CN206111156U - Can realize gas -liquid separation's plunger airlift unit - Google Patents

Can realize gas -liquid separation's plunger airlift unit Download PDF

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Publication number
CN206111156U
CN206111156U CN201621097069.1U CN201621097069U CN206111156U CN 206111156 U CN206111156 U CN 206111156U CN 201621097069 U CN201621097069 U CN 201621097069U CN 206111156 U CN206111156 U CN 206111156U
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CN
China
Prior art keywords
gas
temperature
pipe
oil pipe
plunger
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.)
Expired - Fee Related
Application number
CN201621097069.1U
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Chinese (zh)
Inventor
赵宏宇
� 潘
潘一
王月超
杨双春
孙祥磊
张曦
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Liaoning Shihua University
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Liaoning Shihua University
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Priority to CN201621097069.1U priority Critical patent/CN206111156U/en
Application granted granted Critical
Publication of CN206111156U publication Critical patent/CN206111156U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a can realize gas -liquid separation's plunger airlift unit. It is decided ware, vapour and liquid separator, outlet duct, play oil pipe, pneumatic valve, temperature control device, temperature display device, gas -liquid post, plunger, pay sand, temperature sensor and forms by preventing spray cap, lubricator, total valve, gas injection mouth, pressure display device, temperature -controlled box, sleeve pipe, oil pipe, damping spring, pressure sensor, card. This device principle is simple, convenient operation, and control numerical value is accurate, the system composition of the understanding plunger airlift unit that can know to can realize gas -liquid separation, especially adapted experimental study.

Description

A kind of plunger lift device of achievable gas-liquid separation
Technical field
The utility model is related to a kind of experimental provision, more particularly to a kind of plunger lift device of achievable gas-liquid separation.
Background technology
Various experimental provisions bring to scientific research it is many convenient and convenient, can help people understand various phenomenons, Principle and experimental study is carried out, but be not capable of achieving the plunger lift experimental provision of gas-liquid separation at present.Therefore, for Problem above, design one kind can simulate true stratum, and the plunger lift device of achievable gas-liquid separation seems particularly necessary.
Utility model content
For the problems referred to above, the utility model provides a kind of plunger lift device of achievable gas-liquid separation, can pass through Injection gas realizes plunger lift process, and using gas-liquid separator gas-liquid separation is realized.Principle of device is simple, works well.
The utility model solves the technical scheme that its technical problem adopted:The utility model is by anti-gushing cap, blowout prevention Pipe, total valve, gas injection port, pressure-display device, temperature-controlled box, sleeve pipe, oil pipe, damping spring, pressure sensor, fastener, gas Liquid/gas separator, escaping pipe, flowline, pneumatic operated valve, temperature control equipment, temperature indicating device, plunger, pay sand, TEMP Device is constituted.Sleeve pipe is located inside temperature-controlled box, and pay sand is located at sleeve bottom.Temperature sensor is arranged on sleeve bottom right side, pressure Force snesor is arranged on sleeve bottom left side.Temperature indicating device is arranged on temperature control box outer wall upper right side position, temperature control dress Put installed in temperature indicating device top, pressure-display device is arranged on temperature control box outer wall upper left side position.Oil pipe is vertically placed In sleeve pipe central authorities, fastener and damping spring are fixed on oil pipe bottom.Gas injection port is located at the upper left side of device, and plunger is located at oil pipe Inside, can move up and down, and total valve is located at the middle and upper part of oil pipe.Lubricator is connected with oil pipe top, and anti-gushing cap is located at lubricator Top.Pneumatic operated valve is connected to oil pipe upper right, and gas-liquid separator is connected with pneumatic operated valve.It is right that escaping pipe is connected to gas-liquid separator Top, flowline is connected to gas-liquid separator right lower quadrant.
The beneficial effects of the utility model are that the utility model in annular space of the gas injection port between tubing and casing by injecting Air, simulates different pressures, studies impact of the Different Strata pressure to plunger lift;Change device inside temperature using temperature-controlled box Degree, simulates Different Strata temperature, and observes stratum actual temperature by temperature indicating device, and observation temperature is to plunger lift Affect;Pay sand simulates true stratum, and the property of oil-sand is controlled, simulate different core intersections, viscosity of crude and Other geologic(al) factors such as initial oil saturation, observe impact of the geologic(al) factor to plunger lift;Using lubricator and anti-gushing cap The oil-well blowing of unit simulation is prevented, the security performance of device is enhanced;Gas-liquid separator is capable of achieving oil and separates with gas.This dress Put principle simple, easy to operate, control numerical value accurately, can be apparent from the system composition of plunger lift device, and can be real Existing gas-liquid separation, is especially suitable for experimental study.
Description of the drawings
Below in conjunction with the accompanying drawings the utility model is described in further detail.
Fig. 1 is structural representation of the present utility model.
In Fig. 1,1. anti-gushing cap, 2. lubricator, 3. total valve, 4. gas injection port, 5. pressure-display device, 6. temperature-controlled box, 7. Sleeve pipe, 8. oil pipe, 9. damping spring, 10. pressure sensor, 11. fasteners, 12. gas-liquid separators, 13. escaping pipes, 14. go out Oil pipe, 15. pneumatic operated valves, 16. temperature control equipments, 17. temperature indicating devices, 18. plungers, 19. pay sands, 20. TEMPs Device.
Specific embodiment
The utility model is by anti-gushing cap(1), lubricator(2), total valve(3), gas injection port(4), pressure-display device (5), temperature-controlled box(6), sleeve pipe(7), oil pipe(8), damping spring(9), pressure sensor(10), fastener(11), gas-liquid separation Device(12), escaping pipe(13), flowline(14), pneumatic operated valve(15), temperature control equipment(16), temperature indicating device(17), post Plug(18), pay sand(19), temperature sensor(20)Composition.During operation, by total valve(3)Control controlling plunger The beginning of gaslift process;By gas injection port(4)In oil pipe(8)And sleeve pipe(7)Between annular space in injection air, simulation is different Pressure, by pressure-display device(5)Read pay sand(19)In concrete pressure value, simulation Different Strata pressure to plunger gas The impact of act;Pay sand(19)Interior liquid passes through plunger(18)With oil pipe(8)Annular gap rise to plunger(18)It is poly- above Accumulate into one section of gas-liquid post;When ground pneumatic operated valve(15)Open, production flow line is unimpeded, sleeve pipe(7)Interior gas is to oil pipe(8)Expansion, Reach plunger(18)Below, plunger is promoted(18)Leave fastener(11)Begin to ramp up, plunger promotes the gas-liquid post of top aggregation Rise, until plunger(18)Reach well head.Oil pipe is reached in plunger(8)During top, anti-gushing cap(1)And lubricator(2)Can prevent The oil-well blowing of unit simulation;Gas-liquid post from well head output, by oil pipe(8)Flow gas-liquid separator(12)In, in gas-liquid post The gas and liquid of mixing is in gas-liquid separator(12)In separate because density is different, through gas-liquid separator(12)It is detached Gas and liquid are respectively from escaping pipe(13), flowline(14)Middle output;Oil pressure is reduced rapidly, when pressure drops to minimum of a value, ground Face controls pneumatic operated valve(15)Close, plunger(18)In oil pipe under self gravitation(8)Interior whereabouts, falls to reaching sleeve pipe(7)Bottom During position, damping spring is clashed into(9), it is parked in sleeve pipe(7)Bottom, into subsequent cycle process.Using temperature-controlled box(6)On temperature Control device(16)Adjusting needs the formation temperature size of simulation, by temperature indicating device(17)Showing needs the stratum of simulation Temperature, works as temperature indicating device(17)The numerical value and temperature control equipment of display(16)When the numerical value of control is identical, then can be with standard Impact of the true simulation Different Strata temperature to plunger lift;Using pay sand(20)True stratum is simulated, by pay sand (19)Properties control, can simulate different viscosity of crude and initial oil saturation, observation geologic(al) factor is to post The impact of plug gaslift, can change pay sand(19)Thickness, simulates impact of the core intersection to plunger lift.The letter of this principle of device Single, easy to operate, control numerical value accurately, can be apparent from the system composition of plunger lift device, and be capable of achieving gas-liquid point From being especially suitable for experimental study.

Claims (1)

1. a kind of plunger lift device of achievable gas-liquid separation, it is by anti-gushing cap, lubricator, total valve, gas injection port, pressure It is display device, temperature-controlled box, sleeve pipe, oil pipe, damping spring, pressure sensor, fastener, gas-liquid separator, escaping pipe, fuel-displaced Pipe, pneumatic operated valve, temperature control equipment, temperature indicating device, plunger, pay sand, temperature sensor composition, it is characterised in that institute The sleeve pipe stated is located inside temperature-controlled box;Described pay sand is located at sleeve bottom;Described temperature sensor is arranged on set ttom of pipe Portion right side;Described pressure sensor is arranged on sleeve bottom left side;Described temperature indicating device is arranged on temperature control box outer wall Upper right side position, temperature control equipment is arranged on temperature indicating device top;Described pressure-display device is arranged on temperature-controlled box Outer wall upper left side position;Described oil pipe is vertically placed on sleeve pipe central authorities, and fastener and damping spring are fixed on oil pipe bottom;Institute The gas injection port stated is located at the upper left side of device;Described plunger is located inside oil pipe, can be moved up and down;Described total valve is located at The middle and upper part of oil pipe, lubricator is connected with oil pipe top, and anti-gushing cap is located at lubricator top;Described pneumatic operated valve is connected to oil pipe Upper right;Described gas-liquid separator is connected with pneumatic operated valve;Described escaping pipe is connected to gas-liquid separator upper right quarter, fuel-displaced Pipe is connected to gas-liquid separator right lower quadrant.
CN201621097069.1U 2016-10-01 2016-10-01 Can realize gas -liquid separation's plunger airlift unit Expired - Fee Related CN206111156U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621097069.1U CN206111156U (en) 2016-10-01 2016-10-01 Can realize gas -liquid separation's plunger airlift unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621097069.1U CN206111156U (en) 2016-10-01 2016-10-01 Can realize gas -liquid separation's plunger airlift unit

Publications (1)

Publication Number Publication Date
CN206111156U true CN206111156U (en) 2017-04-19

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Application Number Title Priority Date Filing Date
CN201621097069.1U Expired - Fee Related CN206111156U (en) 2016-10-01 2016-10-01 Can realize gas -liquid separation's plunger airlift unit

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111364947A (en) * 2020-03-30 2020-07-03 中国石油天然气集团有限公司 Plunger drainage gas production simulation device and simulation method
WO2022151550A1 (en) * 2021-01-13 2022-07-21 江苏联友科研仪器有限公司 Visual model kettle for ultra-low permeability gas

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111364947A (en) * 2020-03-30 2020-07-03 中国石油天然气集团有限公司 Plunger drainage gas production simulation device and simulation method
CN111364947B (en) * 2020-03-30 2022-11-29 中国石油天然气集团有限公司 Plunger drainage gas production simulation device and simulation method
WO2022151550A1 (en) * 2021-01-13 2022-07-21 江苏联友科研仪器有限公司 Visual model kettle for ultra-low permeability gas

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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: 20171001