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Consistency Measures for Isoconversional Interpretation of In-Situ Combustion Reaction KineticsCHEN, B; CASTANIER, L. M; KOVSCEK, A. R et al.Energy & fuels. 2014, Vol 28, Num 1-2, pp 868-876, issn 0887-0624, 9 p.Article

Carbon isotope analysis: a new tool for monitoring and interpreting the in-situ combustion processHALLAM, R. J; MOORE, R. G; KROUSE, H. R et al.SPE reservoir engineering. 1990, Vol 5, Num 4, pp 517-523, issn 0885-9248, 7 p.Conference Paper

A TG/DTG kinetic model and its application in an in-situ combustion reservoir simulatorSAIM, S; VOSSOUGHI, S.Thermochimica acta. 1990, Vol 166, pp 219-230, issn 0040-6031, 12 p.Conference Paper

Kinetics of crude oil coke combustionVOSSOUGHI, S; EL-SHOUBARY, Y.SPE International symposium on Oilfield chemistry. 1987, pp 271-278Conference Paper

A new reaction model for low temperature oxidation of heavy oil: Experiments and numerical modelingKHANSARI, Zeinab; KAPADIA, Punitkumar; MAHINPEY, Nader et al.Energy (Oxford). 2014, Vol 64, pp 419-428, issn 0360-5442, 10 p.Article

Specificités de l'initiation electromagnétique de la combustion intercoucheSAYAKHOV, F. L; FATYKHOV, M. A; NASYROV, N. M et al.Inženerno-fizičeskij žurnal. 1987, Vol 53, Num 6, pp 1029-1030, issn 0021-0285Article

Thermogravimetric studies of systems pertinent to the in-situ combustion process for enhanced oil recovery. Part 1. Development of a high-pressure thermobalanceINDRIJARSO, S; OKLANY, J. S; MILLINGTON, A et al.Thermochimica acta. 1996, Vol 277, pp 41-52, issn 0040-6031Article

Experimental and simulation studies of laboratory in situ combustion recoveryONYEKONWU, M. O; PANDE, K; RAMEY, H. J. JR et al.Annual California regional meeting. 56. 1986, pp 483-496Conference Paper

Kinetics of «in-situ» combustion for oil recoveryHUGHES, R; KAMATH, V. M; PRICE, D et al.Chemical engineering research & design. 1987, Vol 65, Num 1, pp 23-28, issn 0263-8762Article

New dimensions in geophysics for reservoir monitoringGREAVES, R. J; BEYDOUN, W. B; SPIES, B. R et al.SPE formation evaluation. 1991, Vol 6, Num 2, pp 141-150, issn 0885-923X, 10 p.Article

Enhanced recovery of medium crude oil in heterogeneous reservoirs using air injection/in situ combustion-horizontal well technologyAL-HONI, M; GREAVES, M; ZEKRI, A. Y et al.Petroleum science and technology. 2002, Vol 20, Num 5-6, pp 655-669, issn 1091-6466Article

Improved residual light oil recovery by air injection (LTO process)GREAVES, M; REN, S.R; RATHBONE, R.R et al.Journal of Canadian Petroleum Technology. 2000, Vol 39, Num 1, pp 57-61, issn 0021-9487Article

Olefins from Karazhanbas crude produced by in situ combustionRYABOV, V. D; DAUDA, S; KOLESNIKOV, A. YU et al.Chemistry and technology of fuels and oils. 1996, Vol 32, Num 2, pp 109-113, issn 0009-3092Article

Simplified method for in situ combustion calculationsFAIRFIELD, W. H.Oil & gas journal. 1988, Vol 86, Num 8, issn 0030-1388, 45Article

Simulation de la récupération par combustion in situ. I. Etude du déplacement et de l'écoulement du pétroleENOMOTO, H; HONG CHENG-XIE; TANAKA, S et al.Sekiyu Gijutsu Kyokaishi. 1988, Vol 53, Num 3, pp 230-235, issn 0370-9868Article

Air injection for oil recoveryMOORE, G; MEHTA, R; URSENBACH, M et al.Journal of Canadian Petroleum Technology. 2002, Vol 41, Num 8, pp 16-19, issn 0021-9487, 4 p.Article

Performance evaluation of the MOCO-T in-situ combustion project, Midway-Sunset fieldCURTIS, J. H.California regional meeting. 1989, pp 623-632Conference Paper

Experimental basis for extending the oil recovery/volume burned method to wet and superwet combustionMOORE, R. G; BENNION, D. W; URSENBACH, M et al.Journal of Canadian Petroleum Technology. 1988, Vol 27, Num 6, pp 24-32, issn 0021-9487Article

In situ combustion process study using a combined experimental/analytical approachSIBBALD, L. R; MOORE, R. G; BENNION, D. W et al.Annual technical conference and exhibition. 1988, pp 179-191Conference Paper

Oil recovery by multiple quenched in situ combustionBOUSAID, S.SPE Annual technical conference and exhibition. 1987, pp 447-458Conference Paper

Evidence That Naturally Occurring Inhibitors Affect the Low-Temperature Oxidation Kinetics of Heavy OilFREITAG, N. P.Journal of Canadian Petroleum Technology. 2010, Vol 49, Num 7, pp 36-41, issn 0021-9487, 6 p.Article

In situ combustion delivers results : Production technologyGUPTA, Pankaj; DORAIAH, Adabala; RAY, Sibaprasad et al.World oil. 2007, Vol 228, Num 11, issn 0043-8790, 29-34 [4 p.]Article

Experimental and numerical analysis of dry forward combustion with diverse well configurationAKIN, Serhat; BAGCI, Suat; MUSTAFA VERSAN KOK et al.Energy & fuels. 2002, Vol 16, Num 4, pp 892-903, issn 0887-0624Article

Effect of heterogeneity on in-situ combustionAICKUTLU, Yücel; YORTSOS, Yannis C.Journal of petroleum technology. 2002, Vol 54, Num 6, issn 0149-2136, p. 56Conference Paper

Emissions from in situ oil firesFINGAS, M. F; KEN LI; TENNYSON, E. J et al.NIST special publication. 1994, Num 867, pp 39-46, issn 1048-776XConference Paper

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