CN109488882A - A kind of gas-liquid delivery supercharging device and method with wire mesh demister - Google Patents

A kind of gas-liquid delivery supercharging device and method with wire mesh demister Download PDF

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Publication number
CN109488882A
CN109488882A CN201811323807.3A CN201811323807A CN109488882A CN 109488882 A CN109488882 A CN 109488882A CN 201811323807 A CN201811323807 A CN 201811323807A CN 109488882 A CN109488882 A CN 109488882A
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China
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gas
washing tank
liquid
medium
wire mesh
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Granted
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CN201811323807.3A
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CN109488882B (en
Inventor
张志红
雷军
谭锐
胡葵
唐超
李伟峰
李娜
樊启洪
党建国
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WUHAN QIDAKANG ENVIRONMENTAL PROTECTION TECHNOLOGY STOCK CO.,LTD.
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Wuhan Qi Dakang Resource Equipment Co Ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F17STORING OR DISTRIBUTING GASES OR LIQUIDS
    • F17DPIPE-LINE SYSTEMS; PIPE-LINES
    • F17D1/00Pipe-line systems
    • F17D1/005Pipe-line systems for a two-phase gas-liquid flow

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Filtering Of Dispersed Particles In Gases (AREA)
  • Separation By Low-Temperature Treatments (AREA)

Abstract

The present invention relates to a kind of gas-liquid delivery supercharging device and methods, belong to gas-liquid delivery supercharging technology field, and in particular to a kind of gas-liquid delivery supercharging device and method with wire mesh demister.It include: washing tank, the medium input port of the washing tank is input into a mouthful A and is connected with mixed, and medium delivery outlet is connected with mixed delivery outlet B;The gas vent of the washing tank is connected with compressor, the gas input port of the delivery outlet connection washing tank of the compressor.The device and method is able to achieve gas-liquid delivery, and device integrated level is high, and stability is good, and applied widely, manufacturing cost is low, especially suitable for oil gas field gas-liquid delivery and petroleum vapor recovery project, and in-site installation and convenient removal.

Description

A kind of gas-liquid delivery supercharging device and method with wire mesh demister
Technical field
The present invention relates to a kind of gas-liquid delivery supercharging device and methods, belong to gas-liquid delivery supercharging technology field, specifically relate to And a kind of gas-liquid delivery supercharging device and method with wire mesh demister.
Background technique
With desert, the exploitation in marine oil gas field and the development of oil-gas gathering and transportation matching technology, oil gas water multi-phase mixed delivering skill Art is more and more widely used.It by multi-product pipeline is current oil after the low pressure oil gas medium pressurization produced to well head Gas long range, the most effective approach of high efficiency transport, there is great Social benefit and economic benefit.
Traditional well site mixed transportation process is as follows: defeated medium mixed to low pressure first and is heated, then carries out gas-liquid separation again, The liquid medium isolated is stored in fluid reservoir, is discharged into mixed transporting tube net after extracting pressurization by output pump;The gas isolated Medium is pressurized by compressor again after filtering, and pressurized high-pressure gas medium is discharged into gas line network, realizes gas-liquid It mixes defeated.Wellsite facility is mainly made of mechanical commprssor, heating furnace, separator, filter, fluid reservoir, output pump etc., equipment More, complex process, failure is more, and is not easy into sled, is unable to centralized control, in-site installation trouble, installation period is long, takes up an area face Product is big, is not suitable for transition transport.In addition, mechanical compressor is very narrow to the area requirement of admission pressure, and mix defeated pressure medium model It encloses too wide, pressure need to be depressured in the range of compressor allows, then be pressurized, energy loss is serious;Saturated water (liquid in gas Body) destruction is risen to compressor, compressor fault rate is high.
There are also a kind of well site mixed transportation process at present: mixing defeated medium to low pressure first and carries out gas-liquid separation, the liquid isolated Media storage is in fluid reservoir, and the gas medium isolated is pressurized by compressor again after filtering, pressurized height Pressure gas medium is discharged into fluid reservoir again, and liquid medium release is discharged into mixed transporting tube net, realizes gas-liquid delivery.Wellsite facility is mainly The composition such as hydraulic compressor, separator, filter, fluid reservoir, wellsite facility is less, and technique is simpler.It is high to mix defeated pressure medium When, using hydraulic compressed machine, have discharge capacity big, the advantages such as low energy consumption, and failure rate is low;But when to mix defeated pressure medium lower for well head When, hydraulic compressor discharge capacity is very low, is unable to satisfy field working conditions demand, if you need to meet discharge capacity demand, then needs to increase equipment ruler It is very little, plant capacity is improved, equipment energy consumption is big, and manufacturing cost is very high, and Project in Operation benefit is low.In addition, being exactly when compressed height When body of calming the anger pushes away the liquid in fluid reservoir, the separator of front end is also working, and the big quantity of fluid that it is generated can not be discharged, if liquid Measure larger, then liquid is easy to diffuse out separator, enters in compressor, damages to compressor.
For this purpose, designer of the invention, in view of drawbacks described above, by concentrating on studies and designing, synthesis is engaged in for many years for a long time The experience and achievement of related industry, researching and designing go out a kind of gas-liquid delivery supercharging device and method with wire mesh demister, with Overcome drawbacks described above.
Summary of the invention
The present invention mainly solves above-mentioned technical problem present in the prior art, provides a kind of with wire mesh demister Gas-liquid delivery supercharging device and method.The device and method is able to achieve gas-liquid delivery, and device integrated level is high, and stability is good, fits Wide with range, manufacturing cost is low, especially suitable for oil gas field gas-liquid delivery and petroleum vapor recovery project, and in-site installation and resettlement side Just.
Above-mentioned technical problem of the invention is mainly to be addressed by following technical proposals:
A kind of gas-liquid delivery supercharging device with wire mesh demister, comprising: washing tank, the medium input of the washing tank It mouthful is input into a mouthful A and is connected with mixing, medium delivery outlet is connected with mixed delivery outlet B;The gas vent of the washing tank is connected with compressor, Gas input port inside the device of the delivery outlet connection washing tank of the compressor.
Optimization, a kind of above-mentioned gas-liquid delivery supercharging device with wire mesh demister, the washing tank includes: first Washing tank (1), the second washing tank (2);Wherein:
First washing tank (1), the second washing tank (2) medium input port be input into a mouthful A with mixed and be connected, medium delivery outlet It is connected with mixed delivery outlet B;
First washing tank (1), the second washing tank (2) gas vent be connected with compressor (4), the compressor (4) gas input port inside the device of delivery outlet connection the first washing tank (1), the second washing tank (2).
Optimization, a kind of above-mentioned gas-liquid delivery supercharging device with wire mesh demister, the gas of the washing tank goes out Mouth is connected by filter (3) with compressor (4).
Optimize, a kind of above-mentioned gas-liquid delivery supercharging device with wire mesh demister, is provided in the washing tank Liquid level sensor.
Optimize, a kind of above-mentioned gas-liquid delivery supercharging device with wire mesh demister, is provided in the washing tank Wire mesh demister.
A kind of gas-liquid delivery boosting method using above-mentioned apparatus, comprising:
Medium is inputted in washing tank and carries out gas-liquid separation, is re-entered into after the gas medium after separation is pressurizeed It is discharged after washing tank with the liquid medium in washing tank.
Optimization, a kind of above-mentioned circulating gas-liquid mixes defeated boosting method, comprising:
By the parallel connection of at least two washing tanks, medium is input to one of washing tank and carries out gas-liquid separation, after separation Gas medium pressurization after be input to after another washing tank and be discharged with the liquid medium in another washing tank;
When detecting that the liquid level in the washing tank for gas-liquid separation is exceeded, by medium input in another washing tank into Row gas-liquid separation, and be discharged being input in the exceeded washing tank of liquid level after the gas medium pressurization after separation with liquid medium.
Optimization, a kind of above-mentioned circulating gas-liquid mixes defeated boosting method, comprising: after being filtered the gas after separation It pressurizes again.
Therefore, the present invention has the advantage that
1. liquid medium is discharged by pressurized high-pressure gas medium using the mixed transportation process of separation, filtering, pressurization Mixed delivery outlet saves the equipment such as fluid reservoir, output pump, and optimization technique reduces failure, reduces energy consumption, reduces manufacturing cost, more Energy conservation and environmental protection;
2. gas-liquid separation part, gas filtration section, gas boosting part are integrated into sled, device integration is high, is convenient for Transport and unified management, save floor occupying area, and shorten the construction period, reducing the construction costs;
3. it is adaptable to match can to mix defeated medium and operating condition according to live different type without particular/special requirement for pair compressor Type of compressor;
4. application range of products is wide, to mixing, defeated medium requirements are low, are particularly suitable for oil gas field gas-liquid delivery and petroleum vapor recovery Project;
5. liang set washing tank parallel operation, gas-liquid separation and gas-liquid discharge individually carry out, it will not generate that liquid level is excessively high or liquid Body medium is difficult to separate, and causes equipment fault to shut down phenomenon, gas-liquid separation effect is more preferable, and equipment safety stability can be obtained more preferably It ensures.
Detailed description of the invention
Attached drawing 1 is a kind of schematic diagram of the invention;
Specific embodiment
Below with reference to the embodiments and with reference to the accompanying drawing the technical solutions of the present invention will be further described.
In figure, the first washing tank 1, the second washing tank 2, filter 3, compressor 4, the first check valve 11, second one-way valve 12, third check valve 13, the 4th check valve 14, the first pneumatic ball valve 21, the second pneumatic ball valve 22, third pneumatic ball valve 23, the Four pneumatic ball valves 24, the first safety valve 31, the second safety valve 32, the first liquid level sensor 41, the second liquid level sensor 42, first Wire mesh demister 51, the second wire mesh demister 52, A is mixed to be input into mouth, and B mixes delivery outlet.
Embodiment:
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other Embodiment shall fall within the protection scope of the present invention.
Referring to Fig. 1, the present embodiment provides a kind of technical solutions: including gas-liquid separation part, gas filtration section, gas Compression portion;Gas-liquid separation part setting is in gas filtration section front end and is connected to and mixed is input into a mouthful A, the gas-liquid separation Part carries out gas-liquid separation to the mixed mouthful medium that is input into, and the gas medium isolated enters gas filtration section, the liquid isolated For media storage in separator, the gas-liquid separation part is connected to mixed delivery outlet B;The gas filtration section is arranged in gas-liquid Separate section rear end, entrance are connected to gas-liquid separation part, are filtered to separated gas medium;The gas boosting Part setting connects gas filtration section, is pressurized to filtered gas medium in gas filtration section rear end, entrance, It exports connection gas-liquid separation part, enters gas-liquid separation part through pressurized high-pressure gas medium, is situated between with the liquid of storage Matter is discharged into mixed delivery outlet B.
Wherein, the gas-liquid separation part includes the first washing tank 1 in parallel, the second washing tank 2, first washing tank The first liquid level sensor 41, the first wire mesh demister 51 are set on 1, and the second safety valve 32, are provided on second washing tank 2 Two liquid level sensors 42, the second wire mesh demister 52;
When first washing tank 1, the second 2 superpressure of washing tank, first safety valve 31, the second safety valve 32 are opened automatically It opens, emptying release is carried out to pipeline, guarantee tank body safety;First liquid level sensor 41, the detection of the second liquid level sensor 42 The liquid level of first washing tank 1,2 memory tank body medium of the second washing tank, when liquid medium level reaches the liquid level of setting When high alarming value, first pneumatic ball valve 21, the second pneumatic ball valve 22, third pneumatic ball valve 23, the 4th pneumatic ball valve are controlled 24 opening and closings, first washing tank 1,2 automatic drain of the second washing tank;First wire mesh demister, 51,52 pairs of gas mediums In the drop that is mingled with separated, reduce gas liquid content.
First washing tank 1,2 parallel operation of the second washing tank, wherein a set of washing tank mixes defeated Jie for low pressure Matter gas-liquid separation, the another set of washing tank mix defeated medium automatic-discharging for high pressure, and operating mode can automatically switch.
It is provided with filter core in the accurate filter 3, the large particle in gas medium is filtered, gas is removed and is situated between Biggish solid impurity in matter ensures rear end equipment safety.
4 structure type of compressor can be hydraulic piston type compressor, be also possible to mechanical piston without particular requirement Formula compressor or other compressor types can be single stage compress or compound compressor.
Specifically, described second is pneumatic in use, first pneumatic ball valve 21, the 4th pneumatic ball valve 24 automatically turn on Ball valve 22, third pneumatic ball valve 23, is automatically closed, and it is unidirectional by described first that the mixed low pressure being input into mouthful A mixes defeated medium Valve 11 enters first washing tank 1 and carries out gas-liquid two-phase separation, and the liquid medium that first washing tank 1 is isolated is stored in Tank base, the gas medium that first washing tank 1 is isolated remove the liquid being mingled with by first wire mesh demister 51 Enter the accurate filter 3 through first pneumatic ball valve 21 after drop, the accurate filter 3 is situated between to gas after separation Large particle is filtered in matter, is removed and is entered the compressor 4 in gas after biggish solid impurity, and the compressor 4 is right Gas medium after separating and filtering is pressurized, and pressurized gas medium passes through described in the 4th pneumatic ball valve 24 entrance Second washing tank 2, the interior liquid medium stored of second washing tank 2 pass through the described 4th unidirectionally with high-pressure gas medium Valve 14 is discharged into mixed delivery outlet B, completes a gas-liquid delivery process;
The first liquid level sensor 41 is provided in first washing tank 1, when the liquid stored in first washing tank 1 When medium reaches setting liquid level high high alarm setting value, first pneumatic ball valve 21, the 4th pneumatic ball valve 24 are automatically closed, described Second pneumatic ball valve 22, third pneumatic ball valve 23 automatically turn on, and the mixed low pressure being input into mouthful A mixes defeated medium described in Third check valve 13 enters second washing tank 2 and carries out gas-liquid two-phase separation, and the liquid that second washing tank 2 is isolated is deposited Storage is mingled in tank base, the gas medium that second washing tank 2 is isolated by second wire mesh demister 52 removing Drop after through the third pneumatic ball valve 23 enter the accurate filter 3, the accurate filter 3 is to gas after separation Large particle is filtered in body medium, is removed and is entered the compressor 4, the compressor in gas after biggish solid impurity 4 pairs of gas mediums after separating and filtering are pressurized, and pressurized gas medium is entered by second pneumatic ball valve 22 First washing tank 1, the interior liquid medium stored of first washing tank 1 pass through described second with high-pressure gas medium Check valve 12 is discharged into mixed delivery outlet B, completes a gas-liquid delivery process;
The second liquid level sensor 42 is provided in second washing tank 2, when the liquid stored in second washing tank 2 When medium reaches setting liquid level high high alarm setting value, second pneumatic ball valve 22, third pneumatic ball valve 23 is automatically closed, institute The first pneumatic ball valve 21, the automatic opening of the 4th pneumatic ball valve 24 are stated, the mixed low pressure being input into mouthful A mixes defeated medium described in Third check valve 13 enters first washing tank 1 and carries out gas-liquid two-phase separation, and by cycle operation described above.
It can be seen that the present invention has the advantages that
1. liquid medium is discharged by pressurized high-pressure gas medium using the mixed transportation process of separation, filtering, pressurization Mixed delivery outlet saves the equipment such as fluid reservoir, output pump, and optimization technique reduces failure, reduces energy consumption, reduces manufacturing cost, more Energy conservation and environmental protection;
2. gas-liquid separation part, gas filtration section, gas boosting part are integrated into sled, device integration is high, is convenient for Transport and unified management, save floor occupying area, and shorten the construction period, reducing the construction costs;
3. pair compressor can mix defeated medium according to live different type to match adaptable compressor without particular/special requirement Type;
4. application range of products is wide, to mixing, defeated medium requirements are low, are particularly suitable for oil gas field gas-liquid delivery and petroleum vapor recovery Project;
5. liang set washing tank parallel operation, gas-liquid separation and gas-liquid discharge individually carry out, it will not generate that liquid level is excessively high or liquid Body medium is difficult to separate, and causes equipment fault to shut down phenomenon, gas-liquid separation effect is more preferable, and equipment safety stability can be obtained more preferably It ensures.
Specific embodiment described herein is only an example for the spirit of the invention.The neck of technology belonging to the present invention The technical staff in domain can make various modifications or additions to the described embodiments or replace by a similar method In generation, however, it does not deviate from the spirit of the invention or beyond the scope of the appended claims.
Although the first washing tank 1 is used more herein, the second washing tank 2, filter 3, compressor 4, first is unidirectional Valve 11, second one-way valve 12, third check valve 13, the 4th check valve 14, the first pneumatic ball valve 21, the second pneumatic ball valve 22, the Three pneumatic ball valves 23, the 4th pneumatic ball valve 24, the first safety valve 31, the second safety valve 32, the first liquid level sensor 41, the second liquid Level sensor 42, the first wire mesh demister 51, the second wire mesh demister 52, A is mixed to be input into mouth, and B mixes the terms such as delivery outlet, but not It rules out the possibility of using other terms.The use of these items is only for be more convenient to describe and explain sheet of the invention Matter;Being construed as any additional limitation is disagreed with spirit of that invention.

Claims (6)

1. a kind of gas-liquid delivery supercharging device with wire mesh demister characterized by comprising washing tank, the washing tank Medium input port be input into a mouthful A with mixed and be connected, medium delivery outlet is connected with mixed delivery outlet B;Inside the device of the washing tank Gas vent is connected with compressor, the gas input port inside the device of the delivery outlet connection washing tank of the compressor;
The washing tank includes: the first washing tank (1), the second washing tank (2);Wherein:
First washing tank (1), the second washing tank (2) medium input port be input into a mouthful A with mixed and be connected, medium delivery outlet with mix Delivery outlet B is connected;
First washing tank (1), the second washing tank (2) gas vent be connected with compressor (4), the compressor (4) Delivery outlet connect the first washing tank (1), the second washing tank (2) device inside gas input port;
Medium is input to one of washing tank and carries out gas-liquid separation, it is another by being input to after the gas medium pressurization after separation It is discharged after washing tank with the liquid medium in another washing tank.
When detecting that the liquid level in the washing tank for gas-liquid separation is exceeded, medium is inputted and carries out gas in another washing tank Liquid separation, and be discharged being input in the exceeded washing tank of liquid level after the gas medium pressurization after separation with liquid medium;It is described The first liquid level sensor (41), the first wire mesh demister (51) are set on first washing tank (1), are set on second washing tank (2) It is equipped with the second safety valve (32), the second liquid level sensor (42), the second wire mesh demister (52).
2. a kind of gas-liquid delivery supercharging device with wire mesh demister according to claim 1, which is characterized in that described The gas vent of washing tank is connected by filter (3) with compressor (4).
3. a kind of gas-liquid delivery supercharging device with wire mesh demister according to claim 4, which is characterized in that described Liquid level sensor is provided in washing tank.
4. a kind of gas-liquid delivery supercharging device with wire mesh demister according to claim 1, which is characterized in that described Wire mesh demister is provided in washing tank.
5. a kind of carry out the method that circulating gas-liquid mixes defeated pressurization using claim 1 described device characterized by comprising
By the parallel connection of at least two washing tanks, medium is input to one of washing tank and carries out gas-liquid separation, by the gas after separation It is discharged after being input to another washing tank after the pressurization of body medium with the liquid medium in another washing tank;
When detecting that the liquid level in the washing tank for gas-liquid separation is exceeded, medium is inputted and carries out gas in another washing tank Liquid separation, and be discharged being input in the exceeded washing tank of liquid level after the gas medium pressurization after separation with liquid medium.
6. a kind of circulating gas-liquid according to claim 1 mixes defeated boosting method, which is characterized in that by the gas after separation It pressurizes again after being filtered.
CN201811323807.3A 2016-10-08 2016-10-08 Gas-liquid mixed transportation supercharging device with wire mesh demister and method Active CN109488882B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113550730A (en) * 2021-09-18 2021-10-26 胜利油田胜机石油装备有限公司 Multiphase metering mixed transportation method and multiphase metering mixed transportation system
CN116518303A (en) * 2023-05-12 2023-08-01 延安众邦源实业有限公司 Gas-dominant multiphase supercharging device and method

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109812701B (en) * 2019-03-25 2024-01-23 智马(北京)油气设备有限公司 Compression device for realizing gas-liquid mixed transportation system and gas-liquid mixed transportation method

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5290151A (en) * 1988-10-28 1994-03-01 Snamprogetti S.P.A. Process for pumping a multi-phase gas-liquid mixture by means of the use of a pump
CN1417515A (en) * 2002-11-14 2003-05-14 姚瑞忠 Oil Well gas-liquid mixed conveyor
CN102226499A (en) * 2011-03-31 2011-10-26 中国海洋石油总公司 Simulated deepwater oil-gas-water mixed transportation experimental device
CN202376885U (en) * 2012-04-27 2012-08-15 沈阳鼓风机集团压力容器有限公司 Gas-liquid mixing medium separator
CN104295269A (en) * 2013-07-19 2015-01-21 中国石油天然气股份有限公司 Integrated well group pressurization integrated device
CN104771938A (en) * 2015-04-22 2015-07-15 武汉齐达康能源装备有限公司 Gas-liquid mixed transportation supercharging system
CN105864638A (en) * 2016-05-26 2016-08-17 成都正升能源技术开发有限公司 Compressor set capable of achieving gas-liquid mixed delivery function

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6164308A (en) * 1998-08-28 2000-12-26 Butler; Bryan V. System and method for handling multiphase flow
EP1409834A2 (en) * 2000-01-17 2004-04-21 Lattice Intellectual Property Limited Slugging control
GB2479330B8 (en) * 2009-01-08 2013-12-04 Aker Subsea As A device for liquid treatment when compressing a well flow
CN104500362B (en) * 2014-09-15 2016-08-24 成都烃源科技有限责任公司 The technique of well station, a kind of gas field pressurizing mixed transportation and device
CN105854420A (en) * 2016-05-26 2016-08-17 成都正升能源技术开发有限公司 Separator capable of achieving gas-liquid mixed delivery function

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5290151A (en) * 1988-10-28 1994-03-01 Snamprogetti S.P.A. Process for pumping a multi-phase gas-liquid mixture by means of the use of a pump
CN1417515A (en) * 2002-11-14 2003-05-14 姚瑞忠 Oil Well gas-liquid mixed conveyor
CN102226499A (en) * 2011-03-31 2011-10-26 中国海洋石油总公司 Simulated deepwater oil-gas-water mixed transportation experimental device
CN202376885U (en) * 2012-04-27 2012-08-15 沈阳鼓风机集团压力容器有限公司 Gas-liquid mixing medium separator
CN104295269A (en) * 2013-07-19 2015-01-21 中国石油天然气股份有限公司 Integrated well group pressurization integrated device
CN104771938A (en) * 2015-04-22 2015-07-15 武汉齐达康能源装备有限公司 Gas-liquid mixed transportation supercharging system
CN105864638A (en) * 2016-05-26 2016-08-17 成都正升能源技术开发有限公司 Compressor set capable of achieving gas-liquid mixed delivery function

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113550730A (en) * 2021-09-18 2021-10-26 胜利油田胜机石油装备有限公司 Multiphase metering mixed transportation method and multiphase metering mixed transportation system
CN113550730B (en) * 2021-09-18 2021-12-17 胜利油田胜机石油装备有限公司 Multiphase metering mixed transportation system and multiphase metering mixed transportation method
CN116518303A (en) * 2023-05-12 2023-08-01 延安众邦源实业有限公司 Gas-dominant multiphase supercharging device and method
CN116518303B (en) * 2023-05-12 2024-06-07 延安众邦源实业有限公司 Gas-dominant multiphase supercharging device and method

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