CN206114008U - Hydraulic pressure energy storage workover rig safety monitoring system and contain this monitoring system's hydraulic pressure energy storage workover rig - Google Patents
Hydraulic pressure energy storage workover rig safety monitoring system and contain this monitoring system's hydraulic pressure energy storage workover rig Download PDFInfo
- Publication number
- CN206114008U CN206114008U CN201621166262.6U CN201621166262U CN206114008U CN 206114008 U CN206114008 U CN 206114008U CN 201621166262 U CN201621166262 U CN 201621166262U CN 206114008 U CN206114008 U CN 206114008U
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- strain gauge
- workover rig
- fluid cylinder
- main fluid
- monitoring system
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Abstract
The utility model relates to a hydraulic pressure energy storage well workover frame safety monitoring system to and contain this safety monitoring system's hydraulic pressure energy storage workover rig. The utility model discloses an atress key position at hydraulic pressure energy storage workover rig sets up the sensor for atress data transmitted in a real -time to the driller roon at each position shows through display terminal, triggers stop valve control button through wireless transmitting module and stop the operation and report to the police to producers through triggering audible -visual annunciator when the sensors monitor value is greater than the setting value. The utility model discloses be adapted to various hydraulic pressure energy storage workover rigs, simple to operate to production safety accident's emergence can be avoided, major contribution is made to oil industry's production safety.
Description
Technical field
This utility model is related to a kind of oil equipment frastructure state monitoring field, specifically a kind of hydraulic energy-accumulating well workover
Machine safety monitoring system and the hydraulic energy-storing workover rig comprising the monitoring system.
Background technology
Hydraulic energy-storing workover rig is a kind of new production rig, and space is little, noise is little, motor-driven with taking up an area for the type
A series of advantages such as the good, energy-conservation of property, are gradually promoted the use of in each oil field at present.In use, hydraulic energy-storing workover rig
Also some safety issues are occurred in that, is most important of which is that in raising heavy load, if raising tubing string occurs rocking or becomes
When the unstable factor such as carrying, easily there is unstable phenomenon in its derrick derricking cylinder, the serious potential safety hazard to workover treatment band.Stone
Important component part of the oil derrick as drilling and repairing well implement, which carries all wt of down-hole string and suspension system,
Its whether safe direct relation the exploitation of whole wellhead assembly and downhole crude, has great importance.Oil derrick works
Bad environments, are often subject to strong collision, and in the presence of being constantly in alternate load, thus cause derrick deformation, work as shape
Change will certainly cause the security incident that derrick collapses to a certain extent.
CN205577894U discloses a kind of fully-automatic intelligent hydraulic workover unit, and which includes vehicle-mounted chassis, electrical control cubicles, chassis
It is supporting leg, Hydraulic Station, accumulation of energy compensation device, amplitude oil cylinder, operation bench, sucker rod, centralising manipulator, flexible guide rail steel wire rope, little
Hang winch, hydraulic elevator, it is little hang, flexible guide rail winch, master cylinder guide rail, main rope, main rope fixing end, top drive dress
Put, main hydraulic cylinder, derrick, oblique pull steel wire rope, oil pipe, accumulator, nitrogen bag, move pipe rack, move pipe roller, move pipe dolly, rotation
Rotation mechanism assembly, shifting pipe cantilever assembly, shifting pipe motor shroud, shifting pipe motor assembly and main fixed pulley group, described vehicle-mounted chassis
On be provided with automatic moving bank of tubes guard system, described automatic moving bank of tubes guard system includes automatization's rack pipe mechanism, sucker rod
Pipe racking device assembly, oil pipe pipe racking device assembly, pipe mover structure assembly, adapt to intelligent, the whole operation of oil well repairing operation certainly
The demand for development of dynamicization.
The existing improvement for workover rig mostly is the lifting of automaticity, and does not out pay close attention to varying load for production
The material impact of safety, therefore, it is necessary to the deformation to derrick carries out monitor in real time, to prevent derrick from occurring collapsing, causes peace
Full production accident.
The content of the invention
Therefore, in order to the deformation to derrick carries out monitor in real time, to prevent derrick from occurring collapsing, cause thing of keeping the safety in production
Therefore.This utility model provides a kind of hydraulic energy-storing workover rig safety monitoring system, and which is applied to various workover rig devices, using model
Enclose wide, easy for installation.
A kind of oil field hydraulic energy-storing workover rig safety monitoring system described in the utility model, including caput Equi Asini stress sensing
Device, inner casing strain gauge, outer shell strain gauge, main fluid cylinder obliquity sensor, main fluid cylinder otic placode strain gauge, hound
Strain gauge, left column strain gauge, right column strain gauge and driller house;
Wherein, the caput Equi Asini strain gauge is arranged at the caput Equi Asini position of hydraulic energy-storing workover rig;The inner casing stress is passed
Sensor is arranged at inner casing position;The outer shell strain gauge is arranged at outer shell position;The main fluid cylinder obliquity sensor is arranged
In main fluid cylinder position;The main fluid cylinder otic placode strain gauge is arranged at main fluid cylinder otic placode position;The hound stress sensing
Device is arranged at brace position;The left column strain gauge is arranged at left column position;The right column strain gauge sets
It is placed in right column position.
Further, the driller house includes display terminal, audible-visual annunciator, stop valve control knob.
Further, wireless transmitter module is additionally provided with, which is used for when Sensor monitoring value exceeds setting value, by institute
State wireless transmitter module stop valve control knob is triggered to stop the operation of hydraulic energy-storing workover rig;Also, while by described
Wireless transmitter module triggering audible-visual annunciator is reported to the police.
This utility model further also provides a kind of hydraulic energy-storing workover rig comprising previous security monitoring system, including liquid
Pressure energy-storing workover rig, and coordinate the safety monitoring system installed with the hydraulic energy-storing workover rig;
Wherein, the safety monitoring system includes caput Equi Asini strain gauge, inner casing strain gauge, outer shell stress sensing
Device, main fluid cylinder obliquity sensor, main fluid cylinder otic placode strain gauge, hound strain gauge, left column force transducer, the right side are vertical
Post strain gauge and driller house;
Wherein, the caput Equi Asini strain gauge is arranged at the caput Equi Asini position of hydraulic energy-storing workover rig;The inner casing stress is passed
Sensor is arranged at inner casing position;The outer shell strain gauge is arranged at outer shell position;The main fluid cylinder obliquity sensor is arranged
In main fluid cylinder position;The main fluid cylinder otic placode strain gauge is arranged at main fluid cylinder otic placode position;The hound stress sensing
Device is arranged at brace position;The left column strain gauge is arranged at left column position;The right column strain gauge sets
It is placed in right column position.
Further, the driller house of described hydraulic energy-storing workover rig includes display terminal, audible-visual annunciator, cut-off
Valve control knob.
Further, described hydraulic energy-storing workover rig, is additionally provided with wireless transmitter module, and which is used for each sensor
Monitoring Data is transferred to driller house, and driller can pass through the data that display terminal reads each sensor in real time;In Sensor monitoring
When value exceeds setting value, trigger stop valve control knob to stop the work of hydraulic energy-storing workover rig by the wireless transmitter module
Industry;Also, while audible-visual annunciator is triggered by the wireless transmitter module reported to the police.
The beneficial effects of the utility model are:
This utility model arranges strain gauge to monitor hydraulic pressure by the stress key position in hydraulic energy-storing workover rig
The stress of energy-storing workover rig key position, then monitor main fluid cylinder by obliquity sensor and unstability whether occur, driller can be with
In numerical value and curve of the driller house by each sensor of display terminal Real Time Observation.When Sensor monitoring value exceeds setting value,
Then trigger stop valve control knob by wireless transmitter module to stop operation, while trigger audible-visual annunciator reported to the police, can
Effectively the risk of prompting production safety, ensures job safety.
Description of the drawings
Fig. 1 is of the present utility model with safety monitoring system and hydraulic energy-storing workover rig comprising the safety monitoring system
A kind of embodiment.
1 is caput Equi Asini strain gauge, and 2 is inner casing strain gauge, and 3 is outer shell strain gauge, and based on 4, fluid cylinder inclination angle passes
Sensor, fluid cylinder otic placode strain gauge based on 5,6 is hound strain gauge, and 7 is left column strain gauge, and 8 is right vertical
Post strain gauge, 9 is driller house, and 10 is display terminal, and 11 is audible-visual annunciator, and 12 is stop valve control knob.
Specific embodiment
Realization of the present utility model is introduced below by way of specific embodiment and is had the advantage that, but should not be right accordingly
Practical range of the present utility model constitutes any restriction.
The utility model is described in further detail below in conjunction with the accompanying drawings:
The scheme implemented for oil field hydraulic energy-storing workover rig safety monitoring system as shown in Figure 1.In hydraulic energy-storing workover rig
Key position arrangement caput Equi Asini strain gauge 1, inner casing strain gauge 2, outer shell strain gauge 3, main fluid cylinder obliquity sensor
4th, main fluid cylinder otic placode strain gauge 5, hound strain gauge 6, left column strain gauge 7, right column strain gauge
8.When workover rig carries out workover treatment, start each sensor, display terminal 10, audible-visual annunciator 11.Driller can be in driller house
The numerical value and curve of each sensor watched in real time by display terminal 10, real-time monitoring hydraulic energy-storing workover rig key position is received
Whether power state and main fluid cylinder there is unstable phenomenon.Once Sensor monitoring value exceeds setting value, then by its wireless transmit
Module triggering stop valve control knob 12, stops operation.Trigger audible-visual annunciator 11 simultaneously to be reported to the police.
Thus understand in, caput Equi Asini strain gauge 1 is arranged at caput Equi Asini position, inner casing strain gauge 2 and is arranged at inner casing portion
Position, outer shell strain gauge 3 are arranged at outer shell position, main fluid cylinder obliquity sensor 4 and are arranged at main fluid cylinder position, main fluid cylinder otic placode
Strain gauge 5 is arranged at main fluid cylinder otic placode position, hound strain gauge 6 and is arranged at hound position, left column stress
Sensor 7 is arranged at left column position, right column strain gauge 8 and is arranged at right column position.
Each sensing data is sent to driller house 9 by wireless transmitter module, is shown by display terminal 10, and driller can be with
The stressing conditions of each key position of Real Time Observation, when each Sensor monitoring value exceedes setting value, can also pass through wireless transmit mould
Block triggers stop valve control knob 12 to stop operation, it is to avoid security incident occurs, while can also be touched by wireless transmitter module
Sounding light crossing-signal 11 is reported to the police, and points out the generation of producers' abnormal conditions.
Applicant states that this utility model illustrates method detailed of the present utility model, but this reality by above-described embodiment
Above-mentioned method detailed is not limited to new, that is, does not mean that this utility model has to rely on above-mentioned method detailed ability real
Apply.Person of ordinary skill in the field it will be clearly understood that to any improvement of the present utility model, to each original of this utility model product
The addition of the equivalence replacement and auxiliary element of material, selection of concrete mode etc., all fall within protection domain of the present utility model and public affairs
Within the scope of opening.
Claims (6)
1. a kind of oil field hydraulic energy-storing workover rig safety monitoring system, it is characterised in that including caput Equi Asini strain gauge (1),
Inner casing strain gauge (2), outer shell strain gauge (3), main fluid cylinder obliquity sensor (4), main fluid cylinder otic placode strain gauge
(5), hound strain gauge (6), left column strain gauge (7), right column strain gauge (8), and driller house
(9);
Wherein, the caput Equi Asini strain gauge (1) is arranged at the caput Equi Asini position of hydraulic energy-storing workover rig;The inner casing stress sensing
Device (2) is arranged at inner casing position;The outer shell strain gauge (3) is arranged at outer shell position;The main fluid cylinder obliquity sensor
(4) it is arranged at main fluid cylinder position;The main fluid cylinder otic placode strain gauge (5) is arranged at main fluid cylinder otic placode position;The diagonal brace
Stress in the bar sensor (6) is arranged at brace position;The left column strain gauge (7) is arranged at left column position;The right side
Column stress sensor (8) is arranged at right column position.
2. safety monitoring system according to claim 1, it is characterised in that the driller house (9) is including display terminal
(10), audible-visual annunciator (11), stop valve control knob (12).
3. safety monitoring system according to claim 1 and 2, it is characterised in that be additionally provided with wireless transmitter module, its use
In when Sensor monitoring value exceeds setting value, trigger stop valve control knob to stop hydraulic pressure by the wireless transmitter module
The operation of energy-storing workover rig;Also, while audible-visual annunciator (11) is triggered by the wireless transmitter module reported to the police.
4. a kind of hydraulic energy-storing workover rig comprising safety monitoring system described in any one of claim 1-3, it is characterised in that bag
Hydraulic energy-storing workover rig is included, and coordinates the safety monitoring system installed with the hydraulic energy-storing workover rig;
Wherein, the safety monitoring system includes caput Equi Asini strain gauge (1), inner casing strain gauge (2), outer shell stress sensing
Device (3), main fluid cylinder obliquity sensor (4), main fluid cylinder otic placode strain gauge (5), hound strain gauge (6), left column
Force transducer (7), right column strain gauge (8), and driller house (9);
Wherein, the caput Equi Asini strain gauge (1) is arranged at the caput Equi Asini position of hydraulic energy-storing workover rig;The inner casing stress sensing
Device (2) is arranged at inner casing position;The outer shell strain gauge (3) is arranged at outer shell position;The main fluid cylinder obliquity sensor
(4) it is arranged at main fluid cylinder position;The main fluid cylinder otic placode strain gauge (5) is arranged at main fluid cylinder otic placode position;The diagonal brace
Stress in the bar sensor (6) is arranged at brace position;The left column strain gauge (7) is arranged at left column position;The right side
Column stress sensor (8) is arranged at right column position.
5. hydraulic energy-storing workover rig according to claim 4, it is characterised in that the driller house (9) is including display terminal
(10), audible-visual annunciator (11), stop valve control knob (12).
6. the hydraulic energy-storing workover rig according to claim 4 or 5, it is characterised in that be additionally provided with wireless transmitter module, its
For when Sensor monitoring value exceeds setting value, triggering stop valve control knob with stop solution by the wireless transmitter module
The operation of pressure energy-storing workover rig;Also, while audible-visual annunciator (11) is triggered by the wireless transmitter module reported to the police.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621166262.6U CN206114008U (en) | 2016-10-31 | 2016-10-31 | Hydraulic pressure energy storage workover rig safety monitoring system and contain this monitoring system's hydraulic pressure energy storage workover rig |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201621166262.6U CN206114008U (en) | 2016-10-31 | 2016-10-31 | Hydraulic pressure energy storage workover rig safety monitoring system and contain this monitoring system's hydraulic pressure energy storage workover rig |
Publications (1)
Publication Number | Publication Date |
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CN206114008U true CN206114008U (en) | 2017-04-19 |
Family
ID=58525065
Family Applications (1)
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CN201621166262.6U Expired - Fee Related CN206114008U (en) | 2016-10-31 | 2016-10-31 | Hydraulic pressure energy storage workover rig safety monitoring system and contain this monitoring system's hydraulic pressure energy storage workover rig |
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CN (1) | CN206114008U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116449725A (en) * | 2023-06-19 | 2023-07-18 | 深蓝(天津)智能制造有限责任公司 | Visual calandria intelligent control method and system |
-
2016
- 2016-10-31 CN CN201621166262.6U patent/CN206114008U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116449725A (en) * | 2023-06-19 | 2023-07-18 | 深蓝(天津)智能制造有限责任公司 | Visual calandria intelligent control method and system |
CN116449725B (en) * | 2023-06-19 | 2023-09-12 | 深蓝(天津)智能制造有限责任公司 | Visual calandria intelligent control method and system |
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Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170419 Termination date: 20181031 |