CN103867166A - Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement - Google Patents

Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement Download PDF

Info

Publication number
CN103867166A
CN103867166A CN201410128288.0A CN201410128288A CN103867166A CN 103867166 A CN103867166 A CN 103867166A CN 201410128288 A CN201410128288 A CN 201410128288A CN 103867166 A CN103867166 A CN 103867166A
Authority
CN
China
Prior art keywords
carbon dioxide
supercritical carbon
piston
cylinder sleeve
jet
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
CN201410128288.0A
Other languages
Chinese (zh)
Other versions
CN103867166B (en
Inventor
倪红坚
李木坤
王瑞和
霍洪俊
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.)
China University of Petroleum East China
Original Assignee
China University of Petroleum East China
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 China University of Petroleum East China filed Critical China University of Petroleum East China
Priority to CN201410128288.0A priority Critical patent/CN103867166B/en
Publication of CN103867166A publication Critical patent/CN103867166A/en
Application granted granted Critical
Publication of CN103867166B publication Critical patent/CN103867166B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Physical Or Chemical Processes And Apparatus (AREA)

Abstract

The invention belongs to the technical field of oil-gas well yield increase equipment and relates to a device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement. An oil pipe is sleeved with a casing pipe, a packer is arranged between the casing pipe and the oil pipe, and an exploder is arranged in the oil pipe and connected with the oil pipe; a piston is arranged below the exploder and the portion between the piston and the exploder is filled with propellant; a cylinder sleeve is arranged at the lower end of the piston and the piston moves downwards in the cylinder sleeve; a flow guide connector is arranged on the lower portion of the cylinder sleeve; a nozzle is arranged on the flow guide connector and a rupture disk or an elastic body is arranged on the outlet portion of the nozzle; after the propellant is ignited by the exploder, energy is generated, so that the piston is pushed to compress supercritical carbon dioxide, short-time supercritical carbon dioxide jet flow waves generated through breakage of the rupture disk or popup of the elastic body enable rock to crack initially, and cracks are expanded through the pressure of short-time supercritical carbon dioxide jet flow with the low viscosity of the supercritical carbon dioxide. According to the device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement, the structure is simple, operation is convenient, raw materials are easy to obtain, cost is low, the energy use rate is high, and the device and method are environmentally friendly.

Description

A kind of supercritical CO 2 high pressure jet de-plugging anatonosis device and method
Technical field:
The invention belongs to well production increment equipment technical field, relate to a kind of equipment and technique, particularly a kind of supercritical CO 2 high pressure jet de-plugging anatonosis device and method that realizes the de-plugging of Oil/gas Well near wellbore formation, anatonosis in once constructing.
Background technology:
In oil-gas mining, Oil/gas Well near wellbore formation fluid course is very easily stopped up, earial drainage area is little, near wellbore formation permeability becomes a key factor that affects the rate of oil and gas recovery, particularly for the old Oil/gas Well that is subject to various organic depositions and inorganic scale obstruction after being subject to the Oil/gas Well of mud contamination after completion and exploiting for a long time, its near wellbore formation permeability is low, cause the rate of oil and gas recovery to decline, at present, conventionally adopt waterpower acid fracturing to make seam anatonosis, but fracturing cost is high, little millions of, at most several ten million, and the compact sandstone gas to water-sensitive formation and shale gas well, anatonosis effect is also not obvious, if adopt non-aqueous fracturing fluid, such as the carbon dioxide of liquid state or foam, although the anatonosis effect having had, but device therefor complexity, raw material costliness, cost is high, in addition, adopt above-mentioned pressure break mode, high and the fragile oil pipe of hard formation initial cracking pressure and sleeve pipe, be not suitable for the mountain area that large truck enters, desert and swampy area.For above-mentioned shortcoming, there is high enegry gas fracturing and synergistic perforating technology that cost is relatively low, but do not applied so far, high energy gas hypertonia easy damaged sleeve pipe, the too low fracturing stratum that is difficult for; The burning of propellant is subject to temperature, pressure influence, pressure is difficult to prediction, and also someone proposes strong reductant to bring stratum into by jet, produces acetylene or hydrogen, and then be pressed into air produce blast come fracturing stratum, the method exist three problems: the one, strong reductant somewhat expensive; The 2nd, affected by stratum water content, the reaction speed of acetylene or hydrogen is difficult to control, and the air being pressed into easily easily carries acetylene or hydrogen toward depths, stratum reaching before explosion limit, can not produce blast crack initiation effect; The 3rd, to the extremely low stratum of moisture content and gas-bearing formation, such as dunn bass gas reservoir, the method is not only difficult to realize, and the air being pressed into easily reacts with natural gas, causes the well accident of exploding.
Summary of the invention:
The object of the invention is to overcome the shortcoming that prior art exists, seek design a kind of supercritical CO 2 high pressure jet de-plugging anatonosis device and method is provided, this apparatus structure is simple, and cost is low, and method is easy to realize, and can effectively increase near wellbore formation permeability.
The agent structure of the supercritical CO 2 high pressure jet de-plugging anatonosis device the present invention relates to achieve these goals, comprises oil pipe, sleeve pipe, packer, initiator, propellant, piston, cylinder sleeve, flow guiding connector and nozzle; Casing pipe sleeve forms upper lower channel built in the outside of oil pipe, in the upper lower channel between sleeve pipe and oil pipe, is evenly provided with packer, and the number of packer is set according to actual needs; Initiator is arranged in oil pipe, and is connected with oil pipe, and initiator adopts commercially available wireless or wired initiator; Initiator below is provided with piston, in the cavity forming, is filled with propellant between piston and initiator; Piston lower end is shaped with the cylinder sleeve that is full of supercritical carbon dioxide, and piston moves downward in cylinder sleeve; Cylinder sleeve bottom is provided with flow guiding connector, and flow guiding connector is shunted and leads the supercritical carbon dioxide in cylinder sleeve; In the middle of flow guiding connector, be uniformly distributed from top to bottom and be shaped with 1~10 nozzle, the exit of nozzle is shaped with rupture disk or elastic body.
The concrete steps that the present invention realizes supercritical CO 2 high pressure jet de-plugging anatonosis are:
(1), initiator ignites propellant, the energy that propellant combustion produces promotes the supercritical carbon dioxide in piston compression cylinder sleeve, the compression energy that the power conversion that propellant combustion is produced is carbon dioxide, realizes the gathering of energy;
(2), in the time that in cylinder sleeve, supercritical carbon dioxide pressure reaches 10~200MPa, the rupture disk fragmentation of nozzle exit or elastic body eject and form short time supercritical carbon dioxide jet, the shock wave of short time supercritical carbon dioxide jet makes rock in millisecond, produce incipient crack, and the low viscosity of supercritical carbon dioxide makes short time supercritical carbon dioxide jet pressure bamboo telegraph and vee crack in crack;
(3), after short time supercritical carbon dioxide jet jet finishes, packer maintains the high fluid pressure of 3~48 hours, make low viscous supercritical carbon dioxide in stratum, continue infiltrate and retain, and the formation fracture of expansion after short time supercritical carbon dioxide jet sprays, produce physical chemistry de-plugging, anatonosis effect;
(4), after removing seal for packer, strata pressure is higher than Oil/gas Well wellbore pressure, high-density CO 2 can backflow from stratum, carries out organic obstruction material and the inorganic obstruction material of near wellbore formation carbon dioxide solubility.
Operating principle of the present invention is: the one, under the deep-well of carbon dioxide more than 1000m, exist with supercriticality, and there is very high compressibilty, its density is 200-1200kg/m3, can store a large amount of elasticity energy, forms short time jet; The 2nd, water jet surge is static pressure 70%, and supercritical carbon dioxide jet rock breaking efficiency is 3.3 times of water jet, and therefore supercritical carbon dioxide jet has lower initial cracking pressure, can produce equal extent crack; The 3rd, supercritical carbon dioxide has the density near with water, can produce the impact force larger than other gas, and simultaneously supercritical carbon dioxide has the viscosity close with gas, and jet pressure can bamboo telegraph in hole and crack; The 4th, supercritical carbon dioxide can extract moisture in the clay of stratum and make clay shrink, increase degree of porosity, surface tension is low, easily with organic macromolecule is miscible and softening, decompose organic deposition, can be under water exists react generation solubility carbonic acid hydrogen salt with the inorganic scale such as insoluble carbonate.
The present invention compared with prior art, it is simple in structure, easy to operate, and raw material is easy to get, cost is low, capacity usage ratio is high, and environmental friendliness completes perforation, pressure break and carbon dioxide scale removal row dirt simultaneously, all can use in the area such as remote mountain areas, desert, both realized well production increment anatonosis, realized again energy-saving and emission-reduction, and avoided hypertonia and damage sleeve pipe.
Brief description of the drawings:
Fig. 1 is the agent structure schematic diagram of the supercritical CO 2 high pressure jet de-plugging anatonosis device that the present invention relates to.
Detailed description of the invention:
Also be described further by reference to the accompanying drawings below by embodiment.
Embodiment:
The agent structure of the supercritical CO 2 high pressure jet de-plugging anatonosis device that the present embodiment relates to comprises oil pipe 1, sleeve pipe 2, packer 3, initiator 4, propellant 5, piston 6, cylinder sleeve 7, flow guiding connector 8 and nozzle 9; Sleeve pipe 2 overlaps built in the outside of oil pipe 1 and forms upper lower channel, in the upper lower channel between sleeve pipe 2 and oil pipe 1, is evenly provided with packer 3, and the number of packer 3 is set according to actual needs; Initiator 4 is arranged in oil pipe 1, and is connected with oil pipe 1, and initiator 4 adopts commercially available wireless or wired initiator; Initiator 4 belows are provided with piston 6, in the cavity forming, are filled with propellant 5 between piston 6 and initiator 4; Piston 6 lower ends are shaped with the cylinder sleeve 7 that is full of supercritical carbon dioxide, and piston 6 moves downward in cylinder sleeve 7; Cylinder sleeve 7 bottoms are provided with flow guiding connector 8, and flow guiding connector 8 is shunted and leads the supercritical carbon dioxide in cylinder sleeve 7; In the middle of flow guiding connector 8, be uniformly distributed from top to bottom and be shaped with 1~10 nozzle 9, the exit of nozzle 9 is shaped with rupture disk or elastic body.
The concrete steps that the present embodiment is realized supercritical CO 2 high pressure jet de-plugging anatonosis are:
(1), initiator 4 ignites propellant 5, the energy that propellant 5 burnings produce promotes piston 6 and compresses the supercritical carbon dioxide in cylinder sleeve 7, by propellant 5 compression energy that the power conversion that produces is carbon dioxide that burns, realizes the gathering of energy;
(2), in the time that the interior supercritical carbon dioxide pressure of cylinder sleeve 7 reaches 10~200MPa, the rupture disk fragmentation in nozzle 9 exits or elastic body eject and form short time supercritical carbon dioxide jet, the shock wave of short time supercritical carbon dioxide jet makes rock in millisecond, produce incipient crack, and the low viscosity of supercritical carbon dioxide makes short time supercritical carbon dioxide jet pressure bamboo telegraph and vee crack in crack;
(3), after short time supercritical carbon dioxide jet jet finishes, packer 3 maintains the high fluid pressure of 3~48 hours, make low viscous supercritical carbon dioxide in stratum, continue infiltrate and retain, the formation fracture of expansion after short time supercritical carbon dioxide jet sprays, and produce physical chemistry de-plugging, anatonosis effect;
(4), packer 3 solutions are honored as a queen, strata pressure is higher than Oil/gas Well wellbore pressure, high-density CO 2 can backflow from stratum, carries out organic obstruction material and the inorganic obstruction material of near wellbore formation carbon dioxide solubility.

Claims (2)

1. a supercritical CO 2 high pressure jet de-plugging anatonosis device, is characterized in that agent structure comprises oil pipe, sleeve pipe, packer, initiator, propellant, piston, cylinder sleeve, flow guiding connector and nozzle; Casing pipe sleeve forms upper lower channel built in the outside of oil pipe, in the upper lower channel between sleeve pipe and oil pipe, is evenly provided with packer, and the number of packer is set according to actual needs; Initiator is arranged in oil pipe, and is connected with oil pipe, and initiator adopts commercially available wireless or wired initiator; Initiator below is provided with piston, in the cavity forming, is filled with propellant between piston and initiator; Piston lower end is shaped with the cylinder sleeve that is full of supercritical carbon dioxide, and piston moves downward in cylinder sleeve; Cylinder sleeve bottom is provided with flow guiding connector, and flow guiding connector is shunted and leads the supercritical carbon dioxide in cylinder sleeve; In the middle of on flow guiding connector, be uniformly distributed from top to bottom and be shaped with 1~10 nozzle, the exit of nozzle is shaped with rupture disk or elastic body.
Employing as claimed in claim 1 device realize the method for supercritical CO 2 high pressure jet de-plugging anatonosis, it is characterized in that concrete steps are:
(1), initiator ignites propellant, the energy that propellant combustion produces promotes the supercritical carbon dioxide in piston compression cylinder sleeve, the compression energy that the power conversion that propellant combustion is produced is carbon dioxide, realizes the gathering of energy;
(2), in the time that in cylinder sleeve, supercritical carbon dioxide pressure reaches 10~200MPa, the rupture disk fragmentation of nozzle exit or elastic body eject and form short time supercritical carbon dioxide jet, the shock wave of short time supercritical carbon dioxide jet makes rock in millisecond, produce incipient crack, and the low viscosity of supercritical carbon dioxide makes short time supercritical carbon dioxide jet pressure bamboo telegraph and vee crack in crack;
(3), after short time supercritical carbon dioxide jet jet finishes, packer maintains the high fluid pressure of 3~48 hours, make low viscous supercritical carbon dioxide in stratum, continue infiltrate and retain, and the formation fracture of expansion after short time supercritical carbon dioxide jet sprays, produce physical chemistry de-plugging, anatonosis effect;
(4), after removing seal for packer, strata pressure is higher than Oil/gas Well wellbore pressure, high-density CO 2 can backflow from stratum, carries out organic obstruction material and the inorganic obstruction material of near wellbore formation carbon dioxide solubility.
CN201410128288.0A 2014-04-01 2014-04-01 Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement Expired - Fee Related CN103867166B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410128288.0A CN103867166B (en) 2014-04-01 2014-04-01 Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410128288.0A CN103867166B (en) 2014-04-01 2014-04-01 Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement

Publications (2)

Publication Number Publication Date
CN103867166A true CN103867166A (en) 2014-06-18
CN103867166B CN103867166B (en) 2015-03-11

Family

ID=50906130

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410128288.0A Expired - Fee Related CN103867166B (en) 2014-04-01 2014-04-01 Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement

Country Status (1)

Country Link
CN (1) CN103867166B (en)

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104806219A (en) * 2015-04-13 2015-07-29 中国石油大学(华东) Oil and gas reservoir increased permeation and blocking removal device and increased permeation and blocking removal method thereof
CN105221129A (en) * 2015-11-13 2016-01-06 重庆大学 A kind of hydraulic pressure demolition opens and splits-CO 2take the reservoir anti-reflection method of proppant pressure break
CN105422091A (en) * 2015-09-02 2016-03-23 煤科集团沈阳研究院有限公司 Carbon dioxide phase change device for breaking large-lump coal or gangue of underground coal mine and breaking method
CN106437633A (en) * 2016-11-29 2017-02-22 武汉大学 Shale gas mining device and method with combination of lasers and water jet technologies
CN107120087A (en) * 2017-04-14 2017-09-01 太原理工大学 A kind of coal seam supercritical carbon dioxide plugging device and method
CN109025936A (en) * 2018-06-22 2018-12-18 中国矿业大学 Underground coal mine burning shock wave fracturing coal body strengthens gas pumping method and equipment
CN109025937A (en) * 2018-06-22 2018-12-18 中国矿业大学 Hydraulic slotted liner technique combines fracturing coal gas pumping method with multistage combustion shock wave
CN109025938A (en) * 2018-06-22 2018-12-18 中国矿业大学 A kind of underground coal mine multistage combustion shock wave fracturing coal body reinforcing gas pumping method
CN109026128A (en) * 2018-06-22 2018-12-18 中国矿业大学 Multistage combustion shock wave fracturing coal body and heat injection alternation strengthen gas pumping method
CN111734376A (en) * 2020-06-05 2020-10-02 西安科技大学 Downhole high pressure liquid CO2Fracturing permeability-increasing coal rock complete equipment design method
CN111819339A (en) * 2018-03-07 2020-10-23 沙特***石油公司 Removing scale from a wellbore
CN112924269A (en) * 2021-01-11 2021-06-08 国家管网集团西部管道有限责任公司 Method and test device for simulating third-party damage to large-caliber high-pressure pipeline
CN115822539A (en) * 2022-11-22 2023-03-21 西南石油大学 Supercritical carbon dioxide jet composite foam sand-carrying fracturing method

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110139455A1 (en) * 2008-08-14 2011-06-16 Tokyo Gas Co., Ltd. Storing device for stored substance and method for storing stored substance
CN102400674A (en) * 2011-12-02 2012-04-04 中国石油大学(华东) Supercritical carbon dioxide shaft multi-phase flow simulation test device
CN103244095A (en) * 2013-06-05 2013-08-14 重庆大学 Supercritical carbon dioxide fracturing method and supercritical carbon dioxide fracturing system

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110139455A1 (en) * 2008-08-14 2011-06-16 Tokyo Gas Co., Ltd. Storing device for stored substance and method for storing stored substance
CN102400674A (en) * 2011-12-02 2012-04-04 中国石油大学(华东) Supercritical carbon dioxide shaft multi-phase flow simulation test device
CN103244095A (en) * 2013-06-05 2013-08-14 重庆大学 Supercritical carbon dioxide fracturing method and supercritical carbon dioxide fracturing system

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
程宇雄等: "超临界二氧化碳钻井研究进展", 《钻采工艺》, vol. 36, no. 2, 28 February 2013 (2013-02-28), pages 41 - 44 *

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104806219B (en) * 2015-04-13 2017-05-17 中国石油大学(华东) Oil and gas reservoir increased permeation and blocking removal device and increased permeation and blocking removal method thereof
CN104806219A (en) * 2015-04-13 2015-07-29 中国石油大学(华东) Oil and gas reservoir increased permeation and blocking removal device and increased permeation and blocking removal method thereof
CN105422091A (en) * 2015-09-02 2016-03-23 煤科集团沈阳研究院有限公司 Carbon dioxide phase change device for breaking large-lump coal or gangue of underground coal mine and breaking method
CN105221129B (en) * 2015-11-13 2017-09-12 重庆大学 A kind of hydraulic pressure demolition, which is opened, splits CO2Take the reservoir anti-reflection method of proppant pressure break
CN105221129A (en) * 2015-11-13 2016-01-06 重庆大学 A kind of hydraulic pressure demolition opens and splits-CO 2take the reservoir anti-reflection method of proppant pressure break
CN106437633A (en) * 2016-11-29 2017-02-22 武汉大学 Shale gas mining device and method with combination of lasers and water jet technologies
CN106437633B (en) * 2016-11-29 2017-06-27 武汉大学 The exploitation shale gas device and method that a kind of laser and water-jet technology are combined
CN107120087B (en) * 2017-04-14 2020-04-21 太原理工大学 Coal bed supercritical carbon dioxide plugging device and method
CN107120087A (en) * 2017-04-14 2017-09-01 太原理工大学 A kind of coal seam supercritical carbon dioxide plugging device and method
CN111819339A (en) * 2018-03-07 2020-10-23 沙特***石油公司 Removing scale from a wellbore
CN109025936A (en) * 2018-06-22 2018-12-18 中国矿业大学 Underground coal mine burning shock wave fracturing coal body strengthens gas pumping method and equipment
CN109025937A (en) * 2018-06-22 2018-12-18 中国矿业大学 Hydraulic slotted liner technique combines fracturing coal gas pumping method with multistage combustion shock wave
CN109025938A (en) * 2018-06-22 2018-12-18 中国矿业大学 A kind of underground coal mine multistage combustion shock wave fracturing coal body reinforcing gas pumping method
CN109026128A (en) * 2018-06-22 2018-12-18 中国矿业大学 Multistage combustion shock wave fracturing coal body and heat injection alternation strengthen gas pumping method
CN109025938B (en) * 2018-06-22 2020-07-24 中国矿业大学 Method for reinforcing gas extraction of coal body fractured by multistage combustion shock wave under coal mine
CN111734376A (en) * 2020-06-05 2020-10-02 西安科技大学 Downhole high pressure liquid CO2Fracturing permeability-increasing coal rock complete equipment design method
CN112924269A (en) * 2021-01-11 2021-06-08 国家管网集团西部管道有限责任公司 Method and test device for simulating third-party damage to large-caliber high-pressure pipeline
CN115822539A (en) * 2022-11-22 2023-03-21 西南石油大学 Supercritical carbon dioxide jet composite foam sand-carrying fracturing method
CN115822539B (en) * 2022-11-22 2024-04-19 西南石油大学 Supercritical carbon dioxide jet composite foam sand-carrying fracturing method

Also Published As

Publication number Publication date
CN103867166B (en) 2015-03-11

Similar Documents

Publication Publication Date Title
CN103867166B (en) Device and method for supercritical carbon dioxide high-pressure jet flow plug removal seepage enhancement
CN105625946B (en) Coal bed gas horizontal well supercritical CO2Jet stream makes chamber and multistage synchronizes explosion fracturing method
US20240110465A1 (en) Cracking permeability increasing method combining hydraulic fracturing and methane in-situ combustion explosion
US9062545B2 (en) High strain rate method of producing optimized fracture networks in reservoirs
US7882895B2 (en) Method for impulse stimulation of oil and gas well production
AU2013239809B2 (en) Electrofracturing formations
RU2567877C2 (en) Method for efficiency improvement in injection and intensification of oil and gas production
US8082989B2 (en) Method for impulse stimulation of oil and gas well production
US10309202B2 (en) Fracturing treatment of subterranean formations using shock waves
CN101440704B (en) Ground-dipping ore bed continuous high-energy gas fracturing seepage increasing method and specific high-energy gas generator
CN102493795A (en) Method for gasification fracturing of liquid nitrogen in hydrocarbon reservoirs
US20170044885A1 (en) System and method for fracking of shale rock formation
CN107387049B (en) Repeated fracturing method and system
CN109488272A (en) Hot dry rock vertical well cuts fracturing process
CN110306961A (en) It is a kind of along roof Floor water horizontal well drilling well staged fracturing method
CN105673063A (en) Impact-disaster control method for large-dip-angle gas-containing thick coal seam
CN112665472A (en) Carbon dioxide rock breaking device and method for open pit mine
CN114718539A (en) In-situ combustion and explosion fracturing method in multi-turn methane layer
Abramova et al. Analysis of the modern methods for enhanced oil recovery
CN106382108B (en) Well fracturing and removal and stimulation method based on CO2 gas phase fracturing technique
CN112324418B (en) Hydraulic breaking process for underground rock
CN208330329U (en) A kind of oil/gas well combustion type ultra-positive pressure seam auxiliary device
CN106437666A (en) Novel technology for igniting specific explosive for explosive fracturing in oil and gas reservoir
CN203783546U (en) A supercritical carbon dioxide high pressure jet plug removal and permeability increase device
CN107989611A (en) Loading method for the fracturing hole internal solid carbon dioxide of non-explosive excavation rock

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
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150311

Termination date: 20180401

CF01 Termination of patent right due to non-payment of annual fee