排屑射流降压钻头. ZL201710732940.3.

2陈绪跃, 高德利, 杨进. 内排屑脉冲射流降压钻头. ZL201710732982.7.

3陈绪跃, 杨奇奇, 杨进, 高德利, . 内凹型PDC钻头. ZL202310004617.X.

4陈绪跃, 杨乃通, 杨进, 高德利,. PDC与单牙轮复合的内排屑钻头. ZL202010692025.8.

5陈绪跃, 金铭, 杨进, 高德利, . 正反转PDC钻头. ZL 202311509065.4.

6陈绪跃, 金铭, 杨进, 高德利, . 离心式防卡钻的PDC钻头. ZL 202311161533.3.

7陈绪跃, 高德利, 杨进. 内排屑射流降压钻柱短节. ZL201710732938.6.

8陈绪跃, 高德利, 杨进. 内排屑脉冲射流降压钻柱短节. ZL201710732981.2.

9陈绪跃, 金铭, 杨进, 高德利, . 推进补偿节及钻井设备. ZL 202411777821.6.

10win德赢手机版下载(北京). 浅层大位移井旋转钻进工况机械延伸极限预测软件. 2020SR0342465.

11win德赢手机版下载(北京). 基于钻井安全控制的大位移井延伸能力计算软件. 2021SR1150550.

12win德赢手机版下载(北京). 基于井控风险控制的高温高压水平井延伸能力预测软件. 2021SR1150556.

13win德赢手机版下载(北京). 大斜度井安全钻井液密度窗口计算系统. 2021SR1001681.

14win德赢手机版下载(北京). 大位移井钻井液临界循环排量计算软件. 2021SR1150551.

15win德赢手机版下载(北京). 基于机械比能与机器win德赢手机版下载的大位移井钻井参数智能优化软件. 2024SR1557590.


主要科学研究项目:

1win德赢手机版下载自然科学基金面上项目,深部凸型阶梯井底岩石破碎力学与内凹型单牙轮-PDC复合钻头提速机理研究,负责

2win德赢手机版下载自然科学基金青年基金,水平井射流磨钻头粉碎钻屑与提高钻速的机理研究。负责

3win德赢手机版下载科技重大专项,复杂结构井、丛式井设计与控制新技术,子课题负责

4工信部win德赢手机版下载高技术船舶项目,极地冷海大位移井及表层建井技术研究,子课题负责

5win德赢手机版下载自然科学基金创新研究群体项目,复杂油气井钻井与完井基础研究,骨干

6win德赢手机版下载自然科学基金重大项目,深海多金属结核高效采输系统设计基础理论研究,骨干

7中海油技术攻关项目,高温高压水平井关键技术研究,负责

8中海油技术攻关项目,陆丰古近系油田井壁稳定性及综合提速研究,负责

9中海油技术攻关项目,渤海浅层大位移井延伸极限研究,技术负责

10中海油技术攻关项目,疏松地层超大位移井安全提效工艺配套技术研究,技术负责


重要奖励与荣誉:

1北京市人民政府, 科学技术进步二等奖, 排名11/10, 2025.

2中国海洋工程咨询协会, 科学技术进步二等奖, 排名11/9, 2023.

3中国石油和化学工业联合会, 科技进步二等奖, 排名11/10, 2022.

4山东省人民政府, 技术发明一等奖, 排名99/15, 2024.

5上海市人民政府, 科学技术进步二等奖, 排名55/10, 2020.

6win德赢手机版下载部学位与研究生win德赢手机版下载发展中心, 学位中心工程案例, 排名22/6, 2025.

7中国石油win德赢手机版下载学会, 石油高等win德赢手机版下载教学成果一等奖, 排名22/15, 2024.

8北京市win德赢手机版下载德育研究会, 北京市大中小幼教师讲述育人故事一等奖, 5讲述人, 2025.

9win德赢手机版下载(北京), 优秀教学成果特等奖, 排名55/15, 2024.

10win德赢手机版下载(北京), 优秀教学成果一等奖, 排名44/15, 2021.


社会与学术兼职:

1SPE会员

2Scientific Reports》编委

3International Journal of Mining Science and Technology》、《Petroleum Science》和《Unconventional Resources》青年编委

4Renewable & Sustainable Energy Reviews》、《Energy Conversion and Management》、《Energy》、《Ocean Engineering》、《Journal of Natural Gas Science and Engineering》、《Journal of Petroleum Science and Engineering》、《Petroleum Science》、《Oil & Gas Science and Technology》、《Physics of Fluids》、《Marine Georesources & Geotechnology》、《Geomechanics and Geophysics for Geo-Energy and Geo-Resources》、《Petroleum Research》等国际学术期刊审稿人

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