CN203894064U - Downhole tool mode test platform - Google Patents

Downhole tool mode test platform Download PDF

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Publication number
CN203894064U
CN203894064U CN201420014837.7U CN201420014837U CN203894064U CN 203894064 U CN203894064 U CN 203894064U CN 201420014837 U CN201420014837 U CN 201420014837U CN 203894064 U CN203894064 U CN 203894064U
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CN
China
Prior art keywords
derrick
test
ground
fixed pulley
test platform
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Expired - Fee Related
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CN201420014837.7U
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Chinese (zh)
Inventor
宫旭梅
成远久
陈韬婕
曹婷婷
张宝杰
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China University of Petroleum East China
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China University of Petroleum East China
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Priority to CN201420014837.7U priority Critical patent/CN203894064U/en
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Abstract

The utility model relates to a test platform used for testing the structure performance of the oil field downhole tools, to be specific, relates to a downhole tool mode test platform. The downhole tool mode test platform comprises a ground track, a derrick sliding groove, a derrick track, a top crane track, a ground fixed pulley, a ground movable pulley, a steel floor, a test borehole, a test derrick, a travelling block large hook, a lead screw, a reversing fixed pulley, a travelling cross beam, a fixed pulley group, a steel wire rope 1, a lead screw driving motor, a movable pulley group, a speed reducer, a roller, a winch system motor, a hydraulic column, a guiding column, a pedestal, a rotating system, a clamping tool, a loading working bench, an operation instrument desk, a travel switch, a pedestal, a steel wire rope 2, a hydraulic large pincer, and a clamping ring. The derrick sliding groove is disposed on the ground track. The downhole tool mode test platform is advantageous in that the related structure performance testing experiments of the downhole tools can be carried out, the defects of the conventional test platforms such as weak flexibility, low utilization rate, weak integration, single well type, tool, and simulation way can be overcome, and a certain beneficial effects can be provided.

Description

A kind of subsurface tool model test platform
Technical field
The utility model relates to a kind of test platform of testing oil field subsurface tool structural behaviour, specifically a kind of subsurface tool model test platform.
Background technology
Because oil field is unified to mechanical equipment and shop characteristic shortage at present, perfect test evaluation system and platform, technology for detection mechanism cannot carry out system to it, the test evaluation of science, make field management department and engineering technical personnel shortage science in the selection of oil production equipment and technique and supporting application, reliable technical basis, cannot realize the scientific management of computer collecting system and improve operational efficiency, be unfavorable for oilfield reserve use rate, the raising of recovery ratio, and the imperfection of test evaluation means also becomes restriction oil production equipment quality improvement, the technical bottleneck of new product development.Though the product of existing relevant subsurface tool analogue test platform occurs at present, but these platforms can only be for single well head fixed installation, can not between Duo Koujing, move to switch and use, cause test platform utilization factor lower, existing test platform integration is poor, before test instrument on put and put and load the distinct device that test need to separate and carry out, relatively loaded down with trivial details; The analog form that existing test platform equipment provides also more single, seldom have to provide simultaneously and draw, press, turn round and the load test of effect simultaneously.
Utility model content
The utility model is intended to address the above problem, a kind of subsurface tool analogue test platform is provided, can carry out relevant structural behaviour testing experiment to subsurface tool, overcome existing test platform very flexible, utilization factor is low, integration is poor, well type, instrument, the shortcoming that analog form is single, and its technical scheme adopting is as follows:
A kind of subsurface tool model test platform comprises: ground rail, derrick chute, derrick track, top overhead crane orbit, ground fixed pulley, ground travelling block, steel floor, test well, test derrick, travelling sheave hook, leading screw, commutation fixed pulley, crossbeam moves about, fixed pulley group, wire rope one, leading screw drive motor, running block, reducer casing, reel, hoister system motor, hydraulic column, guidepost, base, rotation system, clamping device, load worktable, operation instrument desk, travel switch, pedestal, wire rope two, hydraulic tongs and snap ring form, described ground rail is connected with ground, described derrick chute is located on ground rail, described derrick track is connected with steel floor, described derrick track is connected with test derrick, described derrick track is provided with travel switch and base, described base is provided with rotation system, described loading worktable is connected with base by guidepost, described loading worktable bottom is provided with clamping device, described reel and hoister system motor are connected on reducer casing, and described hydraulic column is connected with base by loading worktable, and described steel floor is provided with ground fixed pulley, ground travelling block and 6 test wells, described test pit top of the trellis is provided with top overhead crane orbit, described top overhead crane orbit is provided with the crossbeam that moves about, the described crossbeam below of moving about is provided with fixed pulley group, described wire rope one one end is connected with fixed pulley group, the other end is connected with running block, described leading screw is connected with test pit top of the trellis through the crossbeam one end of moving about, the other end is connected with leading screw drive motor, described commutation fixed pulley and test pit top of the trellis are affixed, described running block is connected with travelling sheave hook, and described wire rope two-way is crossed reel and is connected with ground travelling block, described reducer casing, reel and hoister system motor are located at respectively on pedestal, the rectangular distribution of described test well, and between two tracks, along ground rail direction two row's three row, the well type of every mouthful of well is different, is respectively straight well, horizontal well, 15 ° of inclined shafts, 30 ° of inclined shafts, 45 ° of inclined shafts and 75 ° of inclined shafts.
On the basis of technique scheme, described base is square, is also provided with 4 guideposts, is located at respectively 4 angles of base.
On the basis of technique scheme, described operation instrument desk is located at test derrick bottom portion side end and is connected with steel floor.
On the basis of technique scheme, described test derrick is trapezium structure.
On the basis of technique scheme, in described loading worktable, be provided with hydraulic tongs, described hydraulic tongs is connected with snap ring.
The utlity model has following advantage: the movement that this test platform can implementation space three-dimensional, be convenient between Duo Koujing, to switch, avoid in traditional platform a platform can only be applicable to the drawback of a bite well; On subsurface tool, put put, load test completes by this cover test platform, simple in structure, easy to use, and on to put clearance journey larger; Weighted platform with on put and set level platform and separate work, on instrument, put and put when not needing accurately location and loading, thereby only with hook block, provide the pulling force can be greatly energy-conservation; Being used in conjunction with of many places movable and fixed pulley, can greatly realize laborsaving; The crossbeam that moves about of top Overhead travelling crane system is driven by leading screw, thus can realize steady movement and be convenient to accurately, location fast.
Accompanying drawing explanation
Fig. 1 is one-piece construction schematic diagram of the present utility model.
Fig. 2 is overhead traveling crane structure for amplifying schematic diagram of the present utility model.
Fig. 3 is derrick pulley group of the present utility model and travelling sheave pulley blocks winding mode schematic diagram.
Fig. 4 is test weighted platform part partial enlarged drawing of the present utility model.
Fig. 5 is hoister system partial enlarged drawing of the present utility model.
Fig. 6 is test weighted platform part sectioned view of the present utility model.
Symbol description:
1. ground rail, 2. derrick chute, 3. derrick track, 4. top overhead crane orbit, 5. ground fixed pulley, 6. ground travelling block, 7. steel floor, 8. test well, 9. test derrick, 10. travelling sheave hook, 11. leading screws, 12. commutation fixed pulleys, 13. crossbeams that move about, 14. fixed pulley groups, 15. wire rope one, 16. leading screw drive motor, 17. running blocks, 18. reducer casinges, 19. reels, 20. hoister system motors, 21. hydraulic columns, 22. guideposts, 23. bases, 24. rotation systems, 25. clamping devices, 26. load worktable, 27. operation instrument desks, 28. travel switches, 29. pedestals, 30. wire rope two, 31. hydraulic tongs, 32. snap rings.
Embodiment
Below in conjunction with accompanying drawing and example, the utility model is described in further detail:
As Fig. 1, Fig. 2, Fig. 3, Fig. 4, shown in Fig. 5 and Fig. 6, a kind of subsurface tool model test platform comprises: ground rail 1, derrick chute 2, derrick track 3, top overhead crane orbit 4, ground fixed pulley 5, ground travelling block 6, steel floor 7, test well 8, test derrick 9, travelling sheave hook 10, leading screw 11, commutation fixed pulley 12, crossbeam 13 moves about, fixed pulley group 14, wire rope 1, leading screw drive motor 16, running block 17, reducer casing 18, reel 19, hoister system motor 20, hydraulic column 21, guidepost 22, base 23, rotation system 24, clamping device 25, load worktable 26, operation instrument desk 27, travel switch 28, pedestal 29, wire rope 2 30, hydraulic tongs 31 and snap ring 32 form, described ground rail 1 is connected with ground, described derrick chute 2 is located on ground rail 1, described derrick track 3 is connected with steel floor 7, described derrick track 3 is connected with test derrick 9, described derrick track 3 is provided with travel switch 28 and base 23, described base 23 is provided with rotation system 24, described loading worktable 26 is connected with base 23 by guidepost 22, described loading worktable 26 bottoms are provided with clamping device 25, described reel 19 is connected on reducer casing 18 with hoister system motor 20, described hydraulic column 21 is connected with base 23 by loading worktable 26, described steel floor 7 is provided with ground fixed pulley 5, ground travelling block 6 and six test wells 8, described test derrick 9 tops are provided with top overhead crane orbit 4, described top overhead crane orbit 4 is provided with the crossbeam 13 that moves about, described crossbeam 13 belows of moving about are provided with fixed pulley group 14, described wire rope one 15 one end are connected with fixed pulley group 14, the other end is connected with running block 17, described leading screw 11 is connected with test derrick 9 tops through crossbeam 13 one end of moving about, the other end is connected with leading screw drive motor 16, described commutation fixed pulley 12 is affixed with test derrick 9 tops, described running block 17 is connected with travelling sheave hook 10, and described wire rope 2 30 is connected with ground travelling block 6 by reel 19, described reducer casing 18, reel 19 and hoister system motor 20 are located at respectively on pedestal 29, the rectangular distribution of described test well 8, and between two tracks, along ground rail direction two row's three row, the well type of every mouthful of well is different, is respectively straight well, horizontal well, 15 ° of inclined shafts, 30 ° of inclined shafts, 45 ° of inclined shafts and 75 ° of inclined shafts.
Preferably, described base 23 is square, is also provided with four guideposts 22, is located at respectively four angles on base 23.
Preferably, described operation instrument desk 27 is located at test derrick 9 bottom portion side ends and is connected with steel floor 7.
Preferably, described test derrick 9 is trapezium structure.
Preferably, in described loading worktable 26, be provided with hydraulic tongs 31, described hydraulic tongs 31 is connected with snap ring 32.
With way of example, the utility model is illustrated above, but the utility model is not limited to above-mentioned specific embodiment, all any changes of doing based on the utility model or modification all belong to the claimed scope of the utility model.

Claims (5)

1. a subsurface tool model test platform, by ground rail, derrick chute, derrick track, top overhead crane orbit, ground fixed pulley, ground travelling block, steel floor, test well, test derrick, travelling sheave hook, leading screw, commutation fixed pulley, crossbeam moves about, fixed pulley group, wire rope one, leading screw drive motor, running block, reducer casing, reel, hoister system motor, hydraulic column, guidepost, base, rotation system, clamping device, load worktable, operation instrument desk, travel switch, pedestal, wire rope two, hydraulic tongs and snap ring form, described ground rail is connected with ground, described derrick chute is located on ground rail, described derrick track is connected with steel floor, described derrick track is connected with test derrick, described derrick track is provided with travel switch and base, described base is provided with rotation system, described loading worktable is connected with base by guidepost, described loading worktable bottom is provided with clamping device, described reel and hoister system motor are connected on reducer casing, and described hydraulic column is connected with base by loading worktable, and described steel floor is provided with ground fixed pulley, ground travelling block and 6 test wells, described test pit top of the trellis is provided with top overhead crane orbit, described top overhead crane orbit is provided with the crossbeam that moves about, the described crossbeam below of moving about is provided with fixed pulley group, described wire rope one one end is connected with fixed pulley group, the other end is connected with running block, described leading screw is connected with test pit top of the trellis through the crossbeam one end of moving about, the other end is connected with leading screw drive motor, described commutation fixed pulley and test pit top of the trellis are affixed, described running block is connected with travelling sheave hook, and described wire rope two-way is crossed reel and is connected with ground travelling block, described reducer casing, reel and hoister system motor are located at respectively on pedestal, the rectangular distribution of described test well, and between two tracks, along ground rail direction two row's three row, the well type of every mouthful of well is different, is respectively straight well, horizontal well, 15 ° of inclined shafts, 30 ° of inclined shafts, 45 ° of inclined shafts and 75 ° of inclined shafts.
2. a kind of subsurface tool model test platform according to claim 1, is characterized in that, described base is square, is also provided with 4 guideposts, is located at respectively 4 angles of base.
3. a kind of subsurface tool model test platform according to claim 1, is characterized in that, described operation instrument desk is located at test derrick bottom portion side end and is connected with steel floor.
4. a kind of subsurface tool model test platform according to claim 1, is characterized in that, described test derrick is trapezium structure.
5. a kind of subsurface tool model test platform according to claim 1, is characterized in that,
In described loading worktable, be provided with hydraulic tongs, described hydraulic tongs is connected with snap ring.
CN201420014837.7U 2014-01-09 2014-01-09 Downhole tool mode test platform Expired - Fee Related CN203894064U (en)

Priority Applications (1)

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CN201420014837.7U CN203894064U (en) 2014-01-09 2014-01-09 Downhole tool mode test platform

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Application Number Priority Date Filing Date Title
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Publications (1)

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CN203894064U true CN203894064U (en) 2014-10-22

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104596787A (en) * 2015-01-26 2015-05-06 中信重工机械股份有限公司 Test device for cage anti-dropping device
CN110318730A (en) * 2019-06-25 2019-10-11 中国石油化工股份有限公司 The multi-functional downhole probe testing stand of high-freedom degree
CN113250629A (en) * 2021-05-27 2021-08-13 杨承武 Electromechanical integrated workover rig

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104596787A (en) * 2015-01-26 2015-05-06 中信重工机械股份有限公司 Test device for cage anti-dropping device
CN110318730A (en) * 2019-06-25 2019-10-11 中国石油化工股份有限公司 The multi-functional downhole probe testing stand of high-freedom degree
CN113250629A (en) * 2021-05-27 2021-08-13 杨承武 Electromechanical integrated workover rig

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141022

Termination date: 20150109

EXPY Termination of patent right or utility model