CN107503723A - A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation - Google Patents

A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation Download PDF

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Publication number
CN107503723A
CN107503723A CN201710990087.5A CN201710990087A CN107503723A CN 107503723 A CN107503723 A CN 107503723A CN 201710990087 A CN201710990087 A CN 201710990087A CN 107503723 A CN107503723 A CN 107503723A
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well
water
gas
horizontal
exploitation
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袁鹏飞
张晓丽
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Daqing Dongyou Ruijia Petroleum Technology Co Ltd
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Daqing Dongyou Ruijia Petroleum Technology Co Ltd
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    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/16Enhanced recovery methods for obtaining hydrocarbons
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/16Enhanced recovery methods for obtaining hydrocarbons
    • E21B43/20Displacing by water
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/25Methods for stimulating production
    • E21B43/26Methods for stimulating production by forming crevices or fractures
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B43/00Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
    • E21B43/30Specific pattern of wells, e.g. optimising the spacing of wells
    • E21B43/305Specific pattern of wells, e.g. optimising the spacing of wells comprising at least one inclined or horizontal well

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Geology (AREA)
  • Mining & Mineral Resources (AREA)
  • Physics & Mathematics (AREA)
  • Environmental & Geological Engineering (AREA)
  • Fluid Mechanics (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Consolidation Of Soil By Introduction Of Solidifying Substances Into Soil (AREA)

Abstract

A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation, belong to the production technique field of gas hydrates.Methods described includes:With reference to geologic information, arrangement row's formula horizontal-well network and supporting completion practice are stored to target, decompression exploitation is implemented until without economic benefit by horizontal well after completion, fracturing work is implemented to horizontal well after decompression exploitation, then ground supply system and downhole injection system are arranged in water injection well, segmentation injection chemical agent and driven water-replacing are stored to gas hydrates by water injection well, and natural gas and recovered water are collected from producing well;The present invention is applied to poor connectivity, storage thickness, the saturate storage of gas hydrates, horizontal well by storing from arrangement row formula distribution to target, which improves, can employ gas hydrates reserves, injection chemical agent is segmented by water injection well and driven water-replacing implements exploitation, gas production efficiency can be improved, improve ultimate recovery, increase economic benefit.

Description

A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation
Technical field
A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation, belong to the production technique of gas hydrates Field.
Background technology
Gas hydrates (natural gas hydrate, abbreviation NGH) are natural gases under certain low temperature, high pressure The non-stoichiometry cage compound formed with water, also referred to as " combustible ice ".1m3Gas hydrates can contain 164m3Methane gas And 0.8m3Water." combustible ice " is the product of growing nonparasitically upon another plant of natural gas, and application is roughly the same with natural gas, is a kind of typical Oil substitutes." combustible ice " easily burns, under equal conditions, energy ratio coal caused by " combustible ice " burning, oil, natural Gas will be higher by decades of times, be described as " belonging to the super energy that end is come ".
The flammable ice reserves very abundant in China, according to investigation, the gas hydrates in China are mainly distributed on south Marine site, Area of The East China Sea, Qinghai-Tibet tundra and northeast tundra.
Artificially break the phase balance condition that gas hydrates are stabilized, promote its decomposition, be that current exploitation is natural The main method of gas hydrate.According to the equilbrium phase diagram of gas hydrates, heating, chemical method, decompression can be generally divided into The class of method three.
Heating:Steam, hot water, hot salt brine or other hot fluid mediums are mainly pumped into natural gas by the method from ground Hydrate reservoir, also using the fire flooding used when exploiting heavy oil or drill string heater can be utilized.Hot production technique it is main not Foot is to cause substantial amounts of heat loss, and efficiency is very low.
Add chemical agent:The chemical agent such as some chemical agents, salt solution, methanol, ethanol, ethylene glycol, glycerine can change Become the phase balance condition of gas hydrate synthesis, reduce hydrate equilibrium temperature.The shortcomings that adding chemical agent maximum is that expense is too expensive. Because the pressure of big midocean gas hydrates is higher, thus the method should not be used.
Voltage drop method:Cause the movement of the stable phase equilibrium line of gas hydrates by reducing pressure, so as to reach Promote the purpose of gas hydrate dissociation.Free gas under exploitation hydrate layer is that the one kind for reducing reservoir pressure has efficacious prescriptions Method, the purpose of control reservoir pressure can be reached additionally by the extraction rate of regulation natural gas, and then controls hydrate The effect of decomposition.The characteristics of voltage drop method maximum is continuous agitation that need not be expensive, thus it is likely to become and opened on a large scale from now on Adopt one of effective ways of gas hydrates.
CN 200910059321.8 disclose it is a kind of by water pump to outside exploitation of gas hydrates well the device of draining and Method, the pressure of gas hydrates layer is reduced by draining, promote the decomposition of gas hydrates layer.It is but simple using drop The decomposition motive force that platen press provides is small, and gas hydrate dissociation causes temperature to reduce, when temperature is reduced to less than 0 DEG C, and also Ice can be caused to block the stagnation with gas hydrate dissociation, while CN 20111048906.4 discloses a kind of drainage and step-down The method exploitation of gas hydrate of heating, the continuous decomposition for promoting hydrate, above two method are all to utilize hydrate point Escaped after solution on gas, water is because deadweight is fallen, and water pump discharges water outside exploitation of gas hydrates well, but actually decomposition gas Substantial amounts of steam is carried during upper ease, upward velocity is very slow, and production efficiency is very low.And level is utilized in CN 20111048906.4 Well combustion heating, combustion heating is dangerous in exploitation of gas hydrates well, has inside and outside exploitation of gas hydrates well flammable Gas, directly heated using naked light abnormally dangerous.
The content of the invention
The present invention relates to a kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation, methods described includes:Knot Geologic information is closed, arrangement row's formula horizontal-well network and supporting completion practice are stored to target, implements to be depressured by horizontal well after completion Exploitation implements fracturing work after decompression exploitation until without economic benefit to horizontal well, then in water injection well arrangement ground supply system Gas hydrates are stored segmentation injection chemical agent and driven water-replacing by water injection well by system and downhole injection system, and from production Well is collected to natural gas and recovered water;The present invention is applied to poor connectivity, storage is thick, gas hydrates are saturate Storage, the horizontal well by storing arrangement row formula distribution to target, which improves, can employ gas hydrates reserves, pass through water injection well Segmentation injection chemical agent and driven water-replacing implement exploitation, can improve gas production efficiency, improve ultimate recovery, increase economic benefit.
To achieve these goals, the invention provides a kind of side of gas hydrates row's formula horizontal well chemical flooding exploitation Method, methods described comprise the steps:
Step 1, arrangement row's formula horizontal-well network, with reference to geologic information, arrangement row's formula horizontal-well network, horizontal well are stored to target It is divided into water injection well and producing well, gas hydrates reserves can be employed to improve by arranging formula level distribution well;
Step 2, completion practice, row's formula horizontal-well network arrangement carry out supporting completion practice after completing;
Step 3, decompression exploitation, after supporting completion practice, the supporting ground system of located production wells, to water injection well and producing well Implement decompression exploitation, until without economic benefit;
Step 4, fracturing work, in well layout frac system after decompression exploitation, fracturing work is implemented to net horizontal section;
Step 5, arrangement flood pattern, flood pattern include ground supply system and downhole injection system;
Step 6, displacement exploitation, segmentation injection chemical agent and driven water-replacing are stored to gas hydrates by water injection well, and Natural gas and stratum water are collected from producing well.
Formula horizontal-well network is arranged in the step 1 to be included:Water injection well direction described in row's formula horizontal-well network and the life It can be in the same direction or reverse to produce well direction;The horizontal segment of water injection well and producing well in row's formula horizontal-well network Can be isometric or non-isometric;Water injection well and producing well can be aligned fashions in row's formula horizontal-well network Or be dislocatedly distributed;The water injection well horizontal segment depth and the producing well horizontal segment depth can be it is contour, The water injection well horizontal segment can also be located above or below the producing well horizontal segment;The distance between each well is according to storage bar Part can change within the specific limits.
Preferably, row's formula horizontal-well network arrangement scope is:Horizontal-well network spacing range 300-1000 rice, horizontal segment length Spend scope 500-2000 rice.
Supporting completion practice is divided into straight well section completion and horizontal segment completion in the step 2, straight in the straight well section completion Well section depth is more than horizontal segment depth 5-30 rice, forms liquid storage chamber, to realize that air water point is adopted, reduces produced gas water content, and press down Gas hydrates are formed in sleeve pipe processed;The horizontal segment completion is well-case perforating completion, perforation fragment position, perforating depth, is penetrated Hole density can be adjusted according to actual storage situation;Tripping in electricity is latent in the water injection well and producing well straight well section during operation Pump, tripping in is to straight well section bottom liquid storage chamber, and tripping in sand control installation, sand control installation can prevent gas hydrate dissociation from producing Sandstone enter straight well section in, prevent sandstone damage underground equipment;Specific implementation process is the tripping in sand control into horizontal well successively Device, centralizer, electric submersible pump and power cable, the sand control installation, centralizer, electric submersible pump and power cable are conventional Downhole tool, model can be adapted to according to actual storage situation selection.
The supporting ground system of producing well includes electric power system, produced water treatment system, produced gas processing system in the step 3 System and control system.
The electric power system includes power supply, frequency converter, is sequentially connected, passed through by power cable and production wellhead oil pipe entrance Power converter output is adjusted, and then adjusts electric submersible pump in shaft bottom drain age velocity;The power supply include generator, commercial power and Various normal power supplies.
The produced water treatment system includes water storage device, water treatment facilities, control valve, temperature sensor, pressure and passed Sensor, fluid flowmeter, it is sequentially connected via liquid line and the outlet of production wellhead oil pipe, is passed by fluid flowmeter, pressure Sensor and temperature sensor real-time collecting electric submersible pump discharge opeing data, displacement is implemented to control by control valve, at water Reason device is filtered to recovered water, degassing process, the water after filtering is fed into water storage device to treat to handle in next step, the storage Metering device is provided with inside water installations, to monitor water-holding quantity inside water storage device;The water storage device include water pot and its He has the container for depositing water storage function, and the metering device, which includes tank gage and other, has the device for measuring water level function, The water treatment facilities is included with the conventional water treatment equipment that airway dysfunction is dissolved in filtering, decomposition water, the control valve, temperature It is conventional equipment to spend sensor, pressure sensor, fluid flowmeter, liquid line.
The extraction gas processing system includes warehousing and transportation facilities, gas treatment equipment, gas-liquid separator, control valve, temperature Sensor, pressure sensor, gas flowmeter are spent, production wellhead cannula exit is connected to via gas transmission line successively, passes through gas Flowmeter body, pressure sensor and temperature sensor real-time collecting sleeve pipe gas production data, gas production is implemented by control valve Control, gas-liquid separation processing is carried out to produced gas by gas-liquid separator, the natural gas after separation feeds natural gas treatment plant Next step processing, including filtration treatment, desulfurization process, dewater treatment are carried out, the natural gas after processing feeds warehousing and transportation facilities and carried out Transport;The warehousing and transportation facilities include gas transmission line, pressure vessel and other there is the conventional equipment of natural gas accumulating function, it is described Gas treatment equipment includes The conventional equipment with gas-liquid separating function, the control valve, temperature sensor, pressure sensor, gas flowmeter, gas transmission Pipeline is conventional equipment.
It is connected between the water treatment facilities and gas-liquid separator by gas transmission line with liquid line, the appendix Line is provided with gas flowmeter, and the liquid line is provided with fluid flowmeter, caused natural after being deaerated in water treatment facilities Gas feeds gas-liquid separator, and the water that gas-liquid separator separates go out feeds water treatment facilities and is further processed.
The control system includes controller and signal receiver, passes through frequency converter in signal-transmitting cable and electric power system It is connected, to monitoring frequency converter working condition in real time, and remote control is implemented to frequency converter by controller, passed by signal Transmission cable connects with control valve, temperature sensor, pressure sensor, fluid flowmeter, metering device in produced water treatment system Connect, monitoring produced water treatment working state of system is implemented by controller, and realize and produced water treatment system remote is controlled, lead to Signal-transmitting cable is crossed with control valve, temperature sensor, pressure sensor, gas flowmeter in extraction gas processing system to connect Connect, monitoring extraction gas processing system working condition is implemented by controller, and realize to producing gas processing system remote control;Institute State controller include computer, tablet personal computer and other there is the conventional equipment of control function, the signal receiver is tool There is signal to receive, the conventional equipment of transformation function.
The decompression exploitation is embodied as, and shaft bottom is drawn water by electric submersible pump in water injection well and producing well, passes through oil pipe With the gas production of casing annulus part, underground electric submersible pump discharge capacity is implemented to adjust by frequency converter, when gas production is too low or other After reason causes no economic benefit, implementation steps 4.
Frac system in the step 4, including agitating device, pressure break liquid container, supercharging device, pressure sensor, temperature Sensor, fluid flowmeter, applications of coiled tubing unit, controller and signal receiver, wherein agitating device, pressure break liquid container, increase Pressure device, pressure sensor, temperature sensor and fluid flowmeter are connected to applications of coiled tubing unit one by one by liquid line, even Continuous oil pipe device connection fracture well head, controller and signal receiver are filled by signal-transmitting cable and pressure break liquid container, supercharging Put, the connection of pressure sensor, temperature sensor, fluid flowmeter, monitoring frac system working condition is implemented by controller, and Realize to the accurate control of fracturing work;The agitating device include agitator tank, trucd mixer or other there is the conventional of agitating function Equipment, the pressure break liquid container include wet tank, tank car or other common equipments with storage fracturing fluid function, the increasing Pressure device include compression pump, fracturing unit truck or other there is the common equipment of function of increasing pressure, the applications of coiled tubing unit includes continuous The equipment of oil pipe car or other conventional control coiled tubings, the controller include computer, tablet personal computer and other have The conventional equipment of control function, the signal receiver are the conventional equipment with signal reception, transformation function.
Fracturing work is applied to poor connectivity, storage thickness, the saturate storage of gas hydrates in the step 4, Increase storage connectedness by way of pressure break, to reach the purpose for improving gas recovery factor;The pressure break embodiment bag Include water injection well horizontal segment pressure break, producing well horizontal segment pressure break, water injection well horizontal segment and producing well horizontal segment concurrent fracturing;The pressure Splitting can be adjusted for conventional fracturing process, fracture length according to actual storage situation.
Ground supply system described in the step 5 includes water system and control system.
The water system includes water treatment facilities, agitating device, chemical agent storage tank, control valve, water storage device, metering Device, supercharging device, fluid flowmeter, temperature sensor, pressure sensor, the water treatment facilities is by liquid line with stirring Mix device to be connected, the chemical agent storage tank is connected by liquid line with agitating device, and the liquid line, which is provided with, to be adjusted Save valve and fluid flowmeter, the agitating device, water storage device, supercharging device, fluid flowmeter, temperature sensor, pressure Sensor is sequentially connected via liquid line and water injection well;The water treatment facilities connects water source, injection water is filtered, Sudden and violent oxygen processing, the water after filtering is fed into agitating device, metering device is provided with inside the water storage device, to monitor water storage dress Internal water-holding quantity is put, the supercharging device provides operating pressure for injection water, and the control valve, fluid flowmeter, pressure pass Sensor and temperature sensor record water system operational data in real time;The water source include well water, seawater, stratum recovered water and its His conventional source water, the water treatment facilities are included with filtering, the conventional water treatment equipment of sudden and violent oxygen function, the chemical agent storage tank Including the conventional vessel with chemical agent store function, the water storage device include water pot and other have deposit water storage function Container, the metering device, which includes tank gage and other, has the device for measuring water level function, and the supercharging device includes water Pump, pump truck and other there is the conventional supercharging device of function of increasing pressure, the control valve, temperature sensor, pressure sensor, liquid Flowmeter body, liquid line are conventional equipment.
The control system includes controller and signal receiver, passes through regulating valve in signal-transmitting cable and water system Door, temperature sensor, pressure sensor, fluid flowmeter, supercharging device, metering device connection, implement to monitor by controller Water system working condition, and realize to water system remote control;The controller include computer, tablet personal computer and its He has the conventional equipment of control function, and the signal receiver is the conventional equipment with signal reception, transformation function.
Downhole injection system in the step 5, including insulated tubing, centralizer, packer and horn mouth, in water injection well Interior, tripping in horn mouth, insulated tubing, packer, centralizer, horn mouth seal packer after reaching predeterminated position successively, with Form closed water filling space, the packer, centralizer can be one or multiple, and the packer, centralizer are Can be conventional equipment with the matching used conventional equipment of insulated tubing, the insulated tubing, horn mouth, according to the specific feelings of storage Condition can adjust different model.
Displacement exploitation specific implementation process is that the displacement stages of mining is to be stored up to gas hydrates in the step 6 0.1 times of pore volume driven water-replacing is injected in Tibetan, is subsequently injected into 0.1 times of pore volume chemical agent, then implements driven water-replacing and chemistry Agent is alternately injected with 0.1 times of pore volume, and collects natural gas and stratum water from producing well;The driven water-replacing is conventional source water Water, content of oxygen dissolved in water can be reduced by being handled through sudden and violent oxygen, and improve water source coolant-temperature gage, can increase natural gas hydration after injection storage Thing decomposition rate;The chemical agent composition be 5% mass than methanol, 5% mass than ethanol, 3% mass than dodecyl front three Ammonium chloride, remaining components are the phase balance condition that source water, methanol and ethanol can change gas hydrate synthesis as catalyst, Hydrate equilibrium temperature is reduced, to increase decomposition of hydrate speed, DTAC makes as clay stabilizer With, can prevent storage in clay particle expansion to caused by storage pollution.
In horizontal production well gas production process, by controlling water injection well injection rate and producing well to produce gas and water discharge capacity, and then adjust Whole producing well hydrodynamic face and flowing bottomhole pressure (FBHP), between making producing well flowing bottomhole pressure (FBHP) holding 1.5-4Mpa, pass through and adjust rational row Speed is adopted, control produced gas water content, temperature, to suppress to be formed gas hydrates in pit shaft, and keeps higher gas production speed Degree.
Beneficial effect of the present invention is:
1) present invention is exploited by voltage drop method to water injection well and producing well first, to ensure when follow-up displacement is exploited Will not, natural gas flow velocity too fast to underground equipment caused by danger too high because the bottom pressure that hydrate largely decomposes and occurs Evil, improve the security of exploitation of gas hydrates.
2) present invention production bottom be provided with liquid storage chamber, the water generated in recovery process can into liquid storage chamber and via Electric submersible pump is discharged, and is made output gas avoid mixing with water in underground, can effectively be reduced the water content of natural gas in oil jacket annular space, is increased Gas upward velocity, and then improve production efficiency.
3) present invention stores segmentation injection chemical agent and driven water-replacing to gas hydrates by downhole injection system, can fit For poor connectivity, storage thickness, the saturate storage of gas hydrates, gas hydrate dissociation speed can be accelerated and pressed down Clay swelling processed pollutes to caused by storage, and it is cost-saved to be segmented the mode of injection, and the inventive method job safety is reliable.
4) present invention can adopt gas hydrates reserves by storing the horizontal-well network raising of arrangement row's formula to target, relative to Traditional straight well well pattern, horizontal well patterns, row's formula horizontal-well network of the present invention can improve in storage to a greater extent can adopt gas water Compound reserves.
5) present invention increases storage connectedness by way of pressure break, can increase poor connectivity, storage thickness, natural gas hydration The saturate storage of thing is connective, to reach the purpose for improving gas recovery factor.
Brief description of the drawings
In order to illustrate more clearly of technical scheme, the required accompanying drawing used in description will be made below simple Ground introduction, it should be apparent that, drawings in the following description are only some embodiments of the present invention, for those skilled in the art For, it can also obtain other accompanying drawings according to these accompanying drawings on the premise of not paying creative work.
Fig. 1 is horizontal-well network aligned fashion schematic diagram in the same direction.
Fig. 2 is the reverse aligned fashion schematic diagram of horizontal-well network.
Fig. 3 is that horizontal-well network is dislocatedly distributed schematic diagram in the same direction.
Fig. 4 is that horizontal-well network is reversely dislocatedly distributed schematic diagram.
Fig. 5 is horizontal segment depth schematic diagram.
Fig. 6 is decompression exploitation completion schematic diagram.
Fig. 7 is producing well ground configuration schematic diagram.
Fig. 8 is frac system ground schematic diagram.
Fig. 9 is water injection well pressure break schematic diagram.
Figure 10 is producing well pressure break schematic diagram.
Figure 11 is water injection well and producing well concurrent fracturing schematic diagram.
Figure 12 is water injection well ground feed system schematic diagram.
Figure 13 is downhole injection system schematic diagram.
Drawing reference numeral:1st, water injection well 2, producing well 3, gas hydrates reservoir 4, overlying rock 5, lower rock stratum 6th, straight well section 7, horizontal segment 8, sleeve pipe 9, oil pipe 10, perforated interval 11, sand control installation 12, electric submersible pump 13, centralizer 14, Liquid storage chamber 15, power supply 16, power cable 17, frequency converter 18, production wellhead 19, fluid flowmeter 20, pressure sensor 21st, temperature sensor 22, liquid line 23, control valve 24, water treatment facilities 25, water storage device 26, metering device 27th, gas transmission line 28, gas flowmeter 29, gas-liquid separator 30, gas treatment equipment 31, warehousing and transportation facilities 32, control Device 33, signal receiving device 34, signal-transmitting cable 35, supercharging device 36, applications of coiled tubing unit 37, pressure break liquid container 38th, agitating device 39, fracture well head 40, fracturing fracture 41, methanol tank 42, ethanol storage tank 43, water injection well 44, every Deep fat pipe 45, packer 46, horn mouth.
Embodiment
The embodiment of the present invention provides a kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation, methods described bag Include:With reference to geologic information, arrangement row's formula horizontal-well network and supporting completion practice are stored to target, is implemented after completion by horizontal well Decompression exploitation implements fracturing work after decompression exploitation until without economic benefit to horizontal well, is then supplied on water injection well arrangement ground To system and downhole injection system, gas hydrates are stored by water injection well and are segmented injection chemical agent and driven water-replacing, and from Producing well is collected to natural gas and recovered water
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete Site preparation describes, it is clear that described embodiment is only part of the embodiment of the present invention, rather than whole embodiments.Based on this Embodiment in invention, the every other reality that those of ordinary skill in the art are obtained under the premise of creative work is not made Example is applied, belongs to the scope of protection of the invention.
The embodiments of the invention provide a kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation, methods described Comprise the following steps:
Step 1, arrangement row's formula horizontal-well network, with reference to geologic information, arrangement row's formula horizontal-well network, horizontal well are stored to target It is divided into water injection well and producing well, gas hydrates reserves can be employed to improve by arranging formula level distribution well, arranges formula horizontal well Net has following several arrangement modes:
As shown in figure 1, Fig. 1 is horizontal-well network aligned fashion schematic diagram in the same direction, water injection well 1 is distributed in the same direction with producing well 2, note The horizontal segment of well 1 and the horizontal segment of producing well 2 are in laterally aligned distribution.
As shown in Fig. 2 Fig. 2 is the reverse aligned fashion schematic diagram of horizontal-well network, water injection well 1 is reversely distributed with producing well 2, note The horizontal segment of well 1 and the horizontal segment of producing well 2 are in laterally aligned distribution.
It is dislocatedly distributed in the same direction schematic diagram as shown in figure 3, Fig. 3 is horizontal-well network, water injection well 1 is distributed in the same direction with producing well 2, note The horizontal segment of well 1 and the horizontal segment of producing well 2 are distributed in transversion malposition, and after being located at the heel of water injection well 1 at the heel of producing well 2 Side.
Reversely it is dislocatedly distributed schematic diagram as shown in figure 4, Fig. 4 is horizontal-well network, water injection well 1 is reversely distributed with producing well 2, note The horizontal segment of well 1 and the horizontal segment of producing well 2 are distributed in transversion malposition, and before being located at the heel of water injection well 1 at the tiptoe of producing well 2 Side.
Water injection well horizontal segment is placed with following several ways with producing well horizontal segment depth, as shown in figure 5, deep for horizontal segment Spend schematic diagram:
Fig. 5 A are that the horizontal segment depth of setting of water injection well 1 is less than the horizontal segment depth of setting of producing well 2, water injection well 1 and producing well 2 Horizontal segment is in gas hydrates reservoir 3, under overlying rock 4, on lower rock stratum 5.
Fig. 5 B are that the horizontal segment depth of setting of water injection well 1 is equal to the horizontal segment depth of setting of producing well 2, water injection well 1 and producing well 2 Horizontal segment is in gas hydrates reservoir 3, under overlying rock 4, on lower rock stratum 5.
Fig. 5 C are that the horizontal segment depth of setting of water injection well 1 is more than the horizontal segment depth of setting of producing well 2, water injection well 1 and producing well 2 Horizontal segment is in gas hydrates reservoir 3, under overlying rock 4, on lower rock stratum 5.
Step 2, completion practice, row's formula horizontal-well network arrangement carry out supporting completion practice after completing, and decompression as shown in Figure 6 is opened Completion schematic diagram is adopted, the straight well section 6 pierces depth and pierces depth more than horizontal segment 7, forms liquid storage chamber 14;The horizontal segment 7 Completion is well-case perforating completion, and perforated interval 10 is located on horizontal segment 7;Tripping in electricity is latent in water injection well 1 and the straight well section 6 of producing well 2 Pump 12, tripping in the bottom liquid storage chamber 14 of straight well section 6, and tripping in sand control installation 11, are drawn water to shaft bottom by oil pipe 9, pass through oil pipe 9 With the annular section gas production of sleeve pipe 8;Specific implementation process is tripping in sand control installation 11, centralizer 13, electricity are latent into horizontal well successively Pump 12 and power cable, do not regard in power cable figure.
Step 3, decompression exploitation, after supporting completion practice, the supporting ground system of located production wells, to water injection well and producing well Implement decompression exploitation, until without economic benefit, producing well ground configuration schematic diagram as shown in Figure 7, the supporting ground of producing well System includes electric power system, produced water treatment system, extraction gas processing system and control system.
The electric power system includes power supply 15, frequency converter 17, by power cable 16 and the entrance of 18 oil pipe of production wellhead 9 successively Connection, by adjusting the power output of frequency converter 17, and then electric submersible pump 12 is adjusted in shaft bottom drain age velocity.
The produced water treatment system includes water storage device 25, water treatment facilities 24, control valve 23, temperature sensor 21st, pressure sensor 20, fluid flowmeter 19, it is connected by liquid line 22 with the outlet of the oil pipe 9 of production wellhead 18, passes through liquid Flowmeter body 19, pressure sensor 20 and the discharge opeing data of 21 real-time collecting electric submersible pump of temperature sensor 12, pass through control valve 23 Displacement is implemented to control, recovered water filtered by water treatment facilities 24, degassing process, the water after filtering is fed into storage Water installations 25 are to treat to handle in next step, and the inside of water storage device 25 is provided with metering device 26, to monitor in water storage device 25 Portion's water-holding quantity.
The extraction gas processing system includes warehousing and transportation facilities 31, gas treatment equipment 30, gas-liquid separator 29, regulating valve Door 23, temperature sensor 21, pressure sensor 20, gas flowmeter 28, are connected to production wellhead via gas transmission line 27 successively 18 sleeve pipes 8 export, by gas flowmeter 28, pressure sensor 20 and the gas production data of 21 real-time collecting sleeve pipe of temperature sensor 8, Gas production is implemented to control by control valve 23, gas-liquid separation processing, separation are carried out to produced gas by gas-liquid separator 29 Natural gas afterwards feeds natural gas treatment plant 30 and carries out next step processing, including filtration treatment, desulfurization process, dewater treatment, Natural gas after processing feeds warehousing and transportation facilities 31 and transported, the gas-liquid separator 29, gas treatment equipment 30 and accumulating Equipment 31 is connected by gas transmission line 27, and gas flowmeter 28 is provided with pipeline.
It is connected between the water treatment facilities 24 and gas-liquid separator 29 by gas transmission line 27 with liquid line 22, institute State gas transmission line 27 and be provided with gas flowmeter 28, the liquid line 22 is provided with fluid flowmeter 19, water treatment facilities 24 Caused natural gas feeds gas-liquid separator 29 after middle degassing, and the water that gas-liquid separator 29 is isolated feeds water treatment facilities 24 and entered Row is handled in next step.
The control system includes controller 32 and signal receiver 33, by signal-transmitting cable 34 and electric power system Frequency converter 17 is connected, to the monitoring working condition of frequency converter 17, and being implemented remotely to frequency converter 17 by controller 32 in real time Control, pass through control valve 23, temperature sensor 21, pressure sensor in signal-transmitting cable 34 and produced water treatment system 20th, fluid flowmeter 19, metering device 26 connect, and implement monitoring produced water treatment working state of system by controller 32, and Realize to produced water treatment system remote control, by signal-transmitting cable 34 with extraction gas processing system in control valve 23, Temperature sensor 21, pressure sensor 20, gas flowmeter 28 connect, and implement monitoring extraction gas processing system by controller 32 Working condition, and realize to producing gas processing system remote control.
Step 4, fracturing work, in well layout frac system after decompression exploitation, fracturing work is implemented to net horizontal section, such as The schematic diagram of frac system ground shown in Fig. 8, the frac system, including agitating device 38, pressure break liquid container 37, supercharging device 35th, pressure sensor 20, temperature sensor 21, fluid flowmeter 19, applications of coiled tubing unit 36, controller 32 and signal receiver 33, wherein agitating device 38, pressure break liquid container 37, supercharging device 35, pressure sensor 20, temperature sensor 21 and fluid flow Meter 19 is connected to applications of coiled tubing unit 36 one by one by liquid line 22, and fracture well head 39 is connected by applications of coiled tubing unit 36, controls Device 32 and signal receiver 33 processed pass through signal-transmitting cable 34 and the internal metering devices 26 of pressure break liquid container 37, supercharging device 35th, pressure sensor 20, temperature sensor 21, fluid flowmeter 19 connect, and implement monitoring frac system work by controller 32 Make state, and realize to the accurate control of fracturing work.
Fracturing work is applied to poor connectivity, storage thickness, the saturate storage of gas hydrates in step 4, passes through The mode of pressure break increases storage connectedness, to reach the purpose for improving gas recovery factor;The pressure break embodiment includes note Well horizontal segment pressure break, producing well horizontal segment pressure break, water injection well horizontal segment and producing well horizontal segment concurrent fracturing;As shown in Figure 9 Water injection well pressure break schematic diagram, fracturing fracture 40 are located at the horizontal segment of water injection well 1;The schematic diagram of producing well pressure break shown in Figure 10, pressure break are split Seam 40 is located at the horizontal segment of producing well 2;Water injection well shown in Figure 11 and producing well concurrent fracturing schematic diagram, fracturing fracture 40 are located at water filling The horizontal segment of well 1 and the horizontal segment of producing well 2;The pressure break is conventional fracturing process, and fracture length can be with according to actual storage situation It is adjusted.
Step 5, arrangement flood pattern, flood pattern include ground supply system and downhole injection system;As shown in figure 12 Water injection well ground feed system schematic diagram, the ground supply system include water system and control system.
The water system includes water treatment facilities 24, agitating device 38, methanol tank 41, ethanol storage tank 42, regulating valve Door 23, water storage device 25, metering device 26, supercharging device 35, fluid flowmeter 19, temperature sensor 21, pressure sensor 20, The water treatment facilities 24 is connected by liquid line 22 with agitating device 38, and the methanol tank 41, ethanol storage tank 42 are logical Liquid line 22 to be crossed with agitating device 38 to be connected, the liquid line 22 is provided with control valve 23 and fluid flowmeter 19, The agitating device 38, water storage device 25, supercharging device 35, fluid flowmeter 19, temperature sensor 21, pressure sensor 20 pass through It is sequentially connected by liquid line 22 and water injection well 43;The water treatment facilities 24 connects water source, and injection water is filtered, cruelly Oxygen processing, the water after filtering is fed into agitating device 38, the inside of water storage device 25 is provided with metering device 26, to monitor storage The inside water-holding quantity of water installations 25, the supercharging device 35 provide operating pressure, the control valve 23, fluid flow for injection water Meter 19, pressure sensor 20 and temperature sensor 21 record water system operational data in real time.
The control system includes controller 32 and signal receiver 33, by signal-transmitting cable 34 and water system Control valve 23, temperature sensor 21, pressure sensor 20, fluid flowmeter 19, supercharging device 35, metering device 26 connect, Monitoring water system working condition is implemented by controller 32, and realized to water system remote control.
Downhole injection system in the step 5, including insulated tubing 44, centralizer 13, packer 45 and horn mouth 46, such as Shown in Figure 13, downhole injection system schematic diagram, in water injection well, successively tripping in horn mouth 46, insulated tubing 44, packer 45, Centralizer 13, horn mouth 46 seals packer 45 after reaching predeterminated position, to form closed water filling space.
Step 6, displacement exploitation, injection chemical agent and driven water-replacing are segmented to gas hydrates reservoir 3 by water injection well 1, The displacement stages of mining is to inject 0.1 times of pore volume driven water-replacing in being stored to gas hydrates, is subsequently injected into 0.1 times of hole Gap volume chemical agent, then implement driven water-replacing and chemical agent and alternately injected with 0.1 times of pore volume;Pass through water when injecting driven water-replacing Processing unit 24 implements filtering, the processing of sudden and violent oxygen to source water, and the water after processing is fed into agitating device 38, and via water storage device 25th, supercharging device 35, water injection well 43 are injected in gas hydrates reservoir 3, note closing control valve 23 during driven water-replacing; Implement filtering, the processing of sudden and violent oxygen when injecting chemical agent to source water by water treatment facilities 24, the water after processing is fed into stirring dress 38 are put, and opens control valve 23, the methanol in methanol tank 41 flows into stirring dress via control valve 23, fluid flowmeter 19 In putting 38, ethanol in ethanol storage tank 42 is flowed into agitating device 38 via control valve 23, fluid flowmeter 19, and from stirring The entrance of device 38 adds DTAC, the source water, methanol, ethanol, DTAC It is sufficiently stirred in agitating device 38, and gas hydrates is injected via water storage device 25, supercharging device 35, water injection well 43 In reservoir 3, and natural gas and stratum water are collected from producing well 2;The chemical agent composition is 5% mass than methanol, 5% mass ratio Than DTAC, remaining components are source water for ethanol, 3% mass.

Claims (10)

  1. A kind of 1. method of gas hydrates row's formula horizontal well chemical flooding exploitation, it is characterised in that methods described includes following Step:
    Step 1, arrangement row's formula horizontal-well network, with reference to geologic information, arrangement row's formula horizontal-well network is stored to target, horizontal well is divided into Water injection well and producing well, gas hydrates reserves can be employed to improve by arranging formula level distribution well;
    Step 2, completion practice, row's formula horizontal-well network arrangement carry out supporting completion practice after completing;
    Step 3, decompression exploitation, after supporting completion practice, the supporting ground system of located production wells, implement to water injection well and producing well Decompression exploitation, until without economic benefit;
    Step 4, fracturing work, in well layout frac system after decompression exploitation, fracturing work is implemented to net horizontal section;
    Step 5, arrangement flood pattern, flood pattern include ground supply system and downhole injection system;
    Gas hydrates are stored segmentation injection chemical agent and driven water-replacing by water injection well by step 6, displacement exploitation, and from life Produce well and collect natural gas and stratum water.
  2. A kind of 2. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute It can be in the same direction or reverse that water injection well horizontal segment bearing of trend, which is stated, with the producing well horizontal segment bearing of trend; The water injection well horizontal segment depth and the producing well horizontal segment depth can be contour, and the water injection well horizontal segment can also Above or below the producing well horizontal segment.
  3. A kind of 3. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute State supporting completion practice and be divided into straight well section completion and horizontal segment completion, straight well section depth is more than level in the straight well section completion Section, form liquid storage chamber;The horizontal segment completion is well-case perforating completion.
  4. A kind of 4. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute It is the tripping in electric submersible pump in water injection well and producing well to state decompression exploitation, and shaft bottom is drawn water by oil pipe, passes through oil pipe and sleeve ring Empty part gas production.
  5. A kind of 5. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute Stating the supporting ground system of producing well in decompression exploitation includes electric power system, produced water treatment system, extraction gas processing system and control System processed, the electric power system include power supply, frequency converter;The produced water treatment system include water storage device, water treatment facilities, Control valve, temperature sensor, pressure sensor, fluid flowmeter;The extraction gas processing system includes warehousing and transportation facilities, natural Gas disposal equipment, gas-liquid separator, control valve, temperature sensor, pressure sensor, gas flowmeter;The control system Including controller and signal receiver.
  6. A kind of 6. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute State frac system include agitating device, pressure break liquid container, supercharging device, pressure sensor, temperature sensor, fluid flowmeter, Applications of coiled tubing unit, controller and signal receiver.
  7. A kind of 7. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute It is same including water injection well horizontal segment pressure break, producing well horizontal segment pressure break, water injection well horizontal segment and producing well horizontal segment to state fracturing work When pressure break, the pressure break is conventional fracturing process.
  8. A kind of 8. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute Stating ground supply system includes water system and control system, and the water system includes water treatment facilities, agitating device, chemistry Agent storage tank, control valve, water storage device, metering device, supercharging device, fluid flowmeter, temperature sensor, pressure sensor; The control system includes controller and signal receiver.
  9. A kind of 9. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that institute Stating downhole injection system includes insulated tubing, centralizer, packer and horn mouth.
  10. A kind of 10. method of gas hydrates row's formula horizontal well chemical flooding exploitation as claimed in claim 1, it is characterised in that The displacement stages of mining is to inject 0.1 times of pore volume driven water-replacing in being stored to gas hydrates, is subsequently injected into 0.1 times of hole Gap volume chemical agent, then implement driven water-replacing and chemical agent and alternately injected with 0.1 times of pore volume, and it is natural from producing well collection Gas and stratum water;The driven water-replacing is conventional source water water;The chemical agent composition is that 5% mass compares second than methanol, 5% mass Than DTAC, remaining components are source water for alcohol, 3% mass.
CN201710990087.5A 2017-10-23 2017-10-23 A kind of method of gas hydrates row's formula horizontal well chemical flooding exploitation Withdrawn CN107503723A (en)

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Application publication date: 20171222