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- W2417188941 abstract "In this paper, the drive mechanisms, characteristics, and applicability of in situ combustion are introduced. Based on the mechanisms, an integrated device for physically modelling in situ combustion was built and its functions are described. By using this device, experiments were conducted to screen combustion parameters for a shallow, thin heavy oil reservoir with depths of 300-500 m, thickness of 3-6 m, and oil viscosity of 60{approximately}10,000 mPa-s. Experimental results indicated the feasibility of in situ combustion for this reservoir, with conclusions as follows: (1) This integrated device can properly model heat equilibrium conditions in the process of combustion in the reservoir, can be effectively used in numerical simulation for performance prediction and development designs, and can be applied to direct implementation of in situ combustion in the field (2) The in situ combustion process is feasible in reservoirs with similar properties as those mentioned above. Oil recovery can reach 49.7% at AOR = 3385 m{sup 3} (m{sup 3} air/m{sup 3} oil). (3.) In situ combustion technology has the advantages of comprehensively displacing oil; resulting in greater utilizing oil resources. It has great potential in recovering residual oil." @default.
- W2417188941 created "2016-06-24" @default.
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- W2417188941 date "1995-12-31" @default.
- W2417188941 modified "2023-09-26" @default.
- W2417188941 title "In situ combustion technology for heavy oil recovery" @default.
- W2417188941 hasPublicationYear "1995" @default.
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