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个人简介

受教育经历 1980.9-1984.7 学士学位 中国 吉林大学(原长春地质学院) 水文地质专业 1984.10-1987.7 硕士学位 中国 吉林大学(原长春地质学院) 水文地质专业 1991.10-1993.5 硕士学位 荷兰 Delft国际水力与环境工程学院 水文学 1993.6-1996.12 博士学位 西班牙 La Coruña大学 土木工程 1996.12-1998.11 博士后 美国 劳伦斯国家实验室 地球科学部 工作经历 1987.8-1991.10 主任科,工程师 中国 国土资源部 1998.11-2001.8 助理研究员 美国 劳伦斯国家实验室地球科学部(Earth Sciences Division, Lawrence Berkeley National Laboratory,USA) 2001.8-2006.6 副研究员 美国 劳伦斯国家实验室地球科学部 2006.6-2013 研究员 美国 劳伦斯国家实验室地球科学部 2010-现在 中国 吉林大学 获奖情况 2015年吉林省自然科学学术成果奖三等奖(许天福、王福刚、田海龙)

研究领域

地下水多组份反应溶质运移和水-岩相互作用数值模拟、CO2和核废料地质储置、地热能开发利用、天然气水合物优化开采模拟

近期论文

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(1)Tian H, Xu T, Li Y, et al. Evolution of sealing efficiency for CO 2 geological storage due to mineral alteration within a hydrogeologically heterogeneous caprock[J]. Applied Geochemistry, 2015, 63: 380-397.(SCI) (2)Na J, Xu T, Yuan Y, et al. An integrated study of fluid–rock interaction in a CO 2-based enhanced geothermal system: A case study of Songliao Basin, China[J]. Applied Geochemistry, 2015, 59: 166-177.(SCI) (3)Wei, X., Li, W., Tian, H., Li, H., Xu, H., & Xu, T. THC-MP: High performance numerical simulation of reactive transport and multiphase flow in porous media[J]. Computers & Geosciences, 2015, 80: 26-37.(SCI) (4)Lei H, Xu T, Jin G. TOUGH2Biot–A simulator for coupled thermal–hydrodynamic–mechanical processes in subsurface flow systems: Application to CO 2 geological storage and geothermal development[J]. Computers & Geosciences, 2015, 77: 8-19.(SCI) (5)Yang L, Xu T, Wei M, et al. Dissolution of arkose in dilute acetic acid solution under conditions relevant to burial diagenesis[J]. Applied Geochemistry, 2015, 54: 65-73.(SCI) (6)Xu T, Feng G, Hou Z, et al. Wellbore–reservoir coupled simulation to study thermal and fluid processes in a CO2-based geothermal system: identifying favorable and unfavorable conditions in comparison with water[J]. Environmental Earth Sciences, 2015, 73(11): 6797-6813.(SCI) (7)Zhang, Y. J., Li, Z. W., Yu, Z. W., Guo, L. L., Jin, X. P., & Xu, T. F. eva luation of developing an enhanced geothermal heating system in northeast China: Field hydraulic stimulation and heat production forecast[J]. Energy and Buildings, 2015, 88: 1-14.(SCI) (8)Xu T, Feng G, Shi Y. On fluid–rock chemical interaction in CO 2-based geothermal systems[J]. Journal of Geochemical Exploration, 2014, 144: 179-193.(SCI) (9)Yang L, Xu T, Yang B, et al. Effects of mineral composition and heterogeneity on the reservoir quality evolution with CO2 intrusion[J]. Geochemistry, Geophysics, Geosystems, 2014, 15(3): 605-618.(SCI) (10)Tian H, Pan F, Xu T, et al. Impacts of hydrological heterogeneities on caprock mineral alteration and containment of CO 2 in geological storage sites[J]. International Journal of Greenhouse Gas Control, 2014, 24: 30-42.(SCI) (11)Xu T, Yue G, Wang F, et al. Using natural CO 2 reservoir to constrain geochemical models for CO 2 geological sequestration[J]. Applied Geochemistry, 2014, 43: 22-34.(SCI) (12)Wang, T., Wang, H., Zhang, F., & Xu, T. Simulation of CO 2–water–rock interactions on geologic CO 2 sequestration under geological conditions of China[J]. Marine pollution bulletin, 2013, 76(1): 307-314.(SCI) (13)Tian H, Xu T, Wang F, et al. A numerical study of mineral alteration and self-sealing efficiency of a caprock for CO2 geological storage[J]. Acta Geotechnica, 2014, 9(1): 87-100.(SCI) (14)Xu T, Zheng L, Tian H. Reactive transport modeling for CO 2 geological sequestration[J]. Journal of Petroleum Science and Engineering, 2011, 78(3): 765-777.(SCI) (15)Xu T, Kharaka Y K, Doughty C, et al. Reactive transport modeling to study changes in water chemistry induced by CO 2 injection at the Frio-I Brine Pilot[J]. Chemical Geology, 2010, 271(3): 153-164.(SCI) (16)Xu T, Rose P, Fayer S, et al. On modeling of chemical stimulation of an enhanced geothermal system using a high pH solution with chelating agent[J]. Geofluids, 2009, 9(2): 167-177.(SCI) (17)Xu T. Incorporating aqueous reaction kinetics and biodegradation into TOUGHREACT: applying a multiregion model to hydrobiogeochemical transport of denitrification and sulfate reduction[J]. Vadose Zone Journal, 2008, 7(1): 305-315.(SCI) (18)Xu T, Senger R, Finsterle S. Corrosion-induced gas generation in a nuclear waste repository: Reactive geochemistry and multiphase flow effects[J]. Applied Geochemistry, 2008, 23(12): 3423-3433.(SCI) (19)Xu T, Apps J A, Pruess K, et al. Numerical modeling of injection and mineral trapping of CO 2 with H 2 S and SO 2 in a sandstone formation[J]. Chemical Geology, 2007, 242(3): 319-346.(SCI) (20)Xu T, Apps J A, Pruess K. Mineral sequestration of carbon dioxide in a sandstone–shale system[J]. Chemical geology, 2005, 217(3): 295-318.(SCI)

学术兼职

国家地热能源开发利用研究与应用技术推广中心技术委员会委员、中国地质调查局地热资源勘查中心技术委员会委员

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