Underbalanced Drilling Vibrating Screen Integrated With Automatic Drainage And Vacuum Chucks
20230417113 ยท 2023-12-28
Assignee
Inventors
- Yongjun Hou (Chengdu City, CN)
- Duyu Hou (Chengdu City, CN)
- Pan Fang (Chengdu City, CN)
- Mingjun Du (Chengdu City, CN)
- Yuwen Wang (Chengdu City, CN)
Cpc classification
E21B21/085
FIXED CONSTRUCTIONS
International classification
E21B21/08
FIXED CONSTRUCTIONS
Abstract
Disclosed is an underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks, and belongs to the technical field of solid-phase control of petroleum drilling. The underbalanced drilling vibrating screen comprises a base, a screening device and a negative pressure generating device, wherein the screening device and the negative pressure generating device are arranged on the base; the screening device comprises a shell, an exciting motor arranged on the shell, a plurality of screens arranged in the shell, and at least one drainage component; and the drainage component communicates with at least one screen through the vacuum chuck, the negative pressure generating device communicates with the vacuum chuck, and the drainage component is integrally formed with the vacuum chuck.
Claims
1. An underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks, comprising a base (10), a screening device (20) and a negative pressure generating device (30), wherein the screening device (20) and the negative pressure generating device (30) are arranged on the base; the screening device (20) comprises a shell (21), an exciting motor (22) arranged on the shell (21), a plurality of screens (23) arranged in the shell (21), and at least one drainage component (24); and the drainage component (24) communicates with at least one screen (23) through the vacuum chuck (26), the negative pressure generating device (30) communicates with the vacuum chuck (26), and the drainage component (24) is integrally formed with the vacuum chuck (26).
2. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 1, wherein the interior of the drainage component (24) is provided with a U-shaped drainage channel (25), an inflow port (251) is formed in one end of the drainage channel (25) and communicates with the corresponding vacuum chuck (26), an overflow port (252) is formed in the other end of the drainage channel (25), and flow holes (253) are formed in the U-shaped bottom of the drainage channel (25); and a drilling fluid flows in from the inflow port (251), most of the drilling fluid overflows from the overflow port (252), and a small amount of the drilling fluid flows out from the flow holes (253), so that the automatic discharge of the drilling fluid is realized.
3. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 2, wherein the bottom of the drainage channel (25) is inclined downward from the inflow port (251) to the overflow port (252), and the flow holes (253) are formed in the lowest area of the drainage channel (25).
4. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 3, wherein the drainage component (24) comprises a front side plate (241), a rear side plate (242), a left side plate (243), a right side plate (244), an intercepting plate (245) and an inclined bottom plate (246); and two sides of the intercepting plate (245) are respectively connected with the front side plate (241) and the rear side plate (242), and a gap (247) is formed between the intercepting plate (245) and the bottom plate (246), so that the U-shaped drainage channel (25) is formed in the interior of the drainage component (24), the front side plate (241), the rear side plate (242), the left side plate (243) and the intercepting plate (245) form the inflow port (251), the front side plate (241), the rear side plate (242), the left side plate (243) and the intercepting plate (245) are integrally formed with the vacuum chucks (26), and the front side plate (241), the rear side plate (242), the right side plate (244) and the intercepting plate (245) form the overflow port (252).
5. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 4, wherein the flow holes (253) are located at the position where the bottom plate (246) and the right side plate (244) are connected, and the number of the flow holes (253) is multiple.
6. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 1, wherein the side wall of the shell (21) is provided with ventilation units, and the number and position of the ventilation units respectively correspond to those of the vacuum chucks (26); and the ventilation unit comprises a vertical channel (211), a transverse channel (212) and an air suction joint (213), the bottom of the vertical channel (211) communicates with the corresponding vacuum chuck (26), two ends of the transverse channel (212) respectively communicate with the top of the vertical channel (211) and the air suction joint (213), and the air suction joint (213) is located on the top of the shell (21) and communicates with the negative pressure generating device (30) through a vacuum tube (31).
7. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 2, wherein the side wall of the shell (21) is provided with ventilation units, and the number and position of the ventilation units respectively correspond to those of the vacuum chucks (26); and the ventilation unit comprises a vertical channel (211), a transverse channel (212) and an air suction joint (213), the bottom of the vertical channel (211) communicates with the corresponding vacuum chuck (26), two ends of the transverse channel (212) respectively communicate with the top of the vertical channel (211) and the air suction joint (213), and the air suction joint (213) is located on the top of the shell (21) and communicates with the negative pressure generating device (30) through a vacuum tube (31).
8. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 3, wherein the side wall of the shell (21) is provided with ventilation units, and the number and position of the ventilation units respectively correspond to those of the vacuum chucks (26); and the ventilation unit comprises a vertical channel (211), a transverse channel (212) and an air suction joint (213), the bottom of the vertical channel (211) communicates with the corresponding vacuum chuck (26), two ends of the transverse channel (212) respectively communicate with the top of the vertical channel (211) and the air suction joint (213), and the air suction joint (213) is located on the top of the shell (21) and communicates with the negative pressure generating device (30) through a vacuum tube (31).
9. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 4, wherein the side wall of the shell (21) is provided with ventilation units, and the number and position of the ventilation units respectively correspond to those of the vacuum chucks (26); and the ventilation unit comprises a vertical channel (211), a transverse channel (212) and an air suction joint (213), the bottom of the vertical channel (211) communicates with the corresponding vacuum chuck (26), two ends of the transverse channel (212) respectively communicate with the top of the vertical channel (211) and the air suction joint (213), and the air suction joint (213) is located on the top of the shell (21) and communicates with the negative pressure generating device (30) through a vacuum tube (31).
10. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 5, wherein the side wall of the shell (21) is provided with ventilation units, and the number and position of the ventilation units respectively correspond to those of the vacuum chucks (26); and the ventilation unit comprises a vertical channel (211), a transverse channel (212) and an air suction joint (213), the bottom of the vertical channel (211) communicates with the corresponding vacuum chuck (26), two ends of the transverse channel (212) respectively communicate with the top of the vertical channel (211) and the air suction joint (213), and the air suction joint (213) is located on the top of the shell (21) and communicates with the negative pressure generating device (30) through a vacuum tube (31).
11. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 6, wherein the outer side wall of the shell (21) is vertically welded with first U-shaped steel (214) to form the vertical channel (211), the inner side wall of the shell (21) is transversely welded with second U-shaped steel (215) to form the transverse channel (212), two ends of the first U-shaped steel (214) and two ends of the second U-shaped steel (215) are blocked, and the vertical channel (211) respectively communicates with the vacuum chuck (26) and the transverse channel (212) through holes (216) formed in the shell (21).
12. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 7, wherein the outer side wall of the shell (21) is vertically welded with first U-shaped steel (214) to form the vertical channel (211), the inner side wall of the shell (21) is transversely welded with second U-shaped steel (215) to form the transverse channel (212), two ends of the first U-shaped steel (214) and two ends of the second U-shaped steel (215) are blocked, and the vertical channel (211) respectively communicates with the vacuum chuck (26) and the transverse channel (212) through holes (216) formed in the shell (21).
13. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 8, wherein the outer side wall of the shell (21) is vertically welded with first U-shaped steel (214) to form the vertical channel (211), the inner side wall of the shell (21) is transversely welded with second U-shaped steel (215) to form the transverse channel (212), two ends of the first U-shaped steel (214) and two ends of the second U-shaped steel (215) are blocked, and the vertical channel (211) respectively communicates with the vacuum chuck (26) and the transverse channel (212) through holes (216) formed in the shell (21).
14. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 9, wherein the outer side wall of the shell (21) is vertically welded with first U-shaped steel (214) to form the vertical channel (211), the inner side wall of the shell (21) is transversely welded with second U-shaped steel (215) to form the transverse channel (212), two ends of the first U-shaped steel (214) and two ends of the second U-shaped steel (215) are blocked, and the vertical channel (211) respectively communicates with the vacuum chuck (26) and the transverse channel (212) through holes (216) formed in the shell (21).
15. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 10, wherein the outer side wall of the shell (21) is vertically welded with first U-shaped steel (214) to form the vertical channel (211), the inner side wall of the shell (21) is transversely welded with second U-shaped steel (215) to form the transverse channel (212), two ends of the first U-shaped steel (214) and two ends of the second U-shaped steel (215) are blocked, and the vertical channel (211) respectively communicates with the vacuum chuck (26) and the transverse channel (212) through holes (216) formed in the shell (21).
16. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 11, wherein the negative pressure generating device (30) comprises a support (32) and exhaust fans (33) arranged on the support (32); and a top cross beam (34) of the support (32) is hollow, and the exhaust fan (33) and the vacuum tube (31) respectively communicate with the top cross beam (34).
17. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 12, wherein the negative pressure generating device (30) comprises a support (32) and exhaust fans (33) arranged on the support (32); and a top cross beam (34) of the support (32) is hollow, and the exhaust fan (33) and the vacuum tube (31) respectively communicate with the top cross beam (34).
18. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 13, wherein the negative pressure generating device (30) comprises a support (32) and exhaust fans (33) arranged on the support (32); and a top cross beam (34) of the support (32) is hollow, and the exhaust fan (33) and the vacuum tube (31) respectively communicate with the top cross beam (34).
19. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 14, wherein the negative pressure generating device (30) comprises a support (32) and exhaust fans (33) arranged on the support (32); and a top cross beam (34) of the support (32) is hollow, and the exhaust fan (33) and the vacuum tube (31) respectively communicate with the top cross beam (34).
20. The underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks according to claim 15, wherein the negative pressure generating device (30) comprises a support (32) and exhaust fans (33) arranged on the support (32); and a top cross beam (34) of the support (32) is hollow, and the exhaust fan (33) and the vacuum tube (31) respectively communicate with the top cross beam (34).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036] Reference signs: 10, base; 20, screening device; 21, shell; 22, exciting motor; 23, screen; 24, drainage component; 25, drainage channel; 26, vacuum chuck; 30, negative pressure generating device; 31, vacuum tube; 32, support; 33, exhaust fan; 34, top cross beam; 211, vertical channel; 212, transverse channel; 213, air suction joint; 214, first U-shaped steel; 215, second U-shaped steel; 216, hole; 241, front side plate; 242, rear side plate; 243, left side plate; 244, right side plate; 245, intercepting plate; 246, bottom plate; 247, gap; 251, inflow port; 252, overflow port; and 253, flow hole.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0037] The principles and features of the present disclosure are introduced in detail in combination with the following attached figures, the examples are only intended to describe the present disclosure, but not intended to limit the scope of the present disclosure.
[0038] The embodiment provides an underbalanced drilling vibrating screen integrated with automatic drainage and vacuum chucks. The negative pressure generating device 30 generates negative pressure on the vacuum chucks 26, and negative pressure absorbs a drilling fluid on screens 23. The drilling fluid flows from the vacuum chucks 26 into a drainage component 24 and is finally discharged to the outside.
[0039] Referring to
[0040] Referring to
[0041] The bottoms of the first screen and the second screen are provided with vacuum chucks. The bottoms of the second screen and the third screen are also provided with vacuum chucks 26. The bottom of each vacuum chuck 26 is respectively connected with a drainage component 24. In other embodiments of the present disclosure, one, three, four or five screens may correspond to one vacuum chuck 26, and the number of the vacuum chucks 26 may be one, three, four, five and the like.
[0042] The interior of the drainage component 24 is provided with a U-shaped drainage channel 25. Two ports of the drainage channel 25 are respectively an inflow port 251 and an overflow port 252. The inflow port 251 communicates with the vacuum chuck 26. The height of the overflow port 252 is lower than that of the inflow port 251. After the drilling fluid enters the drainage channel 25, the drilling fluid flows out from the overflow port 252. At this time, the drilling fluid can block the drainage channel 25 to avoid the circulation of gas. During negative pressure adsorption, no air can enter the vacuum chuck 26 from the drainage channel 25. A row of flow holes 253 are formed in the bottom of the drainage channel 25. When the machine is stopped, the drilling fluid remaining in the drainage channel 25 and the vacuum chuck 26 flows out from the flow holes 253, so that the automatic discharge of the drilling fluid is realized.
[0043] Referring to
[0044] In the embodiment, the bottom plate 246 is arranged obliquely, specifically inclining downward in the direction from the inflow port 251 to the overflow port 252, that is, the position where the bottom plate 246 is connected with the right side plate 244 is in the lowest area. The flow holes 253 are formed in the position where the bottom plate 246 is connected with the right side plate 244. At the same time, a plurality of flow holes 253 are sequentially formed in the position where the bottom plate 246 is connected with the right side plate 244. In other embodiments of the present disclosure, the bottom plate 246 can also be inclined in any other direction, even bent, as long as the flow hole 253 is formed in the lowest area.
[0045] Preferably, the vacuum chuck 26 is integrally formed with the drainage component 24, that is, the drainage component is an extension of the vacuum chuck. After the drilling fluid is sucked into the vacuum chuck, the drilling fluid can directly enter the drainage component and then is drained to the outside, so that the structure of the underbalanced drilling vibrating screen is simplified. A drainage hose does not need to be installed between the vacuum chuck 26 and the drainage component 24, and the installation of the screening device is the same as that of a common vibrating screen and is simple, convenient and quick. Specifically, the front side plate 241, the rear side plate 242, the left side plate 243 and the intercepting plate 245 are respectively connected with the vacuum chuck 26 in a sealed and fixed manner.
[0046] Referring to
[0047] The support 32 comprises a plurality of vertical rods and top cross beams 34 arranged on the tops of the vertical rods. The top cross beam 34 is hollow, and the exhaust fan 33 is installed on the top cross beam 34 and communicates with the interior of the top cross beam 34. In the embodiment, since the number of the exhaust fans 33 is two, the number of top cross beams 34 is also two, and the top cross beams 34 are in one-to-one correspondence with the exhaust fans 33. Obviously, in other embodiments of the present disclosure, two cavities are formed in the top cross beam 34, and the cavities are in one-to-one correspondence with the exhaust fan 33.
[0048] The top cross beam 34 is connected with a vacuum tube 31, and a three-way pipeline in the negative pressure generating device 30 is integrated with the support so that the device is compact in structure and convenient to install. The vacuum tube 31 communicates with the corresponding vacuum chuck 26 through a ventilation unit. The ventilation unit comprises a vertical channel 211 and a transverse channel 212 which are located on the shell 21.
[0049] Referring to
[0050] The foregoing descriptions are merely exemplary embodiments of the present disclosure, but are not intended to limit the present disclosure. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present disclosure shall fall within the protection scope of the present disclosure.