win德赢怎么用

龚文波

发布时间:2026-09-02来源:


姓名:龚文波

姓名:龚文波

职称:讲师(师资博士后)


win德赢怎么用及工作经历

2011.9-2015.7,中国矿业大学(北京),土木工程,学士

2015.9-2021.1,中国矿业大学(北京),岩土工程,博士

2018.11-2019.11,美国University of Arizona, 环境科学,win德赢怎么用公派联合培养博士

2021.4-2024.1,清华大学,工程力学,助理研究员(博士后)

2024.1-至今,win德赢怎么用(北京),海洋油气工程,讲师(师资博士后)


电子邮箱:wenbog@163.com

个人主页:

所在系所:海洋油气工程

教学情况:

研究方向:岩石多孔介质多相流

win德赢怎么用方向:


代表性论文著作:

[1] Wenbo Gong, Yang Liu, Chaodong Xi et al. (2024) Dynamic characterization of residual oil during long-term waterflooding experiments in heterogeneous porous structures. Fuel, 356(15), 129567. (SCI, IF =7.4,中科院大类1) 对照阅读

[2] Yang Liu, Wenbo Gong, Han Xiao, Moran Wang. (2024) A pore-scale numerical framework for solute transport and dispersion in porous media. Advances in Water Resources, 183, 104602. (SCI, IF=4.8, 中科院大类2) 延伸阅读

[3] Wenbo Gong, Yang Liu, Wenhai Lei, et al. (2023) Viscous coupling effect on hydraulic conductance in a square capillary tube. Advances in Water Resources. 182, 104568. (SCI, IF=4.8, 中科院大类2) 继续了解

[4] Wenhai Lei, Wenbo Gong, Moran Wang. (2023) Wettability effect on displacement in disordered porous media under preferential flow conditions. Journal of Fluid Mechanics, 975, A33. (SCI, IF=3.7, 中科院大类2Top)

[5] Wenhai Lei, Xukang Lu, Wenbo Gong, Moran Wang. (2023) Triggering interfacial instabilities during forced imbibition by depth variation in microfluidic porous media. PNAS. 12(50), e2310584120. (SCI, IF=12, 中科院大类1)

[6] Weiwei Zhu, Zhiqiang Chen, Yafan Yang, Wenbo Gong, Moran Wang. (2023) Impacts of T-type intersections on the connectivity and flow in complex two-dimensional fracture networks. Engineering Geology, 320:107122.(SCI, IF=6.902 , 中科院大类1)

[7] Yang Ju, Wenbo Gong, J. Zheng. (2022) Effects of pore topology on immiscible fluid displacement: Pore-scale lattice Boltzmann modelling and experiments using transparent 3D printed models. International Journal of Multiphase Flow, 152, 104085. (SCI, IF=4.044, 中科院大类2)

[8] Wenbo Gong, Jinhui Liu. (2022) Effect of wettability heterogeneity on water-gas two-phase displacement behavior in a complex pore structure by phase-field model. Energies, 15(20), 7685. (SCI, IF =3.252,中科院4)

[9] Yang Liu, Wenbo Gong, Yu Zhao, Xu Jin, Moran Wang. (2022) A pore-throat segmentation method based on local hydraulic resistance equivalence for pore-network modeling. Water Resources Research, 58, e2022WR033142.SCIIF=6.159,中科院大类1区)

[10] Yang Ju, Chaodong Xi, Jiangtao Zheng, Wenbo Gong, Jianhao Wu, Shaojie Wang, Lingtao Mao. (2022) Study on three-dimensional immiscible waterOil two-phase displacement and trapping in deformed pore structures subjected to varying geostress via in situ computed tomography scanning and additively printed models, International Journal of Engineering Science, 171: 103615. (SCIIF=9.219,中科院大类1)

[11] Yong Hu, Jiong Wei, Tao Li, Weiwei Zhu, Wenbo Gong, et al. (2022) Numerical Simulation of Fluid Flow in Carbonate Rocks Based on Digital Rock Technology. Energies, 15(10):3748. (SCIIF =3.252,中科院4)

[12] Yang Ju, Wenbo Gong, Wei Chang, Min Sun. (2020) Effects of pore characteristics on water-oil two-phase displacement in non-homogeneous pore structures: A pore-scale lattice Boltzmann model considering various fluid density ratios. International Journal of Engineering Science, 154, 103343. (SCIIF = 9.219,中科院大类1区)

[13] Yang Ju, Wenbo Gong, Jiangtao Zheng. (2019) Characterization of immiscible phase displacement in heterogeneous pore structures: parallel multicomponent lattice Boltzmann simulation and experimental validation using three-dimensional printing technology. International Journal of Multiphase Flow, 114:50-65. (SCIIF = 3.083,中科院大类2)


代表性专利与软著:

1Three-dimensional Pore Structure Model and Method for Fabricating the Same, Experiment System and Transparent Experiment Method for Replicating Fluid Displacement Process within Rock Pore Structure. 2022. US11391661B2

2Porous structure three-dimentional model and forming method thereof, and rock porous structure fluid displacement stimulation testing system and transparent. 2022. GB2581606

3Three-dimensional pore structure model and method for fabricating the same, experiment system and transparent experiment method for replicating fluid displacement process within rock pore structure. 2021. AU2018444642

4一种可视化孔隙模型清洗及试验观测连接系统. CN201811603080.4

5高倍水驱岩性动态变化下的油藏模拟软件. 2023SR0163480 (软件著作权)

6基于局部阻力特性的孔喉分割程序. 2022SR1562982(软件著作权)


主要科学研究项目:

1北京市自然科学基金青年项,孔隙结构混合润湿性对CO2-油两相渗流影响机理的孔尺度研究与升尺度分析,2022.01-2022.12,已结题,主持

2win德赢怎么用基金委创新研究群体项目,煤炭资源绿色智能安全开采,2022.01-2026.12,在研,参与

3企事业单位项目,LBM微流动与传热传质模块开发,2021.08-2024.07,在研,参与

4企事业单位项目,砂岩储层微观剩余油动态表征及孔隙渗流模拟方法研究,2020.01-2023.05,已结题,参与

5win德赢怎么用重大科研仪器研制项目,低渗透储层岩石超临界CO2压裂与三维应力场可视化实验系统,2018.01-2022.12,已结题,参与

6win德赢怎么用自然科学基金委青年项目,裂隙介质CO2-水两相渗流与溶解耦合机制的微观实验研究,2018.01-2020.12,已结题,参与

7、win德赢怎么用自然科学基金面上项目,低渗透性砂砾岩水力压裂裂纹三维扩展行为的研究,2014.01-2017.12,已结题,参与


个人简介

擅长孔尺度多相流数值模拟(格子玻尔兹曼方法和动态孔隙网络模型)以及两相渗流微流控实验;成果在主要从事岩石多孔介质多相流领域,FuelAdvances in Water ResourcesWater Resources ResearchJournal of Fluid MechanicsProceedings of the National Academy of Sciences of the United States of America等国际顶刊上发表,共计SCI论文20篇;第一/第二发明人授权专利3件,登记软件著作权2项;主持或参与北京市自然基金青年项目、win德赢怎么用创新群体、win德赢怎么用重要仪器研制、国自然面上和青年项目等重大课题及事业单位项目7项。


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