ÐÕÃû£º¹¨ÎIJ¨
ÐÔ±ð£ºÄÐ
Ö°³Æ£º½²Ê¦£¨Ê¦×ʲ©Ê¿ºó£©
ËùÔÚϵËù£ºº£ÑóÓÍÆø¹¤³Ì
Email£ºwenbog@163.com
СÎÒ˽¼Ò¼ò½é
Ö÷Òª´ÓÊÂÑÒʯ¶à¿×½éÖʶàÏàÁ÷ÁìÓò£¬ÉÆÓÚ¿×±ê×¼¶àÏàÁ÷ÊýֵģÄ⣨¸ñ×Ó²£¶û×ÈÂüÒªÁìºÍ¶¯Ì¬¿×϶ÍøÂçÄ£×Ó£©ÒÔ¼°Á½ÏàÉøÁ÷΢Á÷¿ØʵÑ飻Ч¹ûÔÚFuel¡¢Advances in Water Resources¡¢Water Resources Research¡¢Journal of Fluid Mechanics¡¢Proceedings of the National Academy of Sciences of the United States of AmericaµÈ¹ú¼Ê¶¥¿¯ÉϽÒÏþ£¬¹²¼ÆSCIÂÛÎÄ20ƪ£»µÚÒ»/µÚ¶þ·¢Ã÷ÈËÊÚȨרÀû3¼þ£¬¹ÒºÅÈí¼þÖø×÷Ȩ2ÏÖ÷³Ö»ò¼ÓÈë±±¾©ÊÐ×ÔÈ»»ù½ðÇàÄêÏîÄ¿¡¢¹ú¼ÒÁ¢ÒìȺÌå¡¢¹ú¼ÒÖ÷ÒªÒÇÆ÷ÑÐÖÆ¡¢¹ú×ÔÈ»ÃæÉϺÍÇàÄêÏîÄ¿µÈÖØ´ó¿ÎÌâ¼°ÊÂÒµµ¥Î»ÏîÄ¿7Ïî¡£
½ÌÓý¼°ÊÂÇéÂÄÀú
2011.9-2015.7£¬Öйú¿óÒµ´óѧ£¨±±¾©£©£¬ÍÁľ½³³Ì£¬Ñ§Ê¿
2015.9-2021.1£¬Öйú¿óÒµ´óѧ£¨±±¾©£©£¬ÑÒÍÁ¹¤³Ì£¬²©Ê¿
2018.11-2019.11£¬ÃÀ¹úUniversity of Arizona, ÇéÐοÆѧ£¬¹ú¼Ò¹«ÅÉÍŽá×÷Óý²©Ê¿
2021.4-2024.1£¬Ç廪´óѧ£¬¹¤³ÌÁ¦Ñ§£¬ÖúÀíÑо¿Ô±£¨²©Ê¿ºó£©
2024.1-ÖÁ½ñ£¬¿Ê±£¨±±¾©£©£¬º£ÑóÓÍÆø¹¤³Ì£¬½²Ê¦£¨Ê¦×ʲ©Ê¿ºó£©
´ú±íÐÔÂÛÎÄ
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, ÖпÆÔº´óÀà2Çø)
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, ÖпÆÔº´óÀà2Çø)
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, ÖпÆÔº´óÀà2ÇøTop)
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, ÖпÆÔº´óÀà1Çø)
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 , ÖпÆÔº´óÀà1Çø)
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, ÖпÆÔº´óÀà2Çø)
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£¬ÖпÆÔº4Çø)
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.£¨SCI£¬IF=6.159£¬ÖпÆÔº´óÀà1Çø£©
Yang Ju, Chaodong Xi, Jiangtao Zheng, Wenbo Gong, Jianhao Wu, Shaojie Wang, Lingtao Mao. (2022) Study on three-dimensional immiscible water¨COil 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. (SCI£¬IF=9.219£¬ÖпÆÔº´óÀà1Çø)
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. (SCI£¬IF =3.252£¬ÖпÆÔº4Çø)
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. (SCI£¬IF = 9.219£¬ÖпÆÔº´óÀà1Çø£©
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. (SCI£¬IF = 3.083£¬ÖпÆÔº´óÀà2Çø)
ÊÚȨ·¢Ã÷רÀûÓë´ú±íÐÔÈí¼þ
Three-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
Porous structure three-dimentional model and forming method thereof, and rock porous structure fluid displacement stimulation testing system and transparent. 2022. GB2581606
Three-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
Ò»ÖÖ¿ÉÊÓ»¯¿×϶ģ×Óϴ媼°ÊÔÑéÊÓ²ìÅþÁ¬ÏµÍ³. CN201811603080.4
¸ß±¶Ë®ÇýÑÒÐÔ¶¯Ì¬×ª±äϵÄÓͲØÄ£ÄâÈí¼þ. 2023SR0163480 £¨Èí¼þÖø×÷Ȩ£©
»ùÓÚ¾Ö²¿×èÁ¦ÌØÕ÷µÄ¿×ºíÖ§½â³ÌÐò. 2022SR1562982£¨Èí¼þÖø×÷Ȩ£©
¿ÆÑÐÏîÄ¿
±±¾©ÊÐ×ÔÈ»¿Æѧ»ù½ðÇàÄêÏ¿×϶½á¹¹»ìÏýÈóʪÐÔ¶ÔCO2-ÓÍÁ½ÏàÉøÁ÷Ó°Ïì»úÀíµÄ¿×±ê×¼Ñо¿ÓëÉý±ê×¼ÆÊÎö£¬2022.01-2022.12£¬ÒѽáÌ⣬Ö÷³Ö
¹ú¼Ò»ù½ðίÁ¢ÒìÑо¿ÈºÌåÏîÄ¿£¬ÃºÌ¿×ÊÔ´ÂÌÉ«ÖÇÄÜÇå¾²¿ª²É£¬2022.01-2026.12£¬ÔÚÑУ¬¼ÓÈë
ÆóÊÂÒµµ¥Î»ÏîÄ¿£¬LBM΢Á÷¶¯Óë´«ÈÈ´«ÖÊÄ£¿é¿ª·¢£¬2021.08-2024.07£¬ÔÚÑУ¬¼ÓÈë
ÆóÊÂÒµµ¥Î»ÏîÄ¿£¬É°ÑÒ´¢²ã΢¹ÛÊ£ÓàÓͶ¯Ì¬±íÕ÷¼°¿×϶ÉøÁ÷Ä£ÄâÒªÁìÑо¿£¬2020.01-2023.05£¬ÒѽáÌ⣬¼ÓÈë
¹ú¼ÒÖØ´ó¿ÆÑÐÒÇÆ÷ÑÐÖÆÏîÄ¿£¬µÍÉø͸´¢²ãÑÒʯ³¬ÁÙ½çCO2ѹÁÑÓëÈýάӦÁ¦³¡¿ÉÊÓ»¯ÊµÑéϵͳ£¬2018.01-2022.12£¬ÒѽáÌ⣬¼ÓÈë
¹ú¼Ò×ÔÈ»¿Æѧ»ù½ðίÇàÄêÏîÄ¿£¬ÁÑ϶½éÖÊCO2-Ë®Á½ÏàÉøÁ÷ÓëÏûÈÚñîºÏ»úÖƵÄ΢¹ÛʵÑéÑо¿£¬2018.01-2020.12£¬ÒѽáÌ⣬¼ÓÈë
¹ú¼Ò×ÔÈ»¿Æѧ»ù½ðÃæÉÏÏîÄ¿£¬µÍÉø͸ÐÔÉ°ÀùÑÒË®Á¦Ñ¹ÁÑÁÑÎÆÈýάÀ©Õ¹ÐÐΪµÄÑо¿£¬2014.01-2017.12£¬ÒѽáÌ⣬¼ÓÈë