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  • 教师姓名: 胡映学
  • 性别: 男
  • 职称: 副教授
  • 博士生导师: 是
  • 硕士生导师: 是
  • 学历: 博士研究生毕业
  • 学位: 博士
  • 所在单位: 人居环境与建筑工程学院
  • 电子邮箱:
  • 办公地点: 创新港19-2026
  • 联系方式:

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教育与工作经历

2026年4月-至今 西安交通大学 人居环境与建筑工程学院 副教授

2026/04-now  Xi'an Jiaotong University Associate Professor

2022年6月-2026年4月 西安交通大学 人居环境与建筑工程学院 助理教授

2022/06-2026/04 Xi'an Jiaotong University Assistant Professor

2021年10月-2022年4月 日本东北大学 流体科学研究所 特任助理教授

2021/10-2022/04 Tohoku University Institute of Fluid Science  Special Appointed Assistant Professor

2018年9月-2021年9月 东京工业大学 工学院 博士研究生

2018/09-2021/09 Tokyo Institute of Technology School of Engineering Ph.D student

2015年9月-2018年7月 西安交通大学 能源与动力工程学院 硕士研究生

2015/09-2018/07 Xi'an Jiaotong University School of Energy and Power Engineering Master student

研究领域

研究聚焦于环境与能源领域中的多孔介质流动、传热传质及多相反应过程,结合实验可视化、数值模拟与工程应用,探索地下空间与能源装备中的复杂流动和传递现象。

 

【1】CO地质封存与地下碳循环

面向“双碳”目标,研究CO注入地下储层后的流动、迁移、捕集与矿化过程,揭示CO在复杂孔隙结构中的多相流动与反应传质机制。

CO毛细封存、溶解封存、矿物封存、多孔介质多相流、反应传质)

 

【2】地下水污染与原位修复

关注有机污染物进入地下含水层后的迁移、残留、溶解及修复过程,研究如何更高效地识别、去除地下环境中的持久性污染物。

主要方向:
(Pump-and-Treat、原位化学氧化(ISCO)、污染物迁移、地下水修复)

 

【3】油气资源高效开发

围绕复杂油气藏中的非均质流动、提高采收率与井筒安全问题,研究新型流体、颗粒及多相体系在多孔介质中的运移与调控机制。
    (CO
泡沫压裂、微球调驱/驱油、微乳液驱油、出砂机理与防砂技术)

 

【4】先进能源装备与强化传热

面向核能、聚变能源及低碳工业过程,研究极端条件下的流动与强化传热问题,探索高热流密度、高温及复杂结构中的高效热管理方法。
    (高温气冷堆、聚变包层、短流程炼钢)


欢迎环境科学与工程、工程热物理专业方向相关的同学报考。




代表性论文

2026年论文

1.      Hu, YX., Wang, K., Zhang, C.*, Suekane, T., Gu, Z., Su, J., 2026. Dissolution dynamics of nonaqueous phase liquid in fractional–wettability porous media. Int. J. Heat Mass Transf. 269, 129177.

2.      Hu, YX., Wang, K., Zhang, C., Suekane, T., Gu, Z., Su, J.*, 2026. Enhanced remediation of residual DNAPL by ethanol cosolvent flushing: Mass transfer behavior and empirical correlation. J. Hazard. Mater. 508, 141873.

3.      Hu, YX., Wang, H., Zhang, K., Zhang. C.*, Jiang, L.*, 2026. Impact of mineralogical heterogeneity on pore-scale dissolution patterns in binary mineral systems. Phys. Fluids 38, 062010.

4.      Hu, YX., Huang, G., Xu, Y., Wang, H., Gu, Z., Su, J.*, 2026. Pore-scale modeling of dynamic imbibition process in fractured porous media under self-adjusting pressure boundary condition. Geosystem Eng. 1–16.

5.      Hu, YX., Wang, K., Wang, H., Huang, H., Xu. W., Gu, Z., Su, J.*, Jin, H.*, 2026. Experimental investigation of the impact of mixed-wettability on capillary trapping using a real-rock microfluidic chip. Phys. Fluids 38, 042004.

6.      Hu, YX., Wang, HZ., Huang, HY., He, GH., Gu, ZL., Su, JW.*, 2026. Reaction-induced bubble dynamics control mineral dissolution kinetics at the microscale: Insights from microfluidics. Microfluidics and Nanofluidics.

7.       Huang GQ, Wang JT, Chen JJ, Meng W, Su JW, Hu YX.*, 2026. Pore-scale mechanisms of energy accumulation and pressure buildup during pre-fracturing injection in ultra-low permeability reservoirs. Energy Reports 15, 109336

8.       Wang BW., Hu YX.*, Sin S., Susanto W., Li ZJ., Wang KL., Matsushita S., Suekane. T., 2026. Pore-scale investigation of residual DNAPL remediation via in situ hydrogen peroxide oxidation in porous media. Mechanical Engineering Journal 13(3), 25-00195.

9.      Zhang CW., Zhang GW., Piao ZD., Chen YJ., Zheng WD. Hu YX.*, Dual pore network modeling of coupled gas transport and electrochemical reactions in the cathode catalyst layer considering oxygen diffusion barriers at void–ionomer connections. International Communications in Heat and Mass Transfer 180, 112525.

10.    Zhang, K., Zheng, S., Hu, YX., Li, Z., Suekane, T., Zhang, CW.*, 2026. Evolution of CO2 saturation patterns and mixing-limited reactive transport under variable cycling rates for underground gas storage with CO2 cushion gas. International Journal of Heat and Mass Transfer 270, 129213

11.    Li, ZJ., Wang, Y., Hu, YX., Kaito K., Suekane T., Zhang CW.*, 2026. Study of wettability-dependent solute mixing in the aqueous phase of oil–water fractional flow in silica sandstone: An X-ray tomography study. Chemical Engineering Science, 124211

2025年论文

12.    Hu, Y., Wang, H., Xu, W., Liu, H., He, L., Gu, Z., Su, J., 2025. Natural rock-derived microfluidic chip for probing multicomponent mineral dissolution dynamics. Lab Chip 25, 6703–6717.

13.    Hu, Y., Xu, Y., Dong, K., Kanda, Y., Gu, Z., Su, J., 2025. Effects of morphology of trapped CO2 bubbles on dissolution mass transfer in porous media: A pore-scale simulation. Phys. Fluids 37, 103330.

14.    Hu, Y., Xu, Y., Dong, K., Huang, G., Cai, M., Wang, Q., Gu, Z., Su, J., 2025. Pore-scale simulation of counter-current spontaneous imbibition in natural fractured porous media. Phys. Fluids 37, 083325.

15.    Hu, Y., Dong, K., Zhang, D., Wu, T., Xu, W., Gu, Z., 2025. Pore-scale numerical simulation of in situ microemulsion formation and enhanced oil recovery in porous media. Front. Chem. 13, 1–12.

16.    Wang, J., Hu, Y.*, Chu, X., Sun, G., Lu, T., 2025. Roles and thresholds of viscosity and interfacial tension in surfactant flooding for residual oil recovery. Front. Chem. 13, 1–22.

17.    Zhang, C., Wang, H., Zhang, L., Zhang, K., Cheng, Y., Hu, Y.*, 2025. Optimizing gas diffusion layer perforation and microporous layer coverage for enhanced mass transport in proton exchange membrane fuel cells: A lattice Boltzmann study. Phys. Fluids 37, 093338.

18.    Wang, J., Wan, XL,. Ren, JS., Zhu GG., Xu W.*, Hu, Y.*, 2025. Chemical incompatibility between formation and injection water: implications for oil recovery in porous media. Front. Chem. 13, 1621714.

2024年论文

19.    Xu YS., Hu YX., Chen KX., Liu YQ., Liu JG., Hao WW., Wu TJ., Huang CQ., Su JW. 2024. Characterization of dynamic interplay among different channels during immiscible displacement in porous media under different flow rates. The European Physical Journal E. 47, 69.

20.    Wu TJ., Wang T., Hu YX., Chen JJ., Su JW., 2024. Construction of middle-phase microemulsion system and its micro-mechanism on displacing residual oil in low-permeability porous media. Frontiers in Chemistry. 12, 1465706.

21.    Mo JL., Zhang CW., Zheng WD., Hu YX., Li ZJ., Suekane T., 2024. Influence of binder content on gas-water two-phase flow and displacement phase diagram in the gas diffusion layer of PEMFC: A pore network view. International Journal of Heat and Mass Transfer. 231, 125838.

22.    Chai GL., Hu YX., Liu HF., Li JB., Yu JB., Liu LJ., Su JW., 2024. Effect of the capillarity and viscosity on the change of flow paths during two-phase displacement in porous media. International Journal of Multiphase Flow. 172, 104695.

2023年及以前论文

23.    Patmonoaji, A., Tahta, M.A., Tuasikal, J.A., She, Y., Hu, Y.*, Suekane, T., 2023. Dissolution mass transfer of trapped gases in porous media: A correlation of Sherwood, Reynolds, and Schmidt numbers. Int. J. Heat Mass Transf. 205, 123860.

24.    Wang, W., Li, Z., She, Y., Hu, Y.*, Matsushita, S., Suekane, T., 2023. Effect of foam on miscible displacement in the Hele-Shaw cell with a chemical reaction approach. Phys. Fluids 35.

25.    She, Y., Zhang, C., Mahardika, M.A., Patmonoaji, A., Hu, Y.*, Matsushita, S., Suekane, T., 2021. Pore-scale study of in-situ surfactant flooding with strong oil emulsification in sandstone based on X-ray microtomography. J. Ind. Eng. Chem. 98, 247–261.

26.     Hu YX, A. Patmonoaji*, H. Xu, K. Kaito, S. Matsushita, T. Suekane, Pore-scale investigation on nonaqueous phase liquid dissolution and mass transfer in 2D and 3D porous media, Int. J. Heat Mass Transf. 169 (2021), 120901.

27.    Hu YX.*, A. Patmonoaji, C. Zhang, T. Suekane, Experimental study on the displacement patterns and the phase diagram of immiscible fluid displacement in three-dimensional porous media, Adv. Water Resour. 140 (2020) 103584.

28.     Hu YX.*, Y. She, A. Patmonoaji, C. Zhang, T. Suekane, Effect of capillary number on morphological characterizations of trapped gas bubbles: Study by using micro-tomography, Int. J. Heat Mass Transf. 163 (2020), 120508.

29.    Hu YX.*, J. Wang, J. Yang*, I. Mudawar, Q. Wang, Experimental study of forced convective heat transfer in grille-particle composite packed beds, Int. J. Heat Mass Transf. 129 (2019) 103112.

30.    Hu YX.*, J. Yang*, J. Wang, Q. Wang, Investigation of hydrodynamic and heat transfer performances in grille-sphere composite pebble beds with DEM-CFD-Taguchi method, Energy. 155 (2018) 909920.

31.    Hu YX.*,  Y. She, C. Zhang, A. Patmonoaji*, T. Suekane, Pore-scale investigation of wettability impact on residual nonaqueous phase liquid dissolution in natural porous media, Sci. Total Environ. (2021).

32.    J. Yang*, Hu YX., P. Qian, Z. Guo, Q. Wang, Experimental study of forced convective heat transfer in packed beds with uniform and non-uniform spheres, Heat Transf. Eng. 41 (2020) 351360.

33.     J. Yang*, Hu YX., Q. Wang, Investigation of effective thermal conductivity for ordered and randomly packed bed with thermal resistance network method, Energies. 12 (2019) 113.

34.    A. Patmonoaji, Hu YX., M. Nasir, C. Zhang, T. Suekane, Effect of bypassing induced by dissolution fingering on dissolution mass transfer in porous media, Water Resour. Res.. 57 (10), e2020WR029353

35.    A. Patmonoaji, Hu YX., C. Zhang, T. Suekane, Dissolution mass transfer of trapped phase in porous media, In: Porous Fluids - Advances in Fluid Flow and Transport phenomena in Porous Media, (ed.) Book Chapter, Intech (2021).

36.    J. Yang*, L. Zhou, Hu YX., S. Li, Q. Wang, Numerical study of forced convective heat transfer in structured packed beds of dimple-particles, Heat Transf. Eng. 39 (2018) 15851595.

37.    C. Zhang*, K. Kaito, Hu YX., A. Patmonoaji, S. Matsushita, T. Suekane. Influence of stagnant zones on solute transport in heterogeneous porous media at the pore scale, Physics of Fluids, (2021).

38.    C. Zhang*, Y. She, Hu YX., Z. Li, A. Patmonoaji, T. Suekane. Experimental investigation of solute transport in variably saturated porous media using X-ray Computed Tomography, Physics of Fluids,

39.    Y. She*, A. Mahardika, Hu YX., A. Patmonoaji, S. Matsushita, T. Suekane, Three-dimensional visualization of the alkaline flooding process with in-situ emulsification for oil recovery in porous media, J. Pet. Sci. Eng. (2021).

40.    A. Patmonoaji*, M. Muharrik, Hu YX., C. Zhang, T. Suekane, Three-dimensional fingering structures in immiscible flow at the crossover from viscous to capillary fingering, Int. J. Multiph. Flow. 122 (2020).

41.    C. Zhang*, T. Suekane, K. Minokawa, Hu YX., A. Patmonoaji, Solute transport in porous media studied by lattice Boltzmann simulations at pore scale and x-ray tomography experiments, Phys. Rev. E. 100 (2019).


主讲课程

本科生课程:《环境流体力学》、《环境社会学》、《城市与建筑风环境》

 

研究生课程:《微观渗流基础理论与模拟方法》


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