CN105507940B - One kind cuts envelope pressure integration and strengthens gas pumping device and method - Google Patents

One kind cuts envelope pressure integration and strengthens gas pumping device and method Download PDF

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CN105507940B
CN105507940B CN201610016804.XA CN201610016804A CN105507940B CN 105507940 B CN105507940 B CN 105507940B CN 201610016804 A CN201610016804 A CN 201610016804A CN 105507940 B CN105507940 B CN 105507940B
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cylinder
grouting
drilling
flexible pouch
fracturing
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CN105507940A (en
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倪冠华
程卫民
王刚
刘震
于岩斌
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Shandong University of Science and Technology
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    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21FSAFETY DEVICES, TRANSPORT, FILLING-UP, RESCUE, VENTILATION, OR DRAINING IN OR OF MINES OR TUNNELS
    • E21F7/00Methods or devices for drawing- off gases with or without subsequent use of the gas for any purpose
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B33/00Sealing or packing boreholes or wells
    • E21B33/10Sealing or packing boreholes or wells in the borehole
    • E21B33/13Methods or devices for cementing, for plugging holes, crevices or the like
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/25Methods for stimulating production
    • E21B43/26Methods for stimulating production by forming crevices or fractures
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/25Methods for stimulating production
    • E21B43/26Methods for stimulating production by forming crevices or fractures
    • E21B43/261Separate steps of (1) cementing, plugging or consolidating and (2) fracturing or attacking the formation

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  • Mining & Mineral Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
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  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Physics & Mathematics (AREA)
  • Environmental & Geological Engineering (AREA)
  • Fluid Mechanics (AREA)
  • Drilling And Exploitation, And Mining Machines And Methods (AREA)
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Abstract

一种割封压一体化强化瓦斯抽采装置及方法,装置包括采用螺纹相互连接的注浆圆筒,圆筒内部中心位置布置前端开有若干小孔的压裂管,压裂管穿过圆筒前盖前端3~4m,使小孔全部越过圆筒,压裂管后端通过圆筒下表面的压裂口与压裂泵连接,压裂口距圆筒后端面0.5~1m,圆筒前端焊装有柔性囊袋一,距离圆筒后端面1.5~3m位置处焊装有柔性囊袋二,在柔性囊袋二和柔性囊袋一内的圆筒表面开有若干大孔,在圆筒内的上部焊接有注浆管,圆筒表面开有注浆口和注浆口。通过常规打钻和水力割缝分别布置常规钻孔和割缝钻孔,封孔浆液通过大孔充满柔性囊袋一和柔性囊袋二,分别封堵常规钻孔和割缝钻孔,通过圆筒表面的出浆口向煤层钻孔内注浆,浆液凝固后,进行水力压裂,保证了割封压一体化瓦斯抽采钻孔的有效密封,实现了割封压一体化强化瓦斯抽采。

A cutting, sealing and pressure-integrated enhanced gas drainage device and method, the device includes a grouting cylinder connected with each other by threads, a fracturing tube with a number of small holes at the front end is arranged at the center of the cylinder, and the fracturing tube passes through the cylinder The front end of the cylinder front cover is 3-4m, so that all the small holes go over the cylinder, and the rear end of the fracturing tube is connected to the fracturing pump through the fracturing opening on the lower surface of the cylinder. The fracturing opening is 0.5-1m away from the rear end of the cylinder. The first flexible bladder is welded on the front end, and the second flexible bladder is welded at a position 1.5-3m away from the rear end of the cylinder. Several large holes are opened on the surface of the cylinder in the second flexible bladder and the first flexible bladder. The upper part of the cylinder is welded with a grouting pipe, and the surface of the cylinder is provided with a grouting port and a grouting port. Conventional drilling and slotted drilling are arranged respectively through conventional drilling and hydraulic cutting. The grout outlet on the surface of the cylinder injects grout into the coal seam borehole. After the grout solidifies, hydraulic fracturing is carried out to ensure the effective sealing of the borehole for gas drainage integrated with cutting, sealing and pressure, and realize the enhanced gas drainage with integrated cutting, sealing and pressure .

Description

一种割封压一体化强化瓦斯抽采装置及方法A device and method for enhancing gas drainage integrated with cutting, sealing and pressure

技术领域technical field

本发明涉及一种割封压一体化强化瓦斯抽采装置及方法,属于煤矿井下区域瓦斯治理技术领域,尤其适用于在松软易塌孔及难封孔煤层的瓦斯抽采钻孔内进行强化瓦斯抽采作业。The invention relates to a cutting, sealing and pressure integrated enhanced gas drainage device and method, which belong to the technical field of gas control in the underground area of coal mines, and are especially suitable for intensifying gas drainage in coal seams with soft, easy-to-collapse and hard-to-seal coal seams. Extraction operations.

背景技术Background technique

我国高瓦斯低透气性煤层赋存特征是微孔隙性、低渗透率和高吸附性,导致在开采过程中往往伴随着大量瓦斯涌出,特别是随着煤炭生产的高效集约化和开采深度的增加,瓦斯涌出量越来越大,瓦斯爆炸和瓦斯突出危险的威胁越来越严重。因此,国家煤矿瓦斯治理方针确定高瓦斯矿井必须先抽后采,瓦斯抽采是治本措施。随着煤层瓦斯治理研究工作的深入开展,很多学者达成了一定共识,提出水力化措施是未来煤层瓦斯治理特别是深部煤层瓦斯治理中的发展方向,即可通过水力压裂、煤层注水、水力割缝、水力冲孔等水力化措施促进煤层的卸压增透,提高煤层渗透率,强化预抽煤层瓦斯。诸多水力化技术中,水力压裂技术发展较早,应用相对成熟,在国内外很多矿井应用取得了很好的效果。但是,在一些松软易塌孔煤层及难封孔煤层的瓦斯抽采钻孔内进行各种水力化措施过程中,由于封孔不严,导致压裂失败,费时费力,达不到瓦斯抽采的理想效果,因此,急需要一种强化瓦斯抽采措施,既能够有效密封耐高压钻孔,能够承受钻孔内高压的冲击,同时还能起到水利化措施强化瓦斯抽采的目的。The occurrence characteristics of high gassy and low permeability coal seams in my country are microporosity, low permeability and high adsorption, which often lead to a large amount of gas gushing out during the mining process, especially with the efficient intensification of coal production and the increase in mining depth. The amount of gas gushing out is increasing, and the threat of gas explosion and gas outburst is becoming more and more serious. Therefore, the national coal mine gas control policy determines that high-gas mines must be drained before mining, and gas drainage is a permanent measure. With the in-depth development of research work on coal seam gas control, many scholars have reached a certain consensus, proposing that hydraulic measures are the development direction of future coal seam gas control, especially deep coal seam gas control. Hydraulic measures such as cracking and hydraulic punching can promote the pressure relief and permeability enhancement of coal seams, improve the permeability of coal seams, and strengthen the pre-pumping of coal seam gas. Among many hydraulic technologies, hydraulic fracturing technology was developed earlier and its application is relatively mature, and it has achieved good results in many mines at home and abroad. However, in the process of various hydraulic measures in the gas drainage boreholes of some soft coal seams that are easy to collapse and difficult to seal, the fracturing fails due to the lax sealing of the holes, which is time-consuming and laborious, and the gas drainage cannot be achieved. Therefore, an enhanced gas drainage measure is urgently needed, which can not only effectively seal the high-pressure borehole, withstand the impact of high pressure in the borehole, but also serve the purpose of strengthening gas drainage through water conservancy measures.

发明内容Contents of the invention

技术问题:本发明的目的是克服已有技术中存在的耐高压钻孔封孔不严、瓦斯抽采效果差等问题,提供一种操作简单、成本低、效果好的割封压一体化强化瓦斯抽采方法。Technical problem: The purpose of the present invention is to overcome the problems existing in the prior art, such as lax sealing of high-pressure boreholes and poor gas drainage effects, and to provide a cutting-sealing and pressure-integrated strengthening system with simple operation, low cost and good effect. Gas extraction methods.

技术方案:本发明的割封压一体化强化瓦斯抽采装置,包括采用螺纹相互连接的注浆圆筒,圆筒内部中心位置布置前端开有若干小孔的压裂管,压裂管穿过圆筒前盖前端3~4m,使小孔全部越过圆筒,压裂管后端通过圆筒下表面的压裂口与压裂泵连接,压裂口距圆筒后端面0.5~1m,圆筒前端焊装有柔性囊袋一,距离圆筒后端面1.5~3m位置处焊装有柔性囊袋二,在柔性囊袋二和柔性囊袋一内的圆筒表面开有若干大孔,在圆筒内的上部焊接有注浆管,注浆管通过圆筒表面的注浆口与注浆泵连接,注浆管通过圆筒表面的出浆口向煤层钻孔内注浆。Technical solution: The cutting, sealing and pressure integrated enhanced gas drainage device of the present invention includes grouting cylinders connected with each other by threads, and a fracturing tube with a number of small holes at the front end is arranged at the center of the cylinder, and the fracturing tube passes through The front end of the front cover of the cylinder is 3-4m, so that all the small holes go over the cylinder, and the rear end of the fracturing pipe is connected to the fracturing pump through the fracturing port on the lower surface of the cylinder. The front end of the cylinder is welded with a flexible bladder 1, and a flexible bladder 2 is welded at a position 1.5-3m away from the rear end of the cylinder. There are several large holes on the surface of the cylinder in the flexible bladder 2 and the flexible bladder 1. The upper part of the cylinder is welded with a grouting pipe, and the grouting pipe is connected to the grouting pump through the grouting port on the surface of the cylinder, and the grouting pipe injects grout into the coal seam borehole through the grouting port on the surface of the cylinder.

所述的注浆圆筒的长度为15~18m,直径为90mm,注浆管直径为16mm,压裂管直径为25mm。The length of the grouting cylinder is 15-18m, the diameter is 90mm, the diameter of the grouting pipe is 16mm, and the diameter of the fracturing pipe is 25mm.

所述注浆口和压裂口布置在柔性囊袋二外侧的圆筒表面上,出浆口布置在柔性囊袋二和柔性囊袋一之间的圆筒表面上。The grouting port and the fracturing port are arranged on the cylindrical surface outside the second flexible bag, and the grout outlet is arranged on the cylindrical surface between the second flexible bag and the first flexible bag.

所述的柔性囊袋二的长度为0.5~1m,直径为110mm,柔性囊袋一长度为1~2m,直径为150mm。The second flexible pouch has a length of 0.5-1m and a diameter of 110mm, and the first flexible pouch has a length of 1-2m and a diameter of 150mm.

本发明的割封压一体化强化瓦斯抽采方法,包括以下步骤:The cutting, sealing and pressure-integrated enhanced gas drainage method of the present invention comprises the following steps:

a.采用常规方法垂直于巷道壁向岩层内部钻直径为100mm的常规钻孔,常规钻孔长度为15~18m;a. Use conventional methods to drill a conventional borehole with a diameter of 100mm perpendicular to the roadway wall to the inside of the rock formation, and the length of the conventional borehole is 15-18m;

b.采用常规水力割缝技术,在常规钻孔底部继续打钻,同时,通过水力旋转割缝,割出直径为120~140mm的割缝钻孔,割缝钻孔长度为80~100m;b. Using conventional hydraulic slotting technology, continue to drill at the bottom of conventional drilling, and at the same time, through hydraulic rotary slotting, cut a slotted hole with a diameter of 120-140mm, and the length of the slotted hole is 80-100m;

c.依次连接圆筒和压裂管,将圆筒送入常规钻孔内部,使柔性囊袋一恰好穿过常规钻孔处在割缝钻孔内;c. Connect the cylinder and the fracturing pipe in sequence, and send the cylinder into the inside of the conventional borehole, so that the flexible bladder just passes through the conventional borehole and is in the slotted borehole;

d.连接储浆罐和注浆泵,利用高压胶管依次连接注浆泵和注浆圆筒,注浆泵和注浆口,水箱和压裂泵,压裂泵和压裂口;d. Connect the grout storage tank and the grouting pump, and use the high-pressure hose to connect the grouting pump and the grouting cylinder, the grouting pump and the grouting port, the water tank and the fracturing pump, and the fracturing pump and the fracturing port;

e.开启注浆泵,向注浆圆筒内注入封孔浆液,封孔浆液通过大孔充满柔性囊袋一和柔性囊袋二,柔性囊袋一和柔性囊袋二膨胀分别封堵常规钻孔和割缝钻孔;e. Turn on the grouting pump, inject the sealing slurry into the grouting cylinder, the sealing slurry fills the flexible bladder 1 and the flexible bladder 2 through the large hole, and the flexible bladder 1 and the flexible bladder 2 expand to block the conventional drill respectively hole and slot drilling;

f.当注浆泵的压力表显示注浆压力停止上升时,利用注浆管向柔性囊袋一和柔性囊袋二之间的常规钻孔空间内注入封孔浆液;f. When the pressure gauge of the grouting pump shows that the grouting pressure stops rising, use the grouting pipe to inject the hole-sealing grout into the conventional drilling space between the first flexible bladder and the second flexible bladder;

g.待封孔浆液全部凝固后,打开压裂泵进行水力压裂30min;g. After the sealing slurry is completely solidified, turn on the fracturing pump for hydraulic fracturing for 30 minutes;

h.压裂结束后,连接压裂管和煤矿井下瓦斯抽采管路进行瓦斯抽采,完成割封压一体化强化瓦斯抽采过程。h. After the fracturing is completed, connect the fracturing pipe and the underground gas drainage pipeline of the coal mine for gas drainage, and complete the process of integrated cutting, sealing and pressure-enhanced gas drainage.

有益效果:由于采用了上述技术方案,在一些松软易塌孔煤层及难封孔煤层的瓦斯抽采钻孔内进行各种水力化措施过程中,既能够有效密封耐高压钻孔,能够承受钻孔内高压的冲击,同时还能起到水利化措施强化瓦斯抽采的目的。实现了松软煤层耐高压钻孔有效封孔,满足了煤矿井下对于强化瓦斯抽采的需要。其操作简单、成本低、效果好、工作量小,具有广泛的实用性。Beneficial effects: Due to the adoption of the above-mentioned technical scheme, in the process of carrying out various hydraulic measures in the gas drainage boreholes of some soft and easy-to-collapse coal seams and hard-to-seal coal seams, it can not only effectively seal the high-pressure boreholes, but also be able to withstand drilling The impact of high pressure in the hole can also serve the purpose of strengthening gas drainage through water conservancy measures. It realizes the effective sealing of high-pressure drilling holes in soft coal seams, and meets the needs of coal mines for enhanced gas drainage. Its operation is simple, the cost is low, the effect is good, the workload is small, and it has wide practicability.

附图说明Description of drawings

图1是本发明的结构示意图。Fig. 1 is a structural schematic diagram of the present invention.

图2是图1的A-A剖面示意图。FIG. 2 is a schematic cross-sectional view of A-A in FIG. 1 .

图3是图1的B-B剖面示意图。Fig. 3 is a schematic cross-sectional view along B-B of Fig. 1 .

图4是圆筒结构连接示意图。Figure 4 is a schematic diagram of the connection of the cylindrical structure.

图5是压裂管结构连接示意图。Fig. 5 is a schematic diagram of the structural connection of the fracturing tube.

图6是本发明的割封压一体化强化瓦斯抽采方法实施例示意图。Fig. 6 is a schematic diagram of an embodiment of the enhanced gas drainage method integrated with cutting, sealing and pressure of the present invention.

图中:1.注浆口,2.注浆管,3.柔性囊袋二,4.出浆口,5.螺纹,6.柔性囊袋一,7.压裂口,8.大孔,9.压裂管,10.圆筒,11.圆筒前盖,12.小孔,13.岩层,14.煤层,15.储浆罐,16.注浆泵,17.压裂泵,18-1.阀门,18-2.阀门,18-3.阀门,19.普通钻孔,20.割封钻孔,21.高压胶管,22.封孔浆液,23.水箱,24.压力表。In the figure: 1. Grouting port, 2. Grouting pipe, 3. Flexible bladder 2, 4. Grouting outlet, 5. Thread, 6. Flexible bladder 1, 7. Fracture opening, 8. Large hole, 9. Fracturing pipe, 10. Cylinder, 11. Cylinder front cover, 12. Small hole, 13. Rock formation, 14. Coal seam, 15. Slurry storage tank, 16. Grouting pump, 17. Fracturing pump, 18 -1. Valve, 18-2. Valve, 18-3. Valve, 19. Ordinary drilling, 20. Cutting and sealing drilling, 21. High pressure hose, 22. Sealing slurry, 23. Water tank, 24. Pressure gauge.

具体实施方式detailed description

下面结合附图对本发明的一个实施例作进一步的描述:An embodiment of the present invention will be further described below in conjunction with accompanying drawing:

图1所示,本发明一种割封压一体化强化瓦斯抽采装置,包括采用螺纹5相互连接的注浆圆筒10,圆筒10内部中心位置布置前端开有若干小孔12的压裂管9,压裂管9穿过圆筒前盖11前端3~4m,使小孔12全部越过圆筒10,压裂管9后端通过圆筒10下表面的压裂口7与压裂泵连接,压裂口7距圆筒10后端面0.5~1m,圆筒10前端焊装有柔性囊袋一6,距离圆筒10后端面1.5~3m位置处焊装有柔性囊袋二3,在柔性囊袋二3和柔性囊袋一6内的圆筒10表面开有若干大孔8,在圆筒10内的上部焊接有注浆管2,注浆管2通过圆筒10表面的注浆口1与注浆泵连接,注浆管2通过圆筒10表面的出浆口4向煤层钻孔内注浆。所述的注浆圆筒10的长度为15~18m,直径为90mm,注浆管2直径为16mm,压裂管9直径为25mm。所述注浆口1和压裂口7布置在柔性囊袋二3的外侧圆筒10表面上,出浆口4布置在柔性囊袋二3和柔性囊袋一6之间的圆筒10表面上。所述的柔性囊袋二3的长度为0.5~1m,直径为110mm,柔性囊袋一6长度为1~2m,直径为150mm。As shown in Fig. 1, the gas drainage device integrated with cutting, sealing and pressing in the present invention includes a grouting cylinder 10 interconnected by threads 5, and a fracturing device with several small holes 12 at the front end is arranged at the center of the cylinder 10. The tube 9 and the fracturing tube 9 pass through the front end of the cylinder front cover 11 for 3-4m, so that all the small holes 12 go over the cylinder 10, and the rear end of the fracturing tube 9 passes through the fracturing port 7 on the lower surface of the cylinder 10 and the fracturing pump Connection, the fracturing port 7 is 0.5-1m away from the rear end of the cylinder 10, the front end of the cylinder 10 is welded with a flexible bladder 1 6, and the position 1.5-3m away from the rear end of the cylinder 10 is welded with a flexible bladder 2 3. The surface of the cylinder 10 in the flexible pouch 2 3 and the flexible pouch 1 6 has a number of large holes 8, and the upper part of the cylinder 10 is welded with a grouting pipe 2, and the grouting pipe 2 passes through the grouting on the surface of the cylinder 10. The port 1 is connected to the grouting pump, and the grouting pipe 2 injects grout into the coal seam borehole through the grouting port 4 on the surface of the cylinder 10 . The grouting cylinder 10 has a length of 15-18m and a diameter of 90mm, the grouting pipe 2 has a diameter of 16mm, and the fracturing pipe 9 has a diameter of 25mm. The grouting port 1 and the fracturing port 7 are arranged on the surface of the outer cylinder 10 of the flexible bag two 3, and the grout outlet 4 is arranged on the surface of the cylinder 10 between the flexible bag two 3 and the flexible bag one 6 superior. The second flexible pouch 3 has a length of 0.5-1 m and a diameter of 110 mm, and the first flexible pouch 6 has a length of 1-2 m and a diameter of 150 mm.

本发明的割封压一体化强化瓦斯抽采方法:首先,采用常规方法垂直于巷道壁向岩层13内部钻直径为100mm的常规钻孔19,常规钻孔19长度为15~18m;采用常规水力割缝技术,在常规钻孔19底部继续打钻,同时,通过水力旋转割缝,割出直径为120~140mm的割缝钻孔20,割缝钻孔20长度为80~100m;依次连接圆筒10和压裂管9,将圆筒10送入常规钻孔19内部,使柔性囊袋一6恰好穿过常规钻孔19处在割缝钻孔20内;连接储浆罐15和注浆泵16,利用高压胶管21依次连接注浆泵16和注浆圆筒10,注浆泵16和注浆口1,水箱23和压裂泵17,压裂泵17和压裂口7;开启注浆泵16,向注浆圆筒10内注入封孔浆液22,封孔浆液22通过大孔8充满柔性囊袋一6和柔性囊袋二3,柔性囊袋一6和柔性囊袋二3膨胀分别封堵常规钻孔19和割缝钻孔20;当注浆泵16的压力表24显示注浆压力停止上升时,利用注浆管2向柔性囊袋一6和柔性囊袋二3之间的常规钻孔19空间内注入封孔浆液22;待封孔浆液22全部凝固后,打开压裂泵17进行水力压裂30min;压裂结束后,连接压裂管(9)和煤矿井下瓦斯抽采管路进行瓦斯抽采,完成割封压一体化强化瓦斯抽采过程。The cutting, sealing and pressure-integrated enhanced gas drainage method of the present invention: firstly, conventional methods are used to drill conventional boreholes 19 with a diameter of 100 mm to the inside of the rock formation 13 perpendicular to the roadway wall, and the length of the conventional boreholes 19 is 15 to 18 m; Slotted technology, continue to drill at the bottom of the conventional borehole 19, and at the same time, cut the slotted hole 20 with a diameter of 120-140 mm through hydraulic rotary slotting, and the length of the slotted hole 20 is 80-100 m; Cylinder 10 and fracturing pipe 9, the cylinder 10 is sent into the interior of the conventional borehole 19, so that the flexible bladder-6 just passes through the conventional borehole 19 and is in the slotted borehole 20; connect the slurry storage tank 15 and the grouting The pump 16 is connected to the grouting pump 16 and the grouting cylinder 10, the grouting pump 16 and the grouting port 1, the water tank 23 and the fracturing pump 17, and the fracturing pump 17 and the fracturing port 7 in turn by using the high-pressure rubber hose 21; The slurry pump 16 injects the sealing slurry 22 into the grouting cylinder 10, the sealing slurry 22 fills the first flexible bladder 6 and the second flexible bladder 3 through the large hole 8, and the first flexible bladder 6 and the second flexible bladder 3 expand Block conventional borehole 19 and slotted borehole 20 respectively; Inject the sealing slurry 22 into the conventional borehole 19 space; after the sealing slurry 22 is completely solidified, turn on the fracturing pump 17 to carry out hydraulic fracturing for 30 minutes; Pipelines are used for gas drainage to complete the gas drainage process integrated with cutting, sealing and pressure enhancement.

Claims (3)

1. one kind, which cuts envelope pressure integration, strengthens gas pumping device, it is characterised in that:Including the note being connected with each other using screw thread (5) Cylinder (10) is starched, cylinder (10) inner hub location arrangement front end is provided with the pressure break pipe (9) of some apertures (12), pressure break pipe (9) Through cylinder protecgulum (11) 3~4m of front end, aperture (12) is set to pass through cylinder entirely across cylinder (10), pressure break pipe (9) rear end (10) the pressure break mouth (7) of lower surface is connected with fracturing pump, and pressure break mouth (7) is away from cylinder (10) 0.5~1m of rear end face, before cylinder (10) End is welded flexible pouch one (6), is welded flexible pouch two (3), uses apart from cylinder (10) rear end face 1.5~3m opening positions Conventional method, to the routinely drilling (19) of rock stratum inner part drilling, passes through hydraulic slotted liner technique perpendicular to wall boring conventional drilling (19) bottom Slot drilling (20) is formed, slot drilling (20) diameter is more than conventional drilling (19), and flexible pouch one (6) is just passed through conventional brill Hole (19), slot drilling (20) inside is in, flexible pouch two (3) is in conventional drilling (19) inside, in flexible pouch two (3) Some macropores (8) are provided with cylinder (10) surface in flexible pouch one (6), the upper weld in cylinder (10) has Grouting Pipe (2), Grouting Pipe (2) is connected by the grouting port (1) on cylinder (10) surface with grouting pump, and Grouting Pipe (2) passes through cylinder (10) table Grout outlet (4) slip casting into coal bed drilling in face, the length of described cylinder (10) are 15~18m, a diameter of 90mm, Grouting Pipe (2) a diameter of 16mm, pressure break pipe (9) a diameter of 25mm;The length of described flexible pouch two (3) is 0.5~1m, a diameter of 110mm, flexible pouch one (6) length are 1~2m, a diameter of 150mm.
2. as claimed in claim 1 cut envelope pressure integration reinforcing gas pumping device, it is characterised in that:The grouting port (1) It is arranged in pressure break mouth (7) on outside cylindrical (10) surface of flexible pouch two (3), grout outlet (4) is arranged in flexible pouch two (3) on the cylinder between flexible pouch one (6) (10) surface.
3. using profit require 1 or 2 described devices cut envelope pressure integration strengthen gas pumping method, it is characterised in that including with Lower step:
A. the conventional drilling (19) using conventional method perpendicular to wall to rock stratum (13) a diameter of 100mm of inner part drilling is conventional (19) length that drills is 15~18m;
B. conventional hydraulic slotting technique is used, continues to drill in conventional drilling (19) bottom, meanwhile, by waterpower driven rotary slot, A diameter of 120~140mm slot drilling (20) is cut out, slot drilling (20) length is 80~100m;
C. cylinder (10) and pressure break pipe (9) are sequentially connected, cylinder (10) is sent into conventional drilling (19) inside, makes flexible pouch one (6) it is in just through conventional drilling (19) in slot drilling (20);
D. slurry can (15) and grouting pump (16) are connected, grouting pump (16) and slip casting cylinder are sequentially connected using high-pressure rubber pipe (21) (10), grouting pump (16) and grouting port (1), water tank (23) and fracturing pump (17), fracturing pump (17) and pressure break mouth (7);
E. grouting pump (16) is opened, opens the first valve (18-1), to the interior injection sealing of hole slurries (22) of slip casting cylinder (10), sealing of hole Slurries (22) are full of flexible pouch one (6) and flexible pouch two (3), flexible pouch one (6) and flexible pouch two by macropore (8) (3) expansion blocks slot drilling (20) and conventional drilling (19) respectively;
F. when the pressure gauge (24) of grouting pump (16) shows that grouting pressure stops rising, the first valve (18-1) is closed, is opened Second valve (18-2), (19) are drilled to the routine between flexible pouch one (6) and flexible pouch two (3) using Grouting Pipe (2) Sealing of hole slurries (22) are injected in space;
G. after sealing of hole slurries (22) all solidification, open fracturing pump (17) and carry out hydraulic fracturing 30min;
H. after pressure break terminates, connection pressure break pipe (9) and coal mine gas extraction pipeline carry out gas pumping, and envelope pressure one is cut in completion Bodyization strengthens gas pumping process.
CN201610016804.XA 2016-01-11 2016-01-11 One kind cuts envelope pressure integration and strengthens gas pumping device and method Active CN105507940B (en)

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