Drainage method of non-cell-cementation cased-hole-completion coal bed gas horizontal well

A technology for horizontal wells and coalbed methane, applied in wellbore/well components, production fluids, earthwork drilling and production, etc., can solve unqualified cementing quality, cement slurry polluted coal seam, clean water sand-carrying fracturing scale and sanding intensity Minor problems, good drainage and gas recovery, low production and operation costs, and good fracturing effects

Active Publication Date: 2017-11-24
XIAN RES INST OF CHINA COAL TECH& ENG GROUP CORP
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Problems solved by technology

[0003] In view of the poor bonding strength between the cement sheath and the coal seam during the cementing of coalbed methane wells, resulting in unqualified cementing quality, and there are also problems such as cement slurry polluting the coal seam. At present, horizontal wells are completed with casing and no cementing.
In the development of CBM horizontal wells under non-cementing conditions, the uniform segmentation method is basically adopted based on the number of fracturing stages of the horizontal well, and the selection of fracturing segments is not targeted; the fracturing technology of non-cementing horizontal wells is still not perfect, The problem of channeling outside the fracturing pipe cannot be solved. The fracturing scale and sanding intensity carried by clean water are very small, and the fracturing effect of the coal seam is poor. The impact is serious, and under the condition of no cementing, the sand and pulverization of the coal seam are serious, resulting in the frequent occurrence of pump jamming and gas lock of the drainage equipment, which restricts the smooth progress of drainage and gas recovery of the coalbed methane horizontal well, and seriously affects the coalbed methane horizontal well. development effect
[0004] To sum up, the current non-cementing casing completion CBM horizontal well development technology has poor drainage effect and low drainage efficiency, and it is difficult to achieve large-scale and rapid reduction of CBM content in broken, soft and low-permeability coal seams, and it is difficult to achieve enhanced drainage. The purpose of mining coalbed methane effect

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  • Drainage method of non-cell-cementation cased-hole-completion coal bed gas horizontal well

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Embodiment Construction

[0031] The present invention is described in detail below in conjunction with accompanying drawing and specific embodiment:

[0032] see figure 1 , shows the non-cementing casing completion coalbed methane horizontal well drainage method of the present invention, which is used for the development of coalbed methane horizontal wells in soft and low-permeability coal seams.

[0033] The non-cementing casing completion coalbed methane horizontal well drainage method comprises the following steps:

[0034] Step 1: Determine the position of the horizontal well, determine the inclination of the coal seam according to the contour line of the coal seam floor, and determine the minimum principal stress direction according to the monitoring results of hydraulic fracturing fractures, and at the same time follow the inclination of the horizontal wellbore trajectory along the coal seam and the minimum principal stress parallel to the coal seam The position of the horizontal section of the...

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Abstract

The invention discloses a drainage method of a non-cell-cementation cased-hole-completion coal bed gas horizontal well. The method includes: a U-shaped butted well is used, the horizontal section of the horizontal well is deployed along the declination direction of a coal bed and a direction parallel to the minimum main stress of the coal bed, and well completion is performed by using casing running and an external self-expansion casing packer in a non-cell-cementation manner; the setting section, perforation and fracturing section of the external casing packer of the horizontal well are optimized; perforation is performed in a large-displacement and fixed-direction hydraulic abrasive perforation manner, and slug insertion type sand-carrying fracturing is performed on the horizontal well section by section in a large-displacement, large-scale, high-prepad-fluid-ratio and medium-sand-ratio manner; draining is performed at the wellhead of a drainage vertical well, and gas production is performed at the wellhead of the horizontal well. The drainage method has the advantages that pollution of a coal reservoir and production and operation costs can be lowered, the fracturing transformation effect and draining and gas production effect of the non-cell-cementation cased-hole-completion horizontal well are improved, the drainage efficiency and effect of the horizontal well are increased, the coal bed gas content of soft, broken and low-permeability coal beds can be lowered in a large-range and fast manner, and intensified coal bed gas drainage is achieved.

Description

technical field [0001] The invention relates to the technical field of surface coalbed methane development, in particular to a non-cementing casing completion coalbed methane horizontal well drainage method. Background technique [0002] With the continuous development of horizontal well development technology, breakthroughs have been made in the development effect of coalbed methane horizontal wells, which shows that horizontal wells are an effective method to realize rapid and efficient extraction of coalbed methane. At present, more than 95% of horizontal wells are completed using open hole and non-fracturing methods, and the horizontal section is drilled in coal seams, which has problems such as well wall collapse, drilling fluid pollution, and formation blockage, which also exposes unstable gas production. , low yield, fast decay and other characteristics. In order to improve the development effect of horizontal wells, casing completion was explored, and then staged fr...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E21B43/00
CPCE21B43/006
Inventor 许耀波杜新锋刘柏根徐建军乔康
Owner XIAN RES INST OF CHINA COAL TECH& ENG GROUP CORP
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