CN213711026U - Irregular shaft cleaning drifting device based on deflection angle flow distribution - Google Patents

Irregular shaft cleaning drifting device based on deflection angle flow distribution Download PDF

Info

Publication number
CN213711026U
CN213711026U CN202022683221.7U CN202022683221U CN213711026U CN 213711026 U CN213711026 U CN 213711026U CN 202022683221 U CN202022683221 U CN 202022683221U CN 213711026 U CN213711026 U CN 213711026U
Authority
CN
China
Prior art keywords
drift
well
drifting
irregular
holes
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202022683221.7U
Other languages
Chinese (zh)
Inventor
沈建文
睢圣
杜征鸿
李林
黄胜强
罗朝东
王兴忠
陈虹霓
王方博
刘丹洁
李衡
罗翰
陈仕仪
王大勇
王存新
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Petrochemical Corp
Sinopec Oilfield Service Corp
Drilling Engineering Research Institute of Sinopec Southwest Petroleum Engineering Co Ltd
Original Assignee
China Petrochemical Corp
Sinopec Oilfield Service Corp
Drilling Engineering Research Institute of Sinopec Southwest Petroleum Engineering Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Petrochemical Corp, Sinopec Oilfield Service Corp, Drilling Engineering Research Institute of Sinopec Southwest Petroleum Engineering Co Ltd filed Critical China Petrochemical Corp
Priority to CN202022683221.7U priority Critical patent/CN213711026U/en
Application granted granted Critical
Publication of CN213711026U publication Critical patent/CN213711026U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Earth Drilling (AREA)

Abstract

The utility model relates to a clean drifting device of irregular pit shaft based on declination reposition of redundant personnel, wherein the device includes female joint, drainage groove, drifting body, scrapes tooth, drifting strip, declination reposition of redundant personnel punchhole, male joint. The female joint is connected with the drill bit, the male joint is connected with the drill rod, the scraping teeth are welded on the drift shaft strips, the drift shaft strips are welded on the drift shaft body, the drift angle shunting holes are holes in the drift shaft strips, the drift angle shunting holes penetrate through the drift shaft body all the time and are communicated with water holes of the drift shaft body, and a drainage groove is formed in a gap between the two drift shaft strips. The utility model discloses be fit for the deposit of the irregular well detritus of deep well drifting in-process for the detritus changes the circulation and carries to the well head, reduces the wall of a well accident of collapsing, and the advantage of repairing the wall of a well can make the well cleanliness improve, is fit for using widely.

Description

Irregular shaft cleaning drifting device based on deflection angle flow distribution
Technical Field
The utility model relates to a well drilling technical field, in particular to clean drifting device and drifting method of irregular pit shaft based on declination efflux.
Background
The well dredging is realized by using a drill rod to carry a tool with a certain diameter or directly using the drill rod to advance in a well hole, so that the well hole is processed according to certain rules, and a good channel environment is provided for subsequent construction such as casing running or well logging. After logging, before casing running, when the conventional drilling tool is stopped during drilling and cannot be processed, and when the drilling tool leaks from the well and cannot continue to drill, different drilling tool structures are selected according to the underground conditions during drifting. The ordinary vertical well is normal underground, the well needs to be cleared after logging or before casing running, a roller bit, a drill collar, a well clearing device and a drill rod can be used for clearing the well, if well leakage, well collapse and the like exist underground, the well clearing device cannot be passed, and the well is cleared by adopting a light drill collar structure.
If the well is a directional well or a horizontal well, the small well deviation can be provided with a drill collar and a drifting device according to the underground condition, the purpose of the drifting device is to trim the well wall to enable the well wall to be stable and smooth, the next-step continuous operation is facilitated, and if the well deviation is larger, the well can be drifted by directly using a roller bit and a weighting drill rod.
At present, the phenomena of irregular well bores of deep wells (such as a big-belly well bore, a sugarcoated haw well bore and the like) are more, rock debris is deposited and attached to the wall surface of the irregular well bore and cannot be carried out by utilizing conventional hydraulics circulation, and a large amount of rock debris in the irregular well bore easily causes the blockage of the drill during the drill tripping process and even the drill jamming fault. Because the wall of the well has more thick broken mud cakes, the local hole diameter is reduced, and the non-production failure is increased when the well is tripped and is blocked.
In the process of realizing this application, utility model discloses a prior art has following problem at least:
1. the cuttings of irregular well bores of the deep well are deposited, the cuttings attached to the well bore with the big belly and the sugarcoated haw well bore are difficult to be circularly carried to a well mouth through conventional circulation, and the cleanliness of the well bore is not high.
2. The phenomenon of the deep well with thick mud cake leads to the blockage of the trip.
SUMMERY OF THE UTILITY MODEL
In order to overcome the problem among the background art, the utility model provides a clean drifting device of irregular pit shaft based on declination reposition of redundant personnel is fit for the deposit of the irregular well detritus of deep well drifting in-process for the detritus changes the circulation and carries to the well head, reduces the wall of a well accident of collapsing, maintains the advantage of the wall of a well, can make the well cleanliness improve, is fit for using widely.
In order to achieve the above object, the present invention is realized in the following manner: the utility model provides an irregular pit shaft cleaning drifting device based on declination reposition of redundant personnel, includes female joint, drainage groove, drifting body, scraping tooth, drifting strip, declination reposition of redundant personnel punchhole, male joint.
The female joint is connected with the drill bit, the male joint is connected with the drill rod, the scraping teeth are welded on the drift shaft strips, the drift shaft strips are welded on the drift shaft body, the drift angle shunting holes are holes in the drift shaft strips, the drift angle shunting holes penetrate through the drift shaft body all the time and are communicated with water holes of the drift shaft body, and a drainage groove is formed in a gap between the two drift shaft strips.
The further technical scheme is that the scraping teeth are hard alloy blades, and the drift bars are spiral bar-shaped blocks.
The further technical scheme is that the opening direction of the deflection angle shunting holes is 60 degrees downward from the vertical direction.
The further technical scheme is that each drifting strip is provided with 2 deflection angle shunting holes, and the diameter of each deflection angle shunting hole is 1-3 cm.
The utility model has the advantages that:
the utility model discloses be fit for the deposit of the irregular well detritus of deep well drifting in-process for the detritus changes the circulation and carries to the well head, reduces the wall of a well accident of collapsing, and the advantage of repairing the wall of a well can make the well cleanliness improve, is fit for using widely.
Drawings
Fig. 1 is a clean drifting device of an irregular shaft based on deflection angle diversion of the utility model;
FIG. 2 is a schematic diagram of a wellbore clean-up drifting process;
figure 3 is a schematic internal view of the drift apparatus.
In the figure, 1-female joint, 2-drainage groove, 3-drifting body, 4-scraping tooth, 5-drifting strip, 6-deflection angle shunting hole and 7-male joint;
101-drill pipe, 102-annulus, 104-cuttings, 105-irregular borehole (belly, sugarcoated haws borehole, etc.), 106-drill bit, 107-formation, 108-drift body water hole.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer and more obvious, the following will explain in detail the preferred embodiments of the present invention with reference to the accompanying drawings to facilitate the understanding of the skilled person.
As shown in fig. 1 and 3, the irregular shaft cleaning drifting device based on deflection angle diversion comprises a female joint 1, a drainage groove 2, a drifting body 3, scraping teeth 4, a drifting strip 5, deflection angle diversion holes 6 and a male joint 7.
Female joint 1 links to each other with drill bit 106, and male joint 7 links to each other with drilling rod 101, scrapes tooth 4 welding on drifting strip 5, and drifting strip 5 welding is on drifting body 3, scrape tooth 4 and play the effect of repairing the wall of a well, declination reposition of redundant personnel punchhole 6 is the trompil on drifting strip 5, and the punchhole runs through drifting body 3 all the time, communicates with drifting body water hole 108. The drainage groove 2 is a void between two drift strips 5.
The scraping teeth 4 are carbide blades and the drift bars 5 are spiral bar-shaped blocks. When the drilling tool rotates, the drifting strip 5 can play a role in trimming the well wall, and the scraping teeth 4 can enhance the effect of trimming the well wall. Along with the stretching and the rotation of the drill rod 101, the combined action of the drill rod and the drill rod plays a role in trimming the well wall and reducing the broken thick mud cake.
By using the device of the utility model, the return fluid of the drilling fluid circulation is divided into two parts, one part returns out from the drill bit 106, the other part returns out along the annular space 102, in the well dredging process, the hydraulic circulation is ensured, meanwhile, the opening direction of the deflection angle shunt hole 6 is downward 60 degrees with the drill rod, the deflection angle shunt hole 6 is communicated with the inner wall of the well dredging body 3 to form a fluid channel with the inside of the well dredging body 3, the deflection force is formed by the deflection angle 60 degree shunt and the annular space 102 upward return fluid 0 degree, meanwhile, the drainage groove 2 can change the vertical speed of the fluid to play a role of thrust on the horizontal Coriolis flow, form complex spiral flow, vortex flow and the like, act on the irregular well hole (belly, sugarcoated haw well hole and the like) 105, the rock debris deposited on the well wall surface is overturned, the rock debris is overturned from the irregular well wall to the annular space 102, thereby the rock debris is transported to the well mouth by, the purpose of cleaning the well hole is achieved.
The drift angle shunting holes 6 and the drill rod are 60 degrees downwards, 2 holes with the diameter of 2cm are formed in each drifting strip 5, and the design is favorable for the drilling fluid to flow out of the drift angle shunting holes 6 of the drifting body 3 and then to be intersected with the drilling fluid returning from the bottom of the well, so that a vortex or spiral flow is formed better, and the clean and deposited rock debris is enhanced.
A drifting method of an irregular well bore cleaning drifting device based on deflection angle diversion comprises the following steps: firstly, determining irregular specific positions of irregular well bores (big bellies, sugarcoated haws and the like) 105, connecting the female joint 1 with a drill bit 106 through internal threads, connecting the male joint 7 with a drill rod 101 through external threads, placing the drifting body 3 at the irregular positions in the well during drilling, enabling drilling fluid to enter the drill rod 101 from a wellhead, enabling the drilling fluid to firstly pass through the drifting body 3, enabling a part of the drilling fluid to flow into an annular space 102 through an offset angle shunting hole of the drifting body 3, enabling the other part of the drilling fluid to return to the annular space 102 along the drill bit 106, enabling the drilling fluid to be converged with the offset angle shunting drilling fluid passing through the drifting body 3 at the irregular positions to form vortex or spiral flow, and enabling rock debris 104 to be overturned and circulated from the irregular. In addition, the cutting teeth 4 on the drift body 3 can also trim the rock horizon 107 of irregular boreholes (belly, sugarcoated haws, etc.) 105, as shown in fig. 2.
Examples
(1) WY29-4HF well
1) Borehole size: phi 311.2mm
2) The reasons for the irregular well section are as follows: 764- & 986m uses the air drilling process, and then changes into the conventional drilling fluid process, and the borehole enlargement rate that the air drilling process caused is 10% higher than the conventional drilling fluid, has consequently produced the big belly borehole in this well section. Drill cuttings are accumulated in the large-belly well section, are difficult to circulate out of a shaft, and are easy to cause underground complex conditions.
3) Drifting and drilling tool combination: phi 311.2mm roller bit, a back pressure valve, 1 spiral drill collar with the diameter of 203.2mm, a drifting body, 5 spiral drill collars with the diameter of 203.2mm, 15 weighted drill pipes with the diameter of 139.7mm and 139.7mm drill pipes.
4) And (3) drifting: and (5) drilling down to the well depth, and circularly taking out rock debris by adopting an active hole-cutting mode to the well depth of 986 m.
5) Well bore conditions after treatment: a large amount of rock debris is brought out in the reaming process, and the large-belly well hole is effectively cleaned.
Finally, while the present invention has been described in detail with reference to the preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention encompassed by the appended claims.

Claims (4)

1. An irregular shaft cleaning drifting device based on deflection angle diversion is characterized by comprising a female joint, a drainage groove, a drifting body, scraping teeth, a drifting strip, deflection angle diversion holes and a male joint;
the female joint is connected with the drill bit, the male joint is connected with the drill rod, the scraping teeth are welded on the drift shaft strips, the drift shaft strips are welded on the drift shaft body, the drift angle shunting holes are holes in the drift shaft strips, the drift angle shunting holes penetrate through the drift shaft body all the time and are communicated with water holes of the drift shaft body, and a drainage groove is formed in a gap between the two drift shaft strips.
2. The irregular wellbore cleaning drifting device based on declined diversion of claim 1, wherein the scraping teeth are cemented carbide blades and the drifting bars are spiral-shaped bar blocks.
3. The irregular wellbore cleaning drifting device based on declination diversion of claim 1, wherein the declination diversion aperture opening direction is 60 ° downward from vertical.
4. The drift device for cleaning irregular wellholes based on drift angle distribution according to claim 1 or 3, wherein each drift strip is provided with 2 drift angle distribution holes, and the diameter of each drift angle distribution hole is 1-3 cm.
CN202022683221.7U 2020-11-18 2020-11-18 Irregular shaft cleaning drifting device based on deflection angle flow distribution Active CN213711026U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022683221.7U CN213711026U (en) 2020-11-18 2020-11-18 Irregular shaft cleaning drifting device based on deflection angle flow distribution

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022683221.7U CN213711026U (en) 2020-11-18 2020-11-18 Irregular shaft cleaning drifting device based on deflection angle flow distribution

Publications (1)

Publication Number Publication Date
CN213711026U true CN213711026U (en) 2021-07-16

Family

ID=76806457

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022683221.7U Active CN213711026U (en) 2020-11-18 2020-11-18 Irregular shaft cleaning drifting device based on deflection angle flow distribution

Country Status (1)

Country Link
CN (1) CN213711026U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112282699A (en) * 2020-11-18 2021-01-29 中国石油化工集团有限公司 Irregular shaft cleaning drifting device and method based on deflection angle flow distribution

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112282699A (en) * 2020-11-18 2021-01-29 中国石油化工集团有限公司 Irregular shaft cleaning drifting device and method based on deflection angle flow distribution

Similar Documents

Publication Publication Date Title
US6189618B1 (en) Wellbore wash nozzle system
US5390750A (en) Downhole compaction and stabilization back reamer and drill bit
US5269384A (en) Method and apparatus for cleaning a bore hole
CN106437570A (en) Drilling type continuous sand blasting device
MX2012008430A (en) Wellbore obstruction-clearing tool and method of use.
CN213711026U (en) Irregular shaft cleaning drifting device based on deflection angle flow distribution
GB2454884A (en) Debris collector with a filter
US3195660A (en) Drilling bit
CN210122902U (en) Soft stratum drifting and reaming tool
CN205297337U (en) Hole reaming and digging device for well drilling
CN115596355A (en) Borehole-while-drilling repairing tool and repairing method for easily-reduced stratum
CN112282699A (en) Irregular shaft cleaning drifting device and method based on deflection angle flow distribution
CN109610494A (en) A kind of embedding rock construction technology of large-diameter pile foundation
CN113047774A (en) Broken stratum multistage hole wall repairing drilling tool combination and directional drilling method
CN115711100A (en) Method for finishing shaft treatment by using pointed bit milling cone
CN111287662B (en) Shale stratum drilling open hole drifting method
RU2564314C1 (en) Method of recovery of passability of open horizontal wellbore
CN109931013B (en) Weighted drill pipe with well cleaning function
US20050045386A1 (en) Drill string member
CN218912797U (en) While-drilling hole repairing tool string for stratum easy to shrink
CN113898296B (en) Four-wing anti-blocking horizontal head type drag bit with ball
CN220247999U (en) Reaming is with pipe drilling tool that cores
US3454119A (en) Jet-type reamer for use with drill pipe strings
US2524428A (en) Earth drill bit
CN114922576B (en) Sectional well flushing process for horizontal well

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant