Method for increasing oil recovery of heavy oil reservoirs through composite heat carrier

A composite heat carrier and heavy oil reservoir technology, which is applied in the field of composite heat carrier to enhance the recovery of heavy oil reservoirs, can solve the problems affecting the swept volume of the displacement phase, steam viscosity fingering, and great difference in viscosity, and achieve economical Effective oil recovery and the effect of enhanced oil recovery

Inactive Publication Date: 2016-01-06
CHINA PETROLEUM & CHEM CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Steam huff and puff and steam flooding are traditional heavy oil recovery technologies commonly used at present. However, due to the heterogeneity of reservoirs, high-permeability zones and micro-fracture zones often become channels for steam channeling. , hot water) and the displaced phase (heavy oil) have a great difference in viscosity, resulting in steam viscosity fingering and a large density difference, which causes gravity differentiation of the displacement phase in the oil layer, resulting in overburden problems, which seriously affect the displacement phase. Therefore, there is an urgent need for an effective method to suppress steam overburden and steam channeling, expand steam sweep coefficient, and improve heavy oil recovery.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] a. Inject a mixture of hot water and flue gas 0.2 times the pore volume of the formation, where the hot water injection rate is 150t / d, the temperature is 100°C, and the flue gas injection rate is 300t / d;

[0025] b. The foaming agent DHF-1 (synthesis of dodecyl benzene sulfonic acid SDBS + sulfonate) was prepared into a solution of 300,000 mg / L, and a mixture of hot water and flue gas was injected at an injection rate of 2.5t / d. Well 25d;

[0026] c. Inject a mixture of hot water and flue gas at a rate of 150t / d for 60 days;

[0027] d. Repeat steps b and c.

Embodiment 2

[0029] a. Inject a mixture of hot water and flue gas 0.15 times the pore volume of the formation at a rate of 150t / d;

[0030] b. Foaming agent FCY (main agent is heavy alkyl benzene sulfonate F-6 synthesized by isobutylene dimerization by-product and ethylene hexamerization by-product, auxiliary agent is anionic surfactant BS and alcohol ether non-ionic surface Active agent AEP1) is formulated into a solution of 500,000 mg / L, and injected into the injection well for 25 days with a mixture of hot water and flue gas at an injection rate of 1.5t / d;

[0031] c. Injection of hot water and flue gas mixture at 150t / d hot water injection rate and 300t / d flue gas injection rate for 60 days;

[0032] d. Repeat steps b and c.

Embodiment 3

[0034] a. Inject a mixture of hot water and flue gas of 0.15 times the pore volume of the formation, where the hot water injection rate is 120t / d, the temperature is 150°C, and the flue gas injection rate is 240t / d;

[0035] b. The foaming agent foaming agent DHF-1 (dodecylbenzene sulfonic acid SDBS+sulfonate synthesis) is formulated into a solution of 250,000 mg / L, and the injection rate is 2.4t / d with a mixture of hot water and flue gas. 30d water injection well;

[0036] c. Inject the mixture of hot water and flue gas for 80 days at a rate of 120t / d;

[0037] d. Repeat steps b and c.

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PUM

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Abstract

The invention discloses a method for increasing oil recovery of heavy oil reservoirs through a composite heat carrier, and particularly relates to a method for increasing oil recovery of heavy oil reservoirs through a composite heat carrier composed of hot water, a gas and a chemical agent. According to the method, crude oil recovery is increased, by injecting hot water and flue gas generated by boiler burning together into an oil layer, and by injecting a foaming agent by means of slug injection. The method includes the steps of a, injecting a mixture of hot water and flue gas 0.15-0.2 times the pore volume of a formation; b, injecting foaming agent solution into a water injection well for 25-30 d; c, injecting the hot water and flue gas mixture for 60-80 d; d, repeating the steps b and c. Water (vapor) can be effectively blocked from channeling, vapor wave and volume are increased, heavy oil recovery is substantially increased, and as the flue gas generated by burning is injected directly underground, heat efficiency can be improved and environmental pollution can also be reduced.

Description

Technical field [0001] The invention relates to the technical field of oil production in oil fields, in particular to a method for improving the recovery efficiency of heavy oil reservoirs with a composite heat carrier composed of hot water, gas and chemical agents. Background technique [0002] Heavy oil occupies a large proportion of the world's oil and gas resources. China's heavy oil asphalt resources are widely distributed. More than 70 heavy oil fields have been discovered in 12 basins, and heavy oil resources are abundant. The exploitation of heavy oil has great potential, and with the reduction of light oil reserves, the proportion of heavy oil exploitation in the 21st century will continue to increase. [0003] Steam huff and puff and steam flooding are currently commonly used traditional techniques for enhancing the recovery of heavy oil. However, due to the heterogeneity of the reservoir, high permeability zones and micro-fracture zones often become steam channeling chan...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B43/16E21B43/24E21B43/22E21B43/20
Inventor 赵红雨吴光焕刘祖鹏李伟忠唐亮杨艳霞韦涛牛丽娟刘西雷魏超平曹秋颖于建梅
Owner CHINA PETROLEUM & CHEM CORP
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