A modified model for aquathermolysis and its application in numerical simulation
Tài liệu tham khảo
Mozaffari, 2013, Numerical modeling of steam injection in heavy oil reservoirs, Fuel, 112, 185, 10.1016/j.fuel.2013.04.084
Kondoh, 2015, Catalytic cracking of heavy oil over TiO2 –ZrO2 catalysts under superheated steam conditions, Fuel, 167, 288, 10.1016/j.fuel.2015.11.075
Katritzky, 1996, Aquathermolysis: reactions of organic compounds with superheated water, Accounts Chem Res, 29, 399, 10.1021/ar950144w
Clark, 1984, Steam-oil chemical reactions: mechanisms for the aquathermolysis of heavy oils, Aostra J Res, 1, 15
Oki, 2015, Aquathermolysis of heavy oil: a review and perspective on catalyst development, Fuel, 157, 219, 10.1016/j.fuel.2015.04.065
Munawar, 2015, Hematite nanoparticles in aquathermolysis: a desulfurization study of thiophene, Fuel, 145, 214, 10.1016/j.fuel.2014.12.047
Chen, 2009, The viscosity reduction of nano-keggin-K3PMo12O40 in catalytic aquathermolysis of heavy oil, Fuel, 88, 1426, 10.1016/j.fuel.2009.03.011
Hou, 2017, Recyclable oleic acid modified magnetic NiFe2O4 nanoparticles for catalytic aquathermolysis of Liaohe heavy oil, Fuel, 200, 193, 10.1016/j.fuel.2017.03.005
Song, 2009, Aquathermolysis of conventional heavy oil with superheated steam, Pet Sci, 6, 289, 10.1007/s12182-009-0046-4
Burg, 1997, Prediction of kinematic viscosity of crude oil from chromatographic data, Fuel, 76, 1005, 10.1016/S0016-2361(97)00091-4
Ge, 2011, The relationship between the viscosity and fraction characteristics of the heavy oil of shengli oil field, Oilfield Chem, 28, 54
Clark, 1990, Studies on the chemical reactions of heavy oils under steam stimulation conditions, Aostra J Res, 6, 29
Clark, 1990, Studies on the effect of metal species on oil sands undergoing steam treatments, Aostra J Res, 6, 53
Belgrave, 1994, Gas evolution from the aquathermolysis of heavy oils, Can J Chem Eng, 72, 511, 10.1002/cjce.5450720317
Lamoureux-Var V, Lorant F. Experimental evaluation of H2S yields in reservoirrocks submitted to steam injection. In: 13th European Symposium on Improved OilRecovery, Budapest, Hungary, 25–27 April 2005.
Lamoureux-Var V, Lorant F. H2S articial formation as a result of steam injectionfor EOR: a compositional kinetic approach. In: SPE International Thermal Operationsand Heavy Oil Symposium, SPE 97810, Calgary, Alberta, Canada, 1–3 November 2005.
Perez-Perez A, Kamp AM, Soleimani H, Darche G. Numerical simulation of H2S and CO2 generation during SAGD. World Heavy Oil Congress, Edmonton, Alberta, Canada, 14–17 March 2011.
Ibatullin TR, Yang T, Petersen EB, Chan M, Rismyhr O, Tollefsen S. Simulation of hydrogen sulfide and carbon dioxide production during thermal recovery of bitumen. SPE Reservoir Characterisation and Simulation Conference and Exhibition, SPE 147934, Abu Dhabi, 9–11 October 2011.
Kapadia PR, Wang J, Kallos MS, Gates, ID. New thermal-reactive reservoir engineering model predicts hydrogen sulfide generation in Steam Assisted Gravity Drainage. J Petrol Sci Eng 2012:s94–95(5):100–11.
Kapadia, 2015, A review of pyrolysis, aquathermolysis, and oxidation of Athabasca bitumen, Fuel Process Technol, 131, 270, 10.1016/j.fuproc.2014.11.027
Gould, 1983, Influence of thermal processing on the properties of Cold Lake asphaltenes. 2. Effect of steam treatment during oil recovery, Fuel, 62, 370, 10.1016/0016-2361(83)90098-4
Belgrave, 1993, A comprehensive approach to in-situ combustion modeling, SPE Adv Technol Ser, 1, 98, 10.2118/20250-PA
Crookston, 1979, A numerical simulation model for thermal recovery processes, Soc Petrol Eng J, 19, 37, 10.2118/6724-PA
Xi, 2013, Numerical simulation of fire flooding for heavy oil reservoirs after steam injection: a case study on Block H1 of Xinjiang oilfield, Pet Explor Dev, 40, 715, 10.1016/S1876-3804(13)60102-0
Zhou, 2009, Experiment of aquathermolysis reaction between heavy oil and overheated steam, J Southwest Pet Instit, 31, 89
Hyne JB, Clark PD, Clarke RA, Koo J, Greidanus JW, Tyrer JD, et al. Aquathermolysis of Heavy Oils. In: Presented at the second international conference on heavy crudes and tar sands, UNITAR, Caracas, 7–17 February 1982.
Qin, 2009, A study on aquathermolysis for heavy oil upgrading under steam injection conditions, Oilfield Chem, 26, 402
Hyne JB. Aquathermolysis – a synopsis of work on the chemical reaction between water (steam) and heavy oil sands during simulated steam stimulations. AOSTRA synopsis report no. 50; 1986.
Siskin, 1991, Reactivity of organic compounds in hot water: geochemical and technological implications, Science, 254, 231, 10.1126/science.254.5029.231
Farid, 2017, The effect of CO on coal–biomass co-gasification with CO2, Fuel, 188, 98, 10.1016/j.fuel.2016.10.025
Fan H. Study and application of aquathermolysis for Liaohe heavy oils [D].Heilongjiang: Northeast Petrolenm University; 2002.
Fan, 2002, The study on composition changes of heavy oils during steam stimulation processes, Fuel, 81, 1733, 10.1016/S0016-2361(02)00100-X
Mohsenzadeh, 2017, Sequential deep eutectic solvent and steam injection for enhanced heavy oil recovery and in-situ upgrading, Fuel, 187, 417, 10.1016/j.fuel.2016.09.077
