CN1451903A - Ordinary-temp. crude gathering method - Google Patents

Ordinary-temp. crude gathering method Download PDF

Info

Publication number
CN1451903A
CN1451903A CN 02109485 CN02109485A CN1451903A CN 1451903 A CN1451903 A CN 1451903A CN 02109485 CN02109485 CN 02109485 CN 02109485 A CN02109485 A CN 02109485A CN 1451903 A CN1451903 A CN 1451903A
Authority
CN
China
Prior art keywords
improving agent
flow improving
oil
crude oil
emulsion
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.)
Granted
Application number
CN 02109485
Other languages
Chinese (zh)
Other versions
CN1220841C (en
Inventor
王德民
卢怀宝
程杰成
宋承毅
吴迪
吴长利
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Daqing Oilfield Co Ltd
Original Assignee
Daqing Oilfield Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Daqing Oilfield Co Ltd filed Critical Daqing Oilfield Co Ltd
Priority to CN 02109485 priority Critical patent/CN1220841C/en
Publication of CN1451903A publication Critical patent/CN1451903A/en
Application granted granted Critical
Publication of CN1220841C publication Critical patent/CN1220841C/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Landscapes

  • Production Of Liquid Hydrocarbon Mixture For Refining Petroleum (AREA)

Abstract

An improved ordinary-temp gathering method for crude is characterized by that the block copolymer of epoxy ethane and epoxy propane, which is used as flow improver, is proportionally added to the recovered liquid to form a oil-in-water pseudo-emulsion. Its advantages are low flow resistance, not adhering on pipe surface, easy oil-water separation by natural gravity, and saving energy by 30-80%.

Description

Crude oil normal temperature collecting and transporting method
Technical field: the present invention relates to the improvement of crude oil collecting and transporting method.
Background technique: at present the defeated temperature of the collection of oil field oil-gas-aqueous mixtures will be higher than the temperature spots of separating out of the setting temperature point of crude oil or its content of wax usually, so that make the collection of mixture fail that liquid is in flowing state in the process.But when the crude oil of the defeated high-solidification point of collection or the crude oil of high wax precipitation temperature, just must make it keep higher temperature the mixture heating, do not solidify and do not analyse the problem of wax though solved crude oil like this, consumed a large amount of energy, the shortcoming that causes the defeated cost of collection to increase.
Summary of the invention: the purpose of this invention is to provide a kind of crude oil normal temperature collecting and transporting method, the method is under the high condition of the solidifying point that is lower than crude oil or viscosity, will the blends of crudes heating just its collection can not failed, reduced crude oil defeated integrated.The present invention is that in the following order several steps carries out: 1, at first add flow improving agent in extraction liquid, wherein flow improving agent is polyethers ethylene oxide and propylene oxide embedding shape copolymer, wherein ethylene oxide accounts for the 30%-70% of this flow improving agent, and propylene oxide accounts for the 30%-70% of this flow improving agent.It is relevant with the character of underground crude oil that flow improving agent accounts for the ratio of extraction liquid.The amount that adds flow improving agent is only considered the pure former oil mass that collects defeated, does not consider the water yield that collects defeated, and the concentration that adds flow improving agent is 10/1000000ths to 200/1000000ths of crude oil.Make extraction liquid form the oil-in-water type pseudo-emulsion moisture under greater than 35% to 40% situation, so that the sticking tube wall of carrying the mixed solution pipeline of the oil in this pseudo-emulsion, flow resistance is low, and when static by being easy to generate oil-water separation from Beijing South Maxpower Technology Co. Ltd; 2, secondly extraction liquid is not heated, and is being lower than under the setting temperature point of crude oil, contains the profit pseudo-emulsion of flow improving agent to metering room from the production wellhead collection is defeated; 3, again the profit pseudo-emulsion that contains flow improving agent is transported to petroleum transferring station from metering room, arrives multi-purpose station again; 4, at last in the multi-purpose station dehydration, under the natural gravity effect, need not add demulsifier through 15 minutes to 3 hours, profit is with regard to each self-separation output.The present invention compared with prior art has the following advantages: just can realize that under the situation that extraction liquid is not heated collection is defeated, and not glue the tube wall of transfer line, flow resistance is also little, need not add demulsifier behind the multi-purpose station to lean on natural gravity just can realize oil-water separation.It and the extraction liquid of heating collect defeated method ratio and can on average save oil, gas, electric equal energy source 30% to 80%; Save demulsifier, reduce construction sequence; Reduce the defeated expense of collection, improved the economic benefit of gathering and transportation technology greatly.
Description of drawings: Fig. 1 is the schematic diagram of collecting and transporting method of the present invention.
Embodiment one: from the water mixing pipeline of metering room by the concentration of 10 to 100 mg/litre, 50 mg/litre preferably, quantitatively the wellhead flowline to the A oil well adds flow improving agent.Wherein ethylene oxide accounts for 40%, and propylene oxide accounts for 60%.The daily fluid production rate of A oil well is 82 tons, and is moisture 79.6%, 16.73 tons of day produce oils, 0.855 ton/m of crude oil ground severe 3, 29 ℃ of former oil freezing points, 38 ℃ of crude oil wax precipitation temperature points.Therefore the flow improving agent amount of mixing every day to the A oil well is:
16.73 0.855 ton/m of ton per day ÷ 3* 1000 liters/m 3* (10 to 100) mg/litre ÷ 10 6Milligram/kilogram=0.196 is to 1.96 kilograms (preferably 0.98 kilograms)
Add that the water mixing temperature of A well is 33 ℃ behind the flow improving agent; The well head returning-oil temperature is 25 ℃, and return pressure is 0.79MPa; The temperature of metering room is 23 ℃, is lower than the solidifying point of crude oil; Behind metering room, the liquid of A well mixes with the liquid that enters other 11 mouthfuls of wells of metering room and is transported to petroleum transferring station, is 31 ℃ by metering room to the delivery temperature of petroleum transferring station, is lower than the wax precipitation temperature point of crude oil, discharge pressure 0.39MPa; At petroleum transferring station, mix with the liquid of other 7 metering rooms that enter petroleum transferring station and be transported to multi-purpose station with centrifugal pump, be 33 ℃ by petroleum transferring station to the delivery temperature of multi-purpose station, be lower than the wax precipitation temperature point of crude oil, discharge pressure 0.36MPa; Do not add any demulsifier behind the multi-purpose station and carry out the profit gravity separation, the Water in oil 8.3% after the separation, oil-containing 151 mg/litre in the water.The ton oil consumption rock gas 6.3m of this mouthful well overall process after adding flow improving agent 3, oil ratio per ton does not add flow improving agent and saves rock gas 6.5m 3The pumping unit of A well quit work 2 hours 30 minutes because of power failure, and after restarting, the well head return pressure rises to 1.53MPa by 0.82MPa, after 3 hours pressure drop to 0.83MPa.
Embodiment two: from the water mixing pipeline of metering room by the concentration of 100 to 200 mg/litre, 150 mg/litre preferably, quantitatively the wellhead flowline to the B oil well adds flow improving agent.Wherein ethylene oxide accounts for 45%, and propylene oxide accounts for 55%.The daily fluid production rate of B oil well is 68 tons, and is moisture 82.0%, 12.24 tons of day produce oils, 0.855 ton/m of crude oil ground severe 3, 28 ℃ of former oil freezing points, 37 ℃ of the wax precipitation temperature points of crude oil.Therefore the flow improving agent amount of mixing to B oil well every day is:
12.24 0.855 ton/m of ton per day ÷ 3* 1000 liters/m 3* (100 to 200) mg/litre ÷ 10 6Milligram/kilogram=1.43 are to 2.86 kilograms (preferably 2.15 kilograms)
Add that the water mixing temperature of B well is 34 ℃ behind the flow improving agent; The well head returning-oil temperature is 26 ℃, and return pressure is 0.65MPa; The temperature of metering room is 26 ℃, is lower than the solidifying point of crude oil; Behind metering room, the liquid of B well mixes with the liquid that enters other 15 mouthfuls of wells of metering room and is transported to petroleum transferring station, is 32.5 ℃ by metering room to the delivery temperature of petroleum transferring station, is lower than the wax precipitation temperature point of crude oil, discharge pressure 0.34MPa; At petroleum transferring station, mix with the liquid of other 8 metering rooms that enter petroleum transferring station and be transported to multi-purpose station with centrifugal pump, be 34 ℃ by petroleum transferring station to the delivery temperature of multi-purpose station, be lower than the wax precipitation temperature point of crude oil, discharge pressure 0.35MPa; Do not add any demulsifier behind the multi-purpose station and carry out the profit gravity separation, the Water in oil 6.1% after the separation, oil-containing 139 mg/litre in the water.The ton oil consumption rock gas 7.1m of this mouthful well overall process after adding flow improving agent 3, oil ratio per ton does not add flow improving agent and saves rock gas 9.4m 3The pumping unit of B well quit work 3 hours because of power failure, and after restarting, the well head return pressure rises to 1.61MPa by 0.70MPa, and pressure drops to 0.69MPa after 2 hours 45 minutes.

Claims (2)

1, crude oil normal temperature collecting and transporting method, it is characterized in that at first in extraction liquid, adding flow improving agent, wherein flow improving agent is polyethers ethylene oxide and propylene oxide embedding shape copolymer, wherein ethylene oxide accounts for the 30%-70% of this flow improving agent, propylene oxide accounts for the 30%-70% of this flow improving agent, the amount that adds flow improving agent is only considered the pure former oil mass that collects defeated, do not consider the water yield that collects defeated, the concentration that adds flow improving agent is 10/1000000ths to 200/1000000ths of crude oil, make extraction liquid form the oil-in-water type pseudo-emulsion under greater than 35% to 40% situation moisture, when static by being easy to generate oil-water separation from Beijing South Maxpower Technology Co. Ltd.
2, crude oil normal temperature collecting and transporting method according to claim 1 is characterized in that extraction liquid do not heat, and is being lower than under the setting temperature point of crude oil, contains the profit pseudo-emulsion of flow improving agent to metering room from the production wellhead collection is defeated; Again the profit pseudo-emulsion that contains flow improving agent is transported to terminal from metering room, arrives multi-purpose station again; In the multi-purpose station dehydration, under the natural gravity effect, need not add demulsifier through 15 minutes to 3 hours at last, profit is with regard to each self-separation output.
CN 02109485 2002-04-13 2002-04-13 Ordinary-temp. crude gathering method Expired - Lifetime CN1220841C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 02109485 CN1220841C (en) 2002-04-13 2002-04-13 Ordinary-temp. crude gathering method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 02109485 CN1220841C (en) 2002-04-13 2002-04-13 Ordinary-temp. crude gathering method

Publications (2)

Publication Number Publication Date
CN1451903A true CN1451903A (en) 2003-10-29
CN1220841C CN1220841C (en) 2005-09-28

Family

ID=29220816

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 02109485 Expired - Lifetime CN1220841C (en) 2002-04-13 2002-04-13 Ordinary-temp. crude gathering method

Country Status (1)

Country Link
CN (1) CN1220841C (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104534279A (en) * 2014-12-22 2015-04-22 山东东明石化集团有限公司 Method for conveying 380# fuel oil at normal temperature through long-distance pipeline
CN106764429A (en) * 2016-12-27 2017-05-31 鲍云波 The continuous closed gathering system of individual well branch line ring-type ground crude oil and the continuous closed gathering method of crude oil
CN107939346A (en) * 2017-12-20 2018-04-20 申娟 One kind is based on the defeated integrated technique of technology of Internet of things heavy oil production collection
CN109762537A (en) * 2019-02-27 2019-05-17 郑州智锦电子科技有限公司 A kind of preparation method of environment universality Multi-effect oilfield additive
CN114992520A (en) * 2022-05-31 2022-09-02 深圳市佳运通电子有限公司 Control method of water-blending heat tracing system in unattended mode of oil transfer station

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104534279A (en) * 2014-12-22 2015-04-22 山东东明石化集团有限公司 Method for conveying 380# fuel oil at normal temperature through long-distance pipeline
CN104534279B (en) * 2014-12-22 2015-12-30 山东东明石化集团有限公司 A kind of method of long-distance pipe normal temperature conveying 380# fuel oil
CN106764429A (en) * 2016-12-27 2017-05-31 鲍云波 The continuous closed gathering system of individual well branch line ring-type ground crude oil and the continuous closed gathering method of crude oil
CN107939346A (en) * 2017-12-20 2018-04-20 申娟 One kind is based on the defeated integrated technique of technology of Internet of things heavy oil production collection
CN109762537A (en) * 2019-02-27 2019-05-17 郑州智锦电子科技有限公司 A kind of preparation method of environment universality Multi-effect oilfield additive
CN114992520A (en) * 2022-05-31 2022-09-02 深圳市佳运通电子有限公司 Control method of water-blending heat tracing system in unattended mode of oil transfer station
CN114992520B (en) * 2022-05-31 2024-01-30 深圳市佳运通电子有限公司 Control method of water-doped heat tracing system of oil transfer station in unattended mode

Also Published As

Publication number Publication date
CN1220841C (en) 2005-09-28

Similar Documents

Publication Publication Date Title
CN103244095A (en) Supercritical carbon dioxide fracturing method and supercritical carbon dioxide fracturing system
US20150267523A1 (en) Systems and Methods for Producing Formation Fluids
CN209483309U (en) Airlift unit
CN1220841C (en) Ordinary-temp. crude gathering method
CN104649471B (en) A kind of fracturing outlet liquid processes recycling flow process
CN203244925U (en) Oil gas mixing device and remote-monitoring oil field and oil gas mixing transportation unit
CN201381836Y (en) Oilfield multiwell short-distance cascading oil collecting device
CN202109210U (en) Device for utilizing produced liquid of high water cut oil-producing wells to reduce gather and delivery resistance of low water cut oil-producing wells
CN2851810Y (en) Big ring like mixing and gathering transportation system
CN109751017A (en) Development system is adopted in a kind of more wells conjunctions of gas hydrates
CN201218093Y (en) Thick oil borehole viscosity-reduction oil-extraction heating apparatus
CN108659809B (en) Preparation method of concentrated solution based on continuous fracturing
CN110630309A (en) Compressed air energy storage and ventilation system for fracturing cluster well for coal mine
CN108386175A (en) A kind of super-viscous oil natural gas injection and the compound viscosity reducing process of thin oil
CN207778022U (en) A kind of high gas-oil ratio (HGOR) block oil-gas transportation device
CN102562014B (en) High solidifying point crude oil exploiting device and high solidifying point crude oil exploiting method
CN113803035A (en) Oil well water-mixing oil-collecting system
CN106764429A (en) The continuous closed gathering system of individual well branch line ring-type ground crude oil and the continuous closed gathering method of crude oil
CN202946927U (en) Gas-lifting normal-temperature gathering and transportation system for high-solidification-point crude oil
CN204252976U (en) A kind of two gas commingled producing well lower tubular column systems
CN205782015U (en) A kind of double-screw mixing transmission pump return-flow system
CN205477574U (en) Supplementary sanding gear of N2 pulsation
CN110630310A (en) Fracturing double-horizontal-well compressed air energy storage ventilation system for coal mine well
CN205577015U (en) Motor -pumped well pressurizing equipment
CN114686200B (en) Dry-method and acidification integrated double-thickening fracturing method, fracturing fluid and preparation method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20050928