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[12] 2019.12-2020.12 £¬Öж«Ì¼ËáÑÎÑÒÓͲØË®Çý¿ª·¢ÖÇÄÜÉú²úÓÅ»¯ÒªÁìÓëÈí¼þÑз¢ £¬ÖйúʯÓÍ¿±Ì½¿ª·¢Ñо¿ÔººáÏò¿ÎÌâ £¬Ö÷³Ö


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[1] ¡¶ÖØ´óÓͲØÎïÀí»¯Ñ§Î¢¹ÛÉøÁ÷ÀíÂÛÓëÊÖÒÕ¡· £¬Ñ§ÊõרÖø £¬¿­Ê±³öÊéÉç £¬2023 £¬ISBN 978-7-5636-8065-8.

[2] Lattice-Boltzmann simulation of Two-phase flow in carbonate porous media retrieved from computed Microtomography. Chemical Engineering Science, 2023, 270: 118514. SCIÊÕ¼

[3] Phase-Field Modeling of Pore-Scale Oil Replacement by Spontaneous Imbibition in Fractured Porous Media. Energy & Fuels, 2022, 36(24): 14824-14837. SCIÊÕ¼

[4] Study on Oil Recovery Mechanism of Polymer-Surfactant Flooding Using X-ray Microtomography and Integral Geometry. Molecules, 2022, 27 (23), 8621. SCIÊÕ¼

[5] A Novel Dynamic Reserve Evaluation Method by Division between Oil and Water in Isolated Fractured-caved Carbonate Reservoirs. Journal of Petroleum Science and Engineering, 2022, 214, 110440. SCIÊÕ¼

[6] Permeability Change Induced by Dissociation of Gas Hydrate in Sediments with Different Particle Size Distribution and Initial Brine Saturation. Marine and Petroleum Geology, 2021, 123, 104749. SCIÊÕ¼

[7] Adaptive Prediction of Enhanced Oil Recovery by N2 huff-n-puff in Fractured-Cavity Reservoir Using an FNN-FDS Hybrid Model. Applied Sciences, 2021, 11(19), 8871. SCIÊÕ¼

[8] Study of Hydrate Occupancy, Morphology, and Microstructure Evolution with Hydrate Dissociation in Sediment Matrices Using X-ray micro-CT. Marine and Petroleum Geology, 2020, 113, 104138. SCIÊÕ¼

[9] Rate Transient Analysis for Coupling Darcy Flow and Free Flow in Bead-string Fracture-caved Carbonate Reservoirs. Journal of Petroleum Science and Engineering, 2020, 195, 107809. SCIÊÕ¼

[10] A Fast Method of Waterflooding Performance Prediction for Large-scale Thick Carbonate Reservoirs. Journal of Petroleum Science and Engineering, 2020, 192, 107227. SCIÊÕ¼

[11] Oil Recovery for Fractured-Vuggy Carbonate Reservoirs by Cyclic Water Huff and Puff: Performance Analysis and Prediction. Scientific Reports, 2019, 9(1): 1-12. SCIÊÕ¼

[12] An Efficient Hybrid Model for Nonlinear Two-Phase Flow in Fractured Low Permeability Reservoir. Energies, 2019, 12(15), 2850. SCIÊÕ¼

[13] Improved CRM Model for Inter-well Connectivity Estimation and Production Optimization: Case Study for Karst Reservoirs. Energies, 2019, 12(5), 816. SCIÊÕ¼

[14] An Efficient and Environmental-friendly Dispersant Based on the Synergy of Amphiphilic Surfactants for Oil Spill Remediation. Chemosphere, 2019, 215: 241-247. SCIÊÕ¼

[15] Environmental and Economic Benefits of Solvent-Assisted Steam-Gravity Drainage for Bitumen through Horizontal Well: A Comprehensive Modeling Analysis. Energy, 2018, 164: 418-431. SCIÊÕ¼

[16] Experimental Study of Effective Amphiphilic Graphene Oxide Flooding for an Ultralow- Permeability Reservoir. Energy & Fuels, 2018, 32(11): 11269-11278. SCIÊÕ¼

[17] Effect of Gas Hydrate Formation and Decomposition on Flow Properties of Fine-grained Quartz Sand Sediments Using X-ray CT based Pore Network Model Simulation. Fuel, 2018, 226: 516-526. SCIÊÕ¼

[18] Ensemble-based Optimization of Interwell Connectivity in Heterogeneous Waterflooding Reservoirs. Journal of Natural Gas Science and Engineering, 2017, 38: 245-256. SCIÊÕ¼

[19] Integrated Dynamic Evaluation of Depletion-drive Performance in Naturally Fractured-Vuggy Carbonate Reservoirs Using DPSO-FCM Clustering. Fuel, 2016, 181: 996-1010. SCIÊÕ¼

[20] Estimation of Water-Oil-Gas Relative Permeability Curve from Immiscible WAG Coreflood Experiment Using the Cubic B-spline Model. Petroleum Science, 2016, 13(3): 507-516. SCIÊÕ¼

[21] X-ray MCT based Numerical Analysis of Residual Oil Pore-scale Characteristics for Core Sample under Various Displacing Systems. Journal of Petroleum Science and Engineering, 2015, 135: 168-176. SCIÊÕ¼

[22] Estimation of the Water¨COil Relative Permeability Curve from Radial Displacement Experiments. Part 1: Numerical Inversion Method. Energy & fuels, 2012, 26(7): 4291-4299. SCIÊÕ¼

[23] Ë®ºÏÎオѹÆÊÎöÀú³ÌÖгÁ»ýÎï¿×϶½á¹¹¶¯Ì¬ÑÝ»¯¼ÍÂÉ. ¿Æѧת´ï, 2020, 65(21): 2292-2302. EI¼ìË÷

[24] »ùÓÚÓÍË®²ú³ö¶¯Ì¬µÄË®ÇýÓͲØÁ¬Í¨ÐÔÆÀ¼ÛÐÂÒªÁì. Öйú¿Æѧ-ÊÖÒÕ¿Æѧ, 2017, 47(12): 1331-1340. EI¼ìË÷


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