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胡波文

来源:时间:2023-01-02点击数:

基本信息

姓名:胡波文

出生年月:1994年3月

学位:博士

研究领域:非常规油气开采、地质储氢

E-mail:hubowen@cumt.edu.cn

个人简介

胡波文,男,安徽阜阳人,师资博士后,2022年获中国矿业大学工程力学专业博士学位。主要从事非常规油气开采、地质储氢方面的研究,已发表SCI论文10余篇

教育经历

2019/9–2022/12,中国矿业大学,工程力学,博士,导师:王建国

2017/9–2019/7,中国矿业大学,固体力学,硕士,导师:王建国

2013/9–2017/7,河南理工大学,安全工程,学士

科研、学术与访学工作经历

2022/12-至今,中国矿业大学,深部岩土力学与地下工程国家重点实验室,博士后,导师:蔚立元

2021/5-2022/5,新加坡南洋理工大学,岩土工程,博士联合培养

主持或参与科研项目及人才计划项目情况

1. 中国矿业大学,“双一流”未来科学家计划,2019WLKXJ074,基于分形离散裂隙网络页岩气渗流机理研究,结题,主持。

2. 江苏省教育厅,研究生科研与实践创新计划项目,KYCX21_2178,页岩分形有机质中气体微观流动的格子Boltzmann模拟,2021-03至2022-03,结题,主持。

3. 国家自然科学基金委员会,重点项目,42030810,煤系气高效勘探开发的岩石力学地层理论方法体系研究,2021-01至2025-12,在研,参与.

4. 国家自然科学基金委员会,面上项目,51674246,裂隙页岩气藏多尺度扩散渗流理论研究,2017-01至2020-12,结题,参与.

代表性研究成果和学术奖励情况

.代表性论文

1.Hu B.W., Wang J. G. A lattice Boltzmann simulation on the gas flow in fractal organic matter of shale gas reservoirs. Journal of Petroleum Science and Engineering, 2022, 210: 110048.

2.Hu B.W., Wang J. G. Fractal microstructure effects on effective gas diffusivity of a nanoporous medium based on pore-scale numerical simulations with lattice Boltzmann method. Physical Review E, 2021, 104: 065304.

3.Hu B.W., Wang, J.G., Ma Z.G., Sang S.X. Permeability and thermal conductivity models of shale matrix with a bundle of tortuous fractal tree-like branching micropore networks. International Journal of Thermal Sciences, 2021, 164: 106876.

4.Hu B.W., Wang, J.G., Ma Z.G. A fractal discrete fracture network based model for gas production from fractured shale reservoirs. Energies, 2020, 13: 1857.

5.Hu B.W., Wang, J.G., Zhang K., Ye Z. A new triple-porosity multiscale fractal model for gas transport in fractured shale gas reservoirs. Journal of Natural Gas Science and Engineering, 2020, 78: 103335.

6.Wang J.G., Hu B.W., Wu D., Dou F.K., Wang X.L. A multiscale fractal transport model with multilayer sorption and effective porosity effects. Transport in Porous Media, 2019, 129: 25–51.

7.Hu B.W., Wang J.G., Li Z., Wang H. Evolution of fractal dimensions and gas transport models during the gas recovery process from a fractured shale reservoir. Fractals, 2019, 27(8): 1950129.

8.Wang J.G., Hu B.W., Soon J. Physical and mechanical properties of a bulk lightweight concrete with expanded Polystyrene (EPS) beads and soft marine clay. Materials, 2019, 12(10): 1662.

9.Wang J.G., Hu B.W., Liu H., Han Y., Liu J. Effects of ‘soft-hard’ compaction and multiscale flow on the shale gas production from a multistage hydraulic fractured horizontal well. Journal of Petroleum Science and Engineering, 2018, 170: 873–887.

10.Hu B.W., Wang J.G., Wu D., Wang H. Impacts of zone fractal properties on shale gas productivity of a multiple fractured horizontal well. Fractals, 2019, 27(2): 1950006.

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