Method for improving recovery ratio of super heavy oil reservoir

A recovery factor and ultra-heavy oil technology, applied in the direction of production fluid, earthwork drilling, wellbore/well components, etc., can solve problems such as failure to break through production capacity, high viscosity of formation crude oil, and high seepage resistance of steam injection

Inactive Publication Date: 2015-10-14
CHINA PETROLEUM & CHEM CORP +1
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Problems solved by technology

Due to the large seepage resistance of steam injection and the small heating radius, the conventional steam huff and puff cannot break through the production capacity
[0005] 2. The thickness of the oil layer is not large (10-25m), which is at the lower limit of the conventional steam-assisted gravity drainage technology (15m). Steam injection leads to a large heat loss in the top and bottom cap layers, and the formed steam chamber is small in volume, which affects the development effect
The heterogeneity of Chunhui Oilfield is relatively large, and the horizontal pe

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  • Method for improving recovery ratio of super heavy oil reservoir
  • Method for improving recovery ratio of super heavy oil reservoir
  • Method for improving recovery ratio of super heavy oil reservoir

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Embodiment Construction

[0028] In order to make the above and other objects, features and advantages of the present invention more comprehensible, preferred embodiments are listed below and described in detail in conjunction with the accompanying drawings.

[0029] Such as figure 1 as shown, figure 1 It is a flow chart of a specific embodiment of the method for enhancing the recovery of ultra-heavy oil reservoirs of the present invention.

[0030] In step 101, two parallel horizontal wells are preheated. In the oil layer of the heavy oil reservoir, two parallel horizontal wells are deployed, located close to the bottom of the oil layer, and the two wells are kept at a certain distance. Using steam injection cycle preheating technology. Both horizontal wells adopt dual tubing structure. Among them, the long tubing is used to inject steam, and the steam injection rate is maintained at 50-80t / d; at the same time, the short tubing is used to discharge fluid at a constant bottomhole flow pressure, and...

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Abstract

The invention provides a method for improving the recovery ratio of a super heavy oil reservoir. The method for improving the recovery ratio of the super heavy oil reservoir comprises the following steps of: 1, preheating two horizontal wells in parallel distribution; 2, injecting steam into the upper part horizontal well, and maintaining the original stratum pressure in the lower part horizontal well for production; 3, simultaneously injecting steam, carbon dioxide and viscosity reducers into an oil layer through the upper part horizontal well, and maintaining the original stratum pressure in the lower part horizontal well for production; and 4, stopping the injection of the carbon dioxide and the viscosity reducers, continuously injecting the steam into the upper part horizontal well and maintaining continuous production of the lower part horizontal well. The method for improving the recovery ratio of the super heavy oil reservoir has the advantages that the viscosity of crude oil is greatly reduced; the heat loss of top and bottom cover layers is reduced; the steam enthalpy is improved; the elasticity energy of the stratum and fluid is increased; the flow seeping capability in near bore zones is improved; and the crude oil is recovered through the gravity effect so as to improve the recovery ratio of the super heavy oil reservoir.

Description

technical field [0001] The invention relates to the technical field of oil field development, in particular to a method for increasing the recovery rate of ultra-super heavy oil reservoirs by using steam + viscosity reducer + carbon dioxide to assist gravity drainage. Background technique [0002] Shengli Oilfield currently has proven heavy oil geological reserves of 6.4×10 8 t, of which the proven heavy oil in place in the eastern oil region is 5.89×10 8 t, currently used 4.69×10 8 t; Chunfeng and Chunhui oilfields were successively discovered in the western oil region, with proven geological reserves of 5128×10 4 t, currently used 2471×10 4 t. With the popularization and application of new theories and technologies, the annual output of Shengli heavy oil continues to grow, reaching 475×10 in 2012. 4 t is one of the main positions for the stable and increased production of Shengli Oilfield. [0003] In 2011, the Chunhui Oilfield in Shengli Western Oilfield reported 53...

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Application Information

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IPC IPC(8): E21B43/16
Inventor 孙焕泉王增林李振泉宋新旺吴光焕韦涛王传飞牛丽娟李伟忠赵红雨赵梅于建梅王可君刘西雷安洁陈明铭
Owner CHINA PETROLEUM & CHEM CORP
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