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2013.11-2014.11 The University of Texas at Austin£¬²©Ê¿ÍŽá×÷Óý£¬µ¼Ê¦£ºKeith Johnston£¨ÃÀ¹ú¹¤³ÌԺԺʿ£©£¬Ian Duncan
2015.07-2017.07 ¹«º£²Ê´¬£¨±±¾©£©£¬º£ÑóÓÍÆø¹¤³Ìϵ£¬½²Ê¦
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[1]±¾ ¿Æ£º¡¶ÓͲãÎïÀí¡·£º¹ú¼ÒÒ»Á÷±¾¿Æ¿Î³Ì¡¢±±¾©¸ßУÓÅÖʿγ̡¢±±¾©¸ßУÓÅÖʽ̰¸¡¢Ð£°ÙÃÅÓÅÖʿγÌ-½ðÖÊÓſΡ¢Ôº¼¶Æ·ÅƿΡ¢¼ÌÐø½ÌÓýѧԺ¼¿Î¡¢ÓÍÌïÆóÒµÅàѵ
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[3]Ñо¿Éú£º¡¶Advanced natural gas engineering¡·£ºÈ«Ó¢Óïרҵ¿Î
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[1] Chen H, Zhang C, Yu H, et al. Application of machine learning to evaluating and remediating models for energy and environmental engineering. Applied Energy£¬ÖпÆÔº´óÒ»Çø TOP, 2022. (SCI/EI)
[2] A dynamic model of CO2 diffusion coefficient in shale based on the whole process fitting, Chemical Engineering Journal£¬ÖпÆÔº´óÒ»Çø TOP, 2022. (SCI/EI)
[3] Effects of CO2 injection volume and formation of in-situ new phase on oil phase behavior during CO2 injection for enhanced oil recovery (EOR) in tight oil reservoirs. Chemical Engineering Journal£¬ÖпÆÔº´óÒ»Çø TOP, 2023. (SCI/EI)
[4] A Novel Method of Quantitative Evaluation and Comprehensive Classification of Low Permeability-Tight Oil Reservoirs: A Case Study of Jidong Oilfield, China, Petroleum Science, 2022£¬¸ßÖÊÁ¿¿Æ¼¼ÆÚ¿¯T1ÆÚ¿¯, ÖпÆÔº´óÒ»Çø TOP, IF:4.757.
[5] A systematic step-wise approach for shale gas assessment in undeveloped prospects: A case study of Luresan shale gas area in Iran. Petroleum Exploration & Development, 2022, ¸ßÖÊÁ¿¿Æ¼¼ÆÚ¿¯T1ÆÚ¿¯, SCI/EI, ÖпÆÔº´óÒ»Çø TOP, IF:5.194.
[6] A Fractal Model of Low-Velocity Non-Darcy Flow Considering Viscosity Distribution and Boundary Layer Effect, Fractals£¬ÖпÆÔº´óÒ»Çø TOP, 2021. (SCI/EI)
[7] Experimental Study on Monitoring CO2 Sequestration by Conjoint Analysis of the P-wave Velocity and Amplitude, Environmental Science & Technology£¬ÖпÆÔº´óÒ»Çø TOP, 2013. (SCI/EI)
[8] Effects of miscible degree and pore scale on seepage characteristics of unconventional reservoirs fluids due to supercritical CO2 injection, Energy, ÖпÆÔº´óÒ»Çø TOP, 2022. (SCI/EI)
[9] A new prediction model of CO2 diffusion coefficient in crude oil under reservoir conditions based on BP neural network, Energy, ÖпÆÔº´óÒ»Çø TOP, 2022. (SCI/EI)
[10] Comparative analysis of oil characteristics and quartz sands on the thermal behavior and kinetics of crude oil in the whole temperature regions, Energy, ÖпÆÔº´óÒ»Çø TOP, 2020. (SCI/EI)
[11] A machine learning model for predicting the minimum miscibility pressure of CO2 and crude oil system based on a support vector machine algorithm approach, Fuel, ÖпÆÔº´óÒ»Çø TOP, 2021. (SCI/EI)
[12] Empirical Correlations for Prediction of Minimum Miscible Pressure and Near-miscible Pressure Interval for Oil and CO2 Systems, Fuel, ÖпÆÔº´óÒ»Çø TOP, 2020. (SCI/EI)
[13] Oil effect on CO2 foam stabilized by a switchable amine surfactant at high temperature and high salinity, Fuel, ÖпÆÔº´óÒ»Çø TOP, 2018. (SCI/EI)
[14] Experimental study on dynamic characteristics of low temperature oxidation for Bohai offshore light oil under reservoir conditions, Fuel, ÖпÆÔº´óÒ»Çø TOP, 2021. (SCI/EI)
[15] A systematic step-wise approach for shale gas assessment in undeveloped prospects: A case study of Lurestan shale gas area in Iran, Petroleum Exploration and Development, ÖпÆÔº´óÒ»Çø TOP, 2022. (SCI/EI)
[16] A new method for dynamic predicting porosity and permeability of low permeability and tight reservoir under effective overburden pressure based on BP neural network, Geoenergy Science and Engineering, TOP, 2023 (SCI/EI)
[17] A novel CO2-EOR potential evaluation method based on BO-LightGBM algorithms using hybrid feature mining, Geoenergy Science and Engineering, TOP, 2023
[18] Multiscale pore structure characterization of an ultra-deep carbonate gas reservoir,Journal of Petroleum Science and Engineering, J. of Petroleum Science and Engineering, TOP, 2022. (SCI/EI)
[19] Effect of gas contamination and well depth on pressure interval of CO2 near-miscible flooding, J. of Petroleum Science and Engineering, TOP, 2019. (SCI/EI)
[20] Study on Pressure Interval of Near-miscible Flooding by Production Gas Re-injection in QHD Offshore Oilfield, J. of petroleum science and engineering, TOP, 2017. (SCI/EI)
[21] Formulation and evaluation of a new multi-functional fracturing fluid system with oil viscosity reduction, rock wettability alteration and interfacial modification, Journal of Molecular Liquids, 2023. (SCI/EI)
[22] Experimental Study on Seismic Response during CO2 Sequestration with Different Phase State, J. of the Energy Institute, 2016. (SCI/EI)
[23] Study of Phase Behavior and Physical Properties of a Natural Gas Reservoir with High Carbon Dioxide Content, Greenhouse gases: Science and technology, 2016. (SCI/EI).
[24] Storage Mechanism and Dynamic Characteristics of CO2 Dissolution in Saline Aquifers, Energy & Fuels, 2023. (SCI/EI).
[25] Novel Way to Predict the MMP of a CO2¨COil System Using Stacking Models, Energy & Fuels, 2023
[26] Influence of heterogeneity on nitrogen foam flooding in low-permeability light oil reservoirs, Energy & Fuels, 2021. (SCI/EI)
[27] Influence of Pore Structure on Gas Flow and Recovery in Ultradeep Carbonate Gas Reservoirs at Multiple Scales, Energy & Fuels, 2021. (SCI/EI)
[28] A New Composite Viscosity Reducer for Abnormal Low Temperature Extra-Heavy Oil Reservoir with High Acid Value, Petroleum Chemistry, 2020. (SCI/EI)
[29] A new mathematical model considering adsorption and desorption process for productivity prediction of volume fractured horizontal wells in shale gas reservoirs, J. of Natural Gas Science and Engineering, 2014. (SCI/EI)
[30] Ultrasonic Detection and Analysis of Wax Appearance Temperature of Kingfisher Live Oil, Energy & Fuels, 2014. (SCI/EI)
[31] Potential evaluation of CO2 flooding for EOR and sequestration in YL oilfield of China, Int. J. of Global Warming, 2015. (SCI/EI)
[32] Experimental Study on Dynamic Characteristics of Shut-In and Restart Process in Water Drive Strong Heterogeneous Oil Reservoir, Geofluids, 2021. (SCI/EI)
[33] Effects of CO2 Injection on Phase Behavior of Crude Oil, J. of Dispersion Science and Technology, 2013. (SCI/EI)
[34] Non-equilibrium Features of N2 and Oil System, J. of Dispersion Science and Technology, 2013. (SCI/EI)
[35] Crude Oil Displacement Efficiency of Produced Gas Re-injection, Int. J. of Green Energy, 2013. (SCI/EI)
[36] Mechanism of Produced Gas Re-injection during CO2 Flooding by Chromatographic Analysis, J. of Dispersion Science and Technology, 2013. (SCI/EI)
[37] The influence mechanism and the contribution of capillary force and gravity to recovery in spontaneous imbibition in low permeability reservoirs, Journal of Dispersion Science and Technology, 2023. (SCI/EI)
[38] Water and Sand Control Technology Successfully Applied in Jidong Oilfield, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2013. (SCI/EI)
[39] Long Core Physical Simulation for CO2 Flooding in Low Permeability Reservoir, Int. J. of Oil, Gas and Coal Technology, 2014. (SCI/EI)
[40] Decreasing of pressure interval of near-miscible flooding by adding intermediate hydrocarbon components, Geosystem engineering, 2017. (EI)
[41] Experimental study on timing and pattern of gas injection in low permeability reservoir, Geosystem Engineering, 2014. (EI)
[42] The characteristics of CO2 front dynamic migration in low permeability sandstone oil reservoirs under different miscibility degrees, Geosystem Engineering, 2023. (EI)
[43] Dynamic Changes of Pore Structure During CO2 Mineral Sequestration in Shale. SPE Improved Oil Recovery Conference. 2022. (EI)
[44] Dynamic Behavior of Salt Dissolution and Its Effect on Imbibition in Inter-Salt Oil Reservoir Due to Fracturing Fluid Injection, SPE EuropEC - Europe Energy Conference featured at the 83rd EAGE Annual Conference & Exhibition, 2022. (EI)
[45] Empirical Correlation of Minimum Miscible Pressure of pure and impure CO2 Flooding, Carbon Management Technology Conference, Houston, Texas, USA, 15-18 July 2019. (EI)
[46] Near-Miscible Flooding by Production Gas Re-Injection in QHD 29-2 Offshore Oilfield, Offshore Technology Conference, 2017. (EI)
[47] Feasibility of Near-Miscible Flooding by Production Gas Rejection with Varying CO2 Content in Qinhuangdao Oilfield, Carbon Management Technology Conference, Houston, Texas, USA, 2017. (EI)
[48] ¸ßÄýÓÍÓͲØÔÓÍÎöÀ¯³¬Éù²¨Ì½²âÓëÆÊÎö£¬¿Æѧת´ï£¬2015.£¨½¹µã£©
[49] Ò³ÑÒ´¢²ãÈ˹¤ÁѺÛÑÒÑùÖƱ¸ÒªÁì¼°Ó¦Á¦Ãô¸ÐÐÔ£¬Ê¯ÓÍѧ±¨£¬2020. (EI)
[50] CO2ÇýÓÍÀú³ÌÖп׺í½á¹¹¶Ô´¢²ãÑÒʯÎïÐÔת±äµÄÓ°Ï죬ʯÓÍѧ±¨£¬2021. (EI)
[51] Íâò»ýЧӦ¶Ô²î±ðÐÔ×ÓÔÓÍÈÈÁ¦Ñ§ÐÐΪӰÏìÑо¿£¬»¯¹¤Ñ§±¨, 2021. (EI)
[52] Ö§³Ö¼Á»ØÁ÷¶ÔÒ³ÑÒÈ˹¤ÁѺ۵¼Á÷ÄÜÁ¦Ó°ÏìµÄʵÑéÑо¿£¬¹«º£²Ê´¬Ñ§±¨£¬2023.(EI)
[53] »ùÓÚÖ§³ÖÏòÁ¿»úµÄ¸ßº¬CO2ÄýÎöÆø²ØÓÍ»·Ìå»ýÕ¹ÍûÒªÁ졪¡ªÒÔ°ÍÎ÷Àï±´ÀÇø¿éΪÀý£¬¹«º£²Ê´¬Ñ§±¨£¬2023.(EI)
[54] ¸ßº¬CO2ÄýÎöÆø²Ø³É²ØÀú³ÌÖеÄÁ÷ÌåÏàÐÐΪ¼°ÓÍ»·Ìå»ýÕ¹ÍûÑо¿£¬¼ªÁÖ´óѧѧ±¨£¨µØÇò¿Æѧ°æ£©£¬2023.(EI)
[55] CO2½ü»ìÏàÇýµÄÒªº¦¿ÆѧÎÊÌâºÍÕ¹Íû£¬Ê¯ÓÍ¿Æѧת´ï£¬2020.£¨½¹µã£©
[56] Ò»ÖÖÐÂÐ͸ßεÍÉø͸ÓͲØ×¢Æø·À´Ü¾ÛºÏÎïÅÝÄϵͳ£¬ÓÍÌﻯѧ£¬2022.£¨½¹µã£©
[57] ´óÇìÓÍÌïM2Çø¿éÖÂÃÜÓͲطìÍøѹÁÑÖ±¾®³õÆÚ²úÄÜÕ¹Íû£¬Öйúº£ÉÏÓÍÆø£¬2021.£¨½¹µã£©
[58] »ùÓÚÖ§³ÖÏòÁ¿»úµÄÖÂÃÜÓͲØÌå»ýѹÁÑˮƽ¾®³õÆÚ²úÄÜÕ¹ÍûÑо¿£¬Öйúº£ÉÏÓÍÆø£¬2021£¨½¹µã£©
[59] dz̸ËþÀïľÓÍÌï¸ÄÉÆ×¢ÆøÇýÓÍЧ¹ûµÄһЩ¿ÆѧÎÊÌ⣬ÓÍÆøµØÖÊÓë²ÉÊÕÂÊ£¬2014£¨½¹µã£©
[60] CO2ÔÚÑÒʯ¿×϶½éÖÊÄÚÏà̬ÌØÕ÷µÄ³¬Éù²¨Ì½²âÓëÆÊÎö£¬ÆÊÎöÒÇÆ÷£¬2013£¨½¹µã£©
[61] ¶à¿×½éÖÊÄÚÁ÷ÌåÏà̬ÌØÕ÷³¬Éù²¨Ì½²âÑо¿Ï£Íû£¬Î÷ÄÏʯÓÍ´óѧѧ±¨(×ÔÈ»¿Æѧ°æ)£¬2013£¨½¹µã£©
[62] ÉøÁ÷Á¦Ñ§È«Ó¢ÎĿα¾¡¶Fluid Flow in Porous Media: Fundamentals and Applications¡·, World Scientific Publishing, 3/3
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[4] Ò³ÑÒÈ˹¤ÁѺÛÄÚÖ§³Ö¼Á»ØÁ÷µÄ±íÕ÷ÐÂÒªÁ죬µÚʮһ½ìÑÇÌ«Ò³ÑÒÓÍÆøôß·ÇͨÀýÄÜÔ´·å»á£¨ECF2021£©ÉϺ££¬2021.10£¬ÓÅÒìÂÛÎÄ
[5] µÍÉø͸¡¢ÖÂÃÜÓͲطÇÏßÐÔÉøÁ÷»úÀí¼°CO2ÇýÓÍ¡¢Âñ´æÒªº¦ÊÖÒÕ£¬¼½¶«ÓÍÌïÑо¿ÔºÊÖÒÕ½»Á÷£¬ºÓ±±ÌÆɽ£¬2021.8
[6] Problems and solutions in the application of machine learning algorithms in the energy field£¬2021 MIT A+B Applied Energy, ÏßÉÏ, 2021.8
[7] Volume prediction of oil ring for a condensate gas reservoir with high CO2 content in pre-salt lacustrine carbonate rock in santos basin, Brazil, PetroPhase Virtual Conference, E-Poster, ÏßÉÏ, 2021.6
[8] Íâò»ýЧӦ¶Ô²î±ðÐÔ×ÓÔÓÍÈÈÁ¦Ñ§ÐÐΪµÄÓ°ÏìÑо¿£¬µÚ¶þ½ìÖйúÓÍÆø¿ª²É¹¤³ÌÐÂÊÖÒÕ½»Á÷´ó»á£¬Õ¹°å£¬ËÄ´¨³É¶¼£¬2021
[9] »ùÓÚBPÉñ¾ÍøÂçµÄCO2-ÔÓÍϵͳ½ü»ìÏàѹÁ¦Çø¼äÕ¹Íû£¬µÚÈý½ìÖйúʯÓÍʯ»¯ÖÇÄÜ»¯ÊÖÒÕ½»Á÷»áôßʯÓÍʯ»¯ÆóÒµÊý×Ö»¯×ªÐÍá¯ÁëÂÛ̳£¬2021.4£¬ÓÅÒìÂÛÎĶþµÈ½±
[10] »ùÓÚÖ§³ÖÏòÁ¿»úµÄÖÂÃÜÓͲØÌå»ýѹÁÑˮƽ¾®³õÆÚ²úÄÜÕ¹ÍûÑо¿£¬µÚÈý½ìÖйúʯÓÍʯ»¯ÖÇÄÜ»¯ÊÖÒÕ½»Á÷»áôßʯÓÍʯ»¯ÆóÒµÊý×Ö»¯×ªÐÍá¯ÁëÂÛ̳£¬2021.4£¬ÓÅÒìÂÛÎÄÈýµÈ½±
[11] µÍÉø¡¢ÖÂÃÜ¡¢Ò³ÑÒÓͲØÓÐÓö¯ÓõÄÒªÁì¼°»úÀí̽ÌÖ£¬ÖÐʯ»¯Ñо¿ÔºÊÖÒÕ½»Á÷£¬¿ÚÍ·±¨¸æ£¬½ËÕÎÞÎý£¬2020.12
[12] µÍÉøÖÂÃÜÓͲØÓÐÓö¯ÓõÄÒªÁì¼°»úÀí£¬Öк£ÓÍÑо¿×ÜÔº¡°³íÓÍ»¯Ñ§ÇýÇýÓÍ»úÀíÓëÄ£ÄâÊÖÒÕÑо¿¡±2020ÄêЧ¹û×ܽύÁ÷»á£¬¿ÚÍ·±¨¸æ£¬±±¾©£¬2020.12
[13] µÍÉø-ÖÂÃÜÓͲØ×ۺϷÖÀ༰·ÖÀà½çÏßÈ·¶¨£¬µÚ¶þ½ì·ÇͨÀýÓÍÆø²Ø¿ª·¢ÓëÓÍÆø²Ø¶¯Ì¬¼à²âÊÖÒÕ×êÑлᣬ¿ÚÍ·±¨¸æ£¬ÓÅÒìÂÛÎĶþµÈ½±£¬º£ÄϺ£¿Ú£¬2020.10
[14] º£ÉÏÓÍÌï¸ßº¬CO2²ú³öÆø»Ø×¢ÊÖÒÕÑо¿Óë̽ÌÖ£¬2020º£²©»á-º£Ñó×ÊÔ´¿ª·¢ÂÛ̳£¬¿ÚÍ·±¨¸æ£¬¹ã¶«ÉîÛÚ£¬2020.10
[15] Study on dynamic phase behavior of oil and gas system during CO2 flooding£¬Ì¼ÖÎÀíÊÖÒÕ´ó»á (Carbon Management Technology Conference), E-Poster, ÃÀ¹úÐÝ˹¶Ù, 2019.7
[16] CO2-µØ²ãÓÍϵͳÏà¶ÔÉø͸ÂÊÇúÏßʵÑéÑо¿£¬Öк£ÓÍʵÑéÖÐÐĵÚÎå½ìʵÑéÊÖÒÕ½»Á÷»á£¬¿ÚÍ·±¨¸æ£¬Ìì½òÌÁ¹Á£¬2019.3
[17] ÓͲãÉøÁ÷ÎïÀíʵÑ飬Öк£ÓÍʵÑéÖÐÐÄÊÖÒÕ½»Á÷»á£¬¿ÚÍ·±¨¸æ£¬Ìì½òÌÁ¹Á£¬2019.8
[18] µÍÉøÌصÍÉøÓͲضàÔª½éÖÊÐîÄÜÌá²ÉÒªÁìÑо¿£¬¼½¶«ÓÍÌï¡°µÍÉø͸ÓͲØЧÒ濪·¢×¨Ï³ÌÑо¿¡±ÊÖÒÕ×êÑлᣬ¿ÚÍ·±¨¸æ£¬ºÓ±±ÌÆɽ£¬2019.3
[19] Near-Miscible Flooding by Production Gas Re-Injection in QHD 29-2 Offshore Oilfield, Offshore Technology Conference, Oral, °ÍÎ÷ÀïÔ¼ÈÈÄÚ¬, 2017.10
[20] Feasibility of Near-Miscible Flooding by Production Gas Rejection with Varying CO2 Content in Qinhuangdao Oilfield£¬Carbon Management Technology Conference£¨Ì¼ÖÎÀíÊÖÒÕ´ó»á£©, E-Poster, ÃÀ¹úÐÝ˹¶Ù, 2017.7
[21] Experimental study on injection strategy of CO2 near-miscible flooding in low permeability reservoirs with high water cut. International petroleum technology conference (IPTC), E-Poster, Ì©¹úÂü¹È, 2016.12
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