CN204492771U - A kind of deep-sea viscous crude collecting device - Google Patents

A kind of deep-sea viscous crude collecting device Download PDF

Info

Publication number
CN204492771U
CN204492771U CN201520163404.2U CN201520163404U CN204492771U CN 204492771 U CN204492771 U CN 204492771U CN 201520163404 U CN201520163404 U CN 201520163404U CN 204492771 U CN204492771 U CN 204492771U
Authority
CN
China
Prior art keywords
oil
sucker rod
extension bar
casing
viscous crude
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520163404.2U
Other languages
Chinese (zh)
Inventor
傅永财
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN201520163404.2U priority Critical patent/CN204492771U/en
Application granted granted Critical
Publication of CN204492771U publication Critical patent/CN204492771U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Earth Drilling (AREA)

Abstract

The utility model discloses a kind of deep-sea viscous crude collecting device, aim to provide and a kind ofly can fall glutinous process by the viscous crude higher to viscosity in oil recovery process, thus improve viscous crude mobility, the deep-sea viscous crude collecting device that heavy crude reservoir gathers smoothly can be ensured.It comprises main oil pipe, hollow sucker rod, oil well cylinder, oil well cylinder is provided with marine riser, main oil pipe lower end is stretched in oil well cylinder, be provided with screw pump in main oil pipe, the main forwardtransfer signal worm of screw pump is connected with sucker rod, and in oil well cylinder, bottom is provided with sand control screen, sand control screen top has screen casing oil-out, screen casing oil-out communicates with the oil-in of screw pump, is provided with cable in sucker rod, and cable one end connects power supply source.The beneficial effects of the utility model are: rationally can heat viscous crude, its viscosity is reduced, is beneficial to collection; Carbon dioxide and steam can being passed into, rise to being about to, and the crude oil in uphill process carrying out falling glutinous.

Description

A kind of deep-sea viscous crude collecting device
Technical field
The utility model belongs to oil reservoir production technique field, particularly relates to a kind of deep-sea viscous crude collecting device.
Background technology
Heavy crude reservoir is widely distributed in the world, and according to statistics, viscous crude (comprising pitch) reservoir geology reserves are at least at more than 4 times of explored conventional crude reserves, and optimistic estimate even can more than 6 times.Along with people are to the exploration of deep water, deep water viscous crude receives the concern more and more come, and its exploitation development activities is also launched all over the world.
But, the deepwater depth of water is residing general at 500 to 2500 meters, due to the factor such as its degree of depth is darker, a low-temperature region can be formed in seabed, in addition the temperature sensitivity of viscous crude, and itself viscosity is higher, therefore in low-temperature region meeting flow difficulties, lose flowability even gradually, make oil well cannot maintain normal production.
Summary of the invention
The utility model is to overcome deficiency of the prior art, provides a kind of rational in infrastructure, can fall glutinous process by the viscous crude higher to viscosity, thus improve viscous crude mobility, can ensure the collecting device that heavy crude reservoir gathers smoothly in oil recovery process.
To achieve these goals, the utility model is by the following technical solutions:
A kind of deep-sea viscous crude collecting device, comprise main oil pipe, the hollow sucker rod of upper end open, stretch into the oil well cylinder under the mud line of seabed, described oil well cylinder is provided with the marine riser that has inner chamber, described riser top stretches out sea, be tightly connected between the barrel of oil well cylinder and the tube wall of marine riser, main oil pipe is through the inner chamber of marine riser, main oil pipe lower end is stretched in oil well cylinder, screw pump is provided with in described main oil pipe, the upper end of main forwardtransfer signal worm of described screw pump is connected with the lower end of sucker rod, described screw pump is in the lower end of main oil pipe, described oil well cylinder has perforation shell hole, described perforation shell hole stretches into oil reservoir, in described oil well cylinder, bottom is provided with sand control screen, described sand control screen top has screen casing oil-out, described screen casing oil-out communicates with the oil-in of screw pump, screen casing packer is provided with in described oil well cylinder, described sand control screen is through screen casing packer, be tightly connected between described sand control screen lateral wall top and screen casing packer, be tightly connected between described screen casing packer and oily shaft in wall, cable is provided with in described sucker rod, described cable one end connects power supply source, the bottom of cable other end connecting with pumping rod, the top of described sucker rod takes back power supply source by electric wire, described cable comprises inside conductor, external insulation jacket, insulate between described sucker rod and the main forwardtransfer signal worm of screw pump, described oil well cylinder offers some anti-depression holes stretched in the mud layer of seabed, anti-depression beam is provided with in described anti-depression hole, concrete is filled with between described anti-depression hole and anti-depression beam, described sand control screen lateral wall is provided with spirally-guided baric flow blade, formed between adjacent two of spirally-guided baric flow blade revolves and press down fluid mass.
As preferably, tubing packer is provided with in described oil well cylinder, be tightly connected between described main oil pipe outer wall and tubing packer, be tightly connected between described tubing packer and oily shaft in wall, form heavy water oil storage cavity between the inwall of tubing packer, screen casing packer, oil well cylinder, the bore of described heavy water oil storage cavity is greater than the bore of sand control screen.
As preferably, the main forwardtransfer signal worm lower end of described screw pump connects extension bar, be provided with in described heavy water oil storage cavity and prevent directly inhaling lagging, described anti-straight lagging of inhaling is connected on lower extension bar, described anti-straight suction between lagging outer ledge and the chamber wall of heavy water oil storage cavity forms the passage that oils, described lower extension bar is provided with many stirring cross bars, and described stirring cross bar one end is fixed on lower extension bar, and described stirring cross bar is in below anti-straight suction lagging.
As preferably, described sucker rod lower ending opening, the main forwardtransfer signal worm of described screw pump is upper, the cored screw of lower ending opening, the upper end open of described sucker rod connects a carbon dioxide air feed pump, described carbon dioxide air feed pump connects carbon dioxide air source, be communicated with between described sucker rod with main forwardtransfer signal worm, described lower extension bar is upper, the hollow stem of lower ending opening, described lower extension bar is connected with main forwardtransfer signal worm and is communicated with, described lower extension bar lower end is stretched in sand control screen, described lower extension bar is provided with multiple air intake be in sand control screen, described air intake is provided with into gas one way valve.
As preferably, all air intakes vertically arrange in a straight line, be provided with interval in described sand control screen and enter air-casing, described lower extension bar and interval enter to be rotationally connected between air-casing and lower extension bar outer wall and interval enter between air-casing inwall to seal, described interval enters air-casing and is provided with the vertical blowhole of a row, and each blowhole is all corresponding with one of them air intake to be communicated with.
As preferably, described lower extension bar is provided with multiple mixed gas port, described mixed gas port is provided with mixed gas one way valve, the mixed air-casing of interval is provided with outside described lower extension bar, be rotationally connected between described lower extension bar and the mixed air-casing of interval and seal between lower extension bar outer wall and the mixed air-casing inwall of interval, described interval is mixed air-casing and is between anti-straight suction lagging and screw pump, and described interval is mixed air-casing and is provided with some gas mixed holes, and each gas mixed hole all can correspondingly with one of them mixed gas port be communicated with.
As preferably, described main oil pipe is provided with tubing centrilizer, described tubing centrilizer tip height is consistent with oil well cylinder tip height, heating chamber is provided with in described tubing centrilizer, heater is provided with in described incubation cavity, the heating head of heater stretches in main oil pipe, and described marine riser inwall is provided with insulation layer.
As preferably, described external insulation jacket comprises multiple insulation sleeve section, the inwall of described insulation sleeve section compresses inside conductor, be provided with elasticity between adjacent insulation sleeve section and connect drum, be formed in one between described elasticity connection drum with insulation sleeve section structure, has gap between described elasticity connection drum inwall and inside conductor.
As preferably, sponge cylinder layer is provided with between described sucker rod and cable, described sponge cylinder layer is connected on sucker rod inwall, through wires hole is provided with in described sponge cylinder layer, described cable is through through wires hole, cable and sucker rod separate by described sponge cylinder layer, and the upper end open of described sucker rod is communicated with the water side of a supply-water pump, and the water inlet end of described supply-water pump connects water source.
As preferably, be provided with below the oil-in of described screw pump some density be less than pickup area density of sea water and be greater than pickup area oil density help oil suction ball, the described oil suction ball that helps is provided with connecting strand, and described connecting strand upper end is connected on screw pump.
The beneficial effects of the utility model are: rationally can heat viscous crude, its viscosity is reduced, is beneficial to collection; Carbon dioxide and steam can being passed into, rise to being about to, and the crude oil in uphill process carrying out falling glutinous; Provide cooling protection function in venting process, guardwire simultaneously, prevent it impaired; There is different mixed gas fall and cohere structure, distribute heat and gas on the whole more scientificly, promote crude oil viscosity lowering effect further, ensure the efficiency of recovering the oil and effect.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is that the utility model sinks the structural representation at water oil storage cavity place;
Fig. 3 is the structural representation at the utility model spirally-guided baric flow blade place;
Fig. 4 is the structural representation at the utility model air intake place;
Fig. 5 is the structural representation that the utility model interval enters air-casing place;
Fig. 6 is the structural representation at the mixed air-casing place of the utility model interval;
Fig. 7 is the structural representation of the utility model sucker rod inside;
Fig. 8 is the structural representation of cable of the present utility model;
Fig. 9 is the structural representation at the utility model anti-depression hole place.
In figure: main oil pipe 1, sucker rod 2, seabed mud line 3, oil well cylinder 4, marine riser 5, sea 6, screw pump 7, perforation shell hole 8, oil reservoir 9, sand control screen 10, screen casing packer 11, cable 12, external insulation jacket 13, tubing packer 14, heavy water oil storage cavity 15, lower extension bar 16, anti-straight suction lagging 17, oil passage 18, stir cross bar 19, carbon dioxide air feed pump 20, air intake 21, interval enters air-casing 22, blowhole 23, mixed gas port 24, the mixed air-casing 25 of interval, gas mixed hole 26, sponge cylinder layer 27, supply-water pump 28, tubing centrilizer 29, gap 30, inside conductor 31, insulation sleeve section 32, elasticity connects drum 33, anti-depression beam 34, concrete 35, seabed mud layer 36, help oil suction ball 37, connecting strand 38, spirally-guided baric flow blade 39, press down fluid mass 40.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is further described.
As Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7, Fig. 8, in embodiment shown in Fig. 9, a kind of deep-sea viscous crude collecting device, comprise main oil pipe 1, the hollow sucker rod 2 of upper end open, stretch into the oil well cylinder 4 under seabed mud line 3, described oil well cylinder is provided with the marine riser 5 that has inner chamber, described riser top stretches out sea 6, be tightly connected between the barrel of oil well cylinder and the tube wall of marine riser, main oil pipe is through the inner chamber of marine riser, main oil pipe lower end is stretched in oil well cylinder, screw pump 7 is provided with in described main oil pipe, the upper end of main forwardtransfer signal worm of described screw pump is connected with the lower end of sucker rod, described screw pump is in the lower end of main oil pipe, described oil well cylinder has perforation shell hole 8, described perforation shell hole stretches into oil reservoir 9, in described oil well cylinder, bottom is provided with sand control screen 10, described sand control screen top has screen casing oil-out, described screen casing oil-out communicates with the oil-in of screw pump, screen casing packer 11 is provided with in described oil well cylinder, described sand control screen is through screen casing packer, be tightly connected between described sand control screen lateral wall top and screen casing packer, be tightly connected between described screen casing packer and oily shaft in wall, cable 12 is provided with in described sucker rod, described cable one end connects power supply source, the bottom of cable other end connecting with pumping rod, the top of described sucker rod takes back power supply source by electric wire, described cable comprises inside conductor 31, external insulation jacket 13, insulate between described sucker rod and the main forwardtransfer signal worm of screw pump, described oil well cylinder offers some anti-depression holes stretched in seabed mud layer 36, anti-depression beam 34 is provided with in described anti-depression hole, concrete 35 is filled with between described anti-depression hole and anti-depression beam, described sand control screen lateral wall is provided with spirally-guided baric flow blade 39, formed between adjacent two of spirally-guided baric flow blade revolves and press down fluid mass 40.
Cable stretches in hollow sucker rod, and the two connects in the bottom of sucker rod, then mixes power supply source, electric wire, and form a heating circuit, electric current flows into through cable, and flowed out by hollow sucker rod, outer insulating bag cover carries out electric isolution.When having alternating current by above-mentioned heating circuit, because of the factor such as conduction heat production of kelvin effect, kindred effect, hysteresis effect and cable itself, acting in conjunction is generated heat.The viscous crude that viscosity is higher passes through screw pump, main oil pipe carries out carrying, hollow sucker rod is then within main oil pipe, first for the main forwardtransfer signal worm of connecting screw rod pump (no matter single-screw (single screw) pump, multi screwpump, at least all can have main forwardtransfer signal worm, in order to accept the input of power) carry out driven rotary, oil pumping, oil stream lifting action, second the heat it produced is taken away by the medium of institute's lifting (oil stream), achieve the overall process heating from bottom to top of main oil pipe inside viscous crude, thus reach heat fall glutinous, improve the object of its mobility and raising oil well lifting effect.The wherein existence of spirally-guided baric flow blade; make the liquid (seawater and crude oil) near sand control screen can produce an adherent inertia; it is made to be no longer completely directly flow to sand control screen; but there is certain tangential motion; thus, on the sieve aperture of sand control screen, those plug-hole impurity would not have been promoted by follow-up crude oil, seawater always in sieve aperture, but often can be pushed laterally through the hole; thus impurity not easily adheres to, be blocked on the sieve aperture of sand control screen always.And, after liquid flows through spirally-guided baric flow blade, turn baric flow inertia can be produced, also can move downward, thus, the effect of " from stirring " can be played, crude oil can be stirred before entering sand control screen, and crude oil, after seawater is descending together, because density is different with inertia, crude oil rises faster, seawater then moves down relatively in a large number, therefore the seawater ratio entering sand control screen can decrease more originally, crude oil can be improved up, and the follow-up ratio be extracted, the impurity of heavier (density is large) is driven descending by liquid stream simultaneously, after entering into oily wellbore bottom, pressure can be flowed down by follow-up liquid always, near the sieve aperture not easily again getting back to sand control screen.
Tubing packer 14 is provided with in described oil well cylinder, be tightly connected between described main oil pipe outer wall and tubing packer, be tightly connected between described tubing packer and oily shaft in wall, form heavy water oil storage cavity 15 between the inwall of tubing packer, screen casing packer, oil well cylinder, the bore of described heavy water oil storage cavity is greater than the bore of sand control screen.In the process of oil reservoir exploitation, must have the process of conveying of recovering the oil, this process normally adopts kinetic pump (as screw pump) to carry out the lifting of pumping and to crude oil.And in practice, be extracted and will not only have crude oil with the medium of lifting, but can a large amount of impurity and seawater etc. be contained, in some cases, moisture content even can (oil reservoir viscosity be too high more than ninety percent, be difficult to extract, thus a large amount of relatively runny seawater can be extracted into, or the more high factor of the moisture content of oil reservoir own causes).Crude oil (viscous crude) is together with seawater, after entering from sand control screen, under the effect of screw pump suction, start to rise, now can be introduced into heavy water oil storage cavity, the bore of heavy water oil storage cavity is larger, therefore crude oil, seawater can short stay herein, because crude oil herein has been drawn up the crude oil come, therefore viscosity is low relative to the viscous crude in oil reservoir, relative also rarer.Crude oil, seawater can start preliminary layering in heavy water oil storage cavity, water downwards, oil upwards, substantial oil can closer to the oil pumping end of screw pump, thus effectively can improve the pumping efficiency of screw pump, reduce by the ratio of lifting seawater, reduce additional energy, promote oil recovery effect.And the seawater of sedimentation downwards, along with follow-up crude oil continue enter, upper lower leaf, constantly can be extruded downwards, forever rest on bottom or flow back to oil reservoir region.
The main forwardtransfer signal worm lower end of described screw pump connects extension bar 16, anti-straight suction lagging 17 is provided with in described heavy water oil storage cavity, described anti-straight lagging of inhaling is connected on lower extension bar, described anti-straight suction between lagging outer ledge and the chamber wall of heavy water oil storage cavity forms the passage 18 that oils, described lower extension bar is provided with many stirring cross bars 19, described stirring cross bar one end is fixed on lower extension bar, and described stirring cross bar is in below anti-straight suction lagging.After crude oil flows out from sand control screen upper end together with seawater, inhale crude oil in order to avoid screw pump direct and cause sucking a large amount of seawater simultaneously, spy arranges one and prevents directly inhaling lagging, after having had anti-straight suction lagging, crude oil (viscous crude) and seawater all need by winding raod footpath, just can reach anti-straight inhale above lagging via the passage that oils, screw pump oil pumping end below, in the process, being separated of crude oil and seawater can be carried out better, make its layering.Moreover, lower extension bar has stirring cross bar, therefore, viscous crude and seawater are in the process being separated layering, and the crude oil of thickness can be stirred, thus dispersion is fallen glutinous, so can crude oil be allowed better to rise, compressing seawater sinks, and anti-straight lagging upper liquid Crude Oil ratio of inhaling is promoted further, thus can improve pumping efficiency better.
Described sucker rod lower ending opening, the main forwardtransfer signal worm of described screw pump is upper, the cored screw of lower ending opening, the upper end open of described sucker rod connects a carbon dioxide air feed pump 20, described carbon dioxide air feed pump connects carbon dioxide air source, be communicated with between described sucker rod with main forwardtransfer signal worm, described lower extension bar is upper, the hollow stem of lower ending opening, described lower extension bar is connected with main forwardtransfer signal worm and is communicated with, described lower extension bar lower end is stretched in sand control screen, described lower extension bar is provided with multiple air intake 21 be in sand control screen, described air intake is provided with into gas one way valve.
Carbon dioxide can not only be dissolved in crude oil, and the hydrocarbon molecules in crude oil also can enter gas phase.And absorbing the crude oil after carbon dioxide, saturation pressure rises, and viscosity sharply reduces, thus can fall glutinous by the viscous crude directly realized to a certain extent.In oil recovery process, carbon dioxide air feed pump can carry out air feed, and carbon dioxide enters into sand control screen through sucker rod, main forwardtransfer signal worm, lower extension bar, and after crude oil enters sand control screen from outside, the direct absorbing carbon dioxide of meeting, reaches mixed phase state.Crude oil after sticking falls in absorbing carbon dioxide, and comparing can rise originally more easily enters heavy water oil storage cavity, thus compared with originally, same oil pumping energy consumption, can allow more a high proportion of crude oil enter main oil pipe.In addition, electric heating device of the present utility model, although heating and insulation isolation can be reached well, but sucker rod internal temperature can be in a higher state all the time, separately carry out the words analyzed, in sucker rod, heat outside cable still can be absorbed quickly to be taken away, play and fall glutinous effect, but the heat on the external insulation jacket of cable and in external insulation jacket, scatter and disappear just very slow, thus cable self-temperature can be caused too high, external insulation jacket is very easily impaired, and in sucker rod, constantly pass through carbon dioxide, effectively can take away these and be difficult to quick dispersed heat, reach the effect of cooling protection, and, these heats carrying via carbon dioxide, can directly conduct to the crude oil in sand control screen again, thus it is glutinous to make the crude oil in sand control screen to be fallen, thus be extracted more easily, lifting, the crude oil temperature in sand control screen is avoided to be in below pour point, thus ensure the smooth collection of crude oil.
All air intakes vertically arrange in a straight line, be provided with interval in described sand control screen and enter air-casing 22, described lower extension bar and interval enter to be rotationally connected between air-casing and lower extension bar outer wall and interval enter between air-casing inwall to seal, described interval enters air-casing and is provided with the vertical blowhole of a row 23, and each blowhole is all corresponding with one of them air intake to be communicated with.Carbon dioxide is supplied by carbon dioxide air feed pump, because heavy crude reservoir is in deep-sea, therefore supply gas pressure also be there are certain requirements, in order to avoid carbon dioxide is given vent to anger not smooth, ensure thinning effect, have employed above-mentioned structure, after carbon dioxide reaches lower extension bar bottom, can not continue to discharge, in the process of rotating together along with sucker rod at lower extension bar, as long as air intake is not to upper blowhole, so air flue (sucker rod, main forwardtransfer signal worm, the interior road of lower extension bar three) in carbon dioxide will accumulate, pressure increase, until lower extension bar turns to air intake to after upper blowhole, now just have the possibility of giving vent to anger, if now air flue internal gas pressure can squeeze seawater and crude oil, so just have carbon dioxide and enter into sand control screen, realizing combination falls glutinous, if even air flue internal gas pressure is not enough, accumulation gas will be continued, until next time air intake to upper blowhole, circulate with this.Thus, would not require that carbon dioxide air feed pump has great supply gas pressure, but intermittently self adaptation air feed can be carried out.And the gas of discharging like this, also has higher instantaneous air pressure, can wash the crude oil of thickness better open, promote the combination degree with crude oil.
Described lower extension bar is provided with multiple mixed gas port 24, described mixed gas port is provided with mixed gas one way valve, the mixed air-casing 25 of interval is provided with outside described lower extension bar, be rotationally connected between described lower extension bar and the mixed air-casing of interval and seal between lower extension bar outer wall and the mixed air-casing inwall of interval, described interval is mixed air-casing and is between anti-straight suction lagging and screw pump, described interval is mixed air-casing and is provided with some gas mixed holes 26, and each gas mixed hole all can correspondingly with one of them mixed gas port be communicated with.The principle of mixed gas port is substantially identical with air intake, difference is, relatively little (the comparing air intake) that total bore of mixed gas port can be arranged, this is because, the carbon dioxide that air intake provides is lower with relative temperature, and in the larger also more viscous sand control screen of amount, crude oil carries out combining, and the carbon dioxide that mixed gas port is discharged, only need directly to inhale the crude oil that above lagging, relative viscosity is lower, purity is higher combine with anti-.But, no matter total and the bore of mixed gas port, air intake, singly say from effect, the carbon dioxide that mixed gas port place provides, crude oil that can be higher in conjunction with the purity that will enter screw pump, reaches mixed phase further and falls glutinous.Further, the heat that this part carbon dioxide (lowered the temperature to cable, and namely crossed by electric cable heating) carries, directly conduction is to the relatively higher crude oil (the anti-straight medium inhaled above lagging) of purity, and it is little directly to conduct to seawater, so heat utilization efficiency is higher.Therefore mixed gas port, air intake and dependency structure, have different, but all very effective fall glutinous function.
Described main oil pipe is provided with tubing centrilizer 29, described tubing centrilizer tip height is consistent with oil well cylinder tip height, heating chamber is provided with in described tubing centrilizer, heater 30 is provided with in described incubation cavity, the heating head 31 of heater stretches in main oil pipe, and described marine riser inwall is provided with insulation layer.Tubing centrilizer belongs to routine techniques, mainly can prevent main oil pipe from offseting excessively.Utilize tubing centrilizer to offer inner space, extra heater is set, then can carry out composite heating.In the position that some are special, carry out middle heating thus make in main oil pipe, not have one section of long crude oil oil temperature being in below pour point, maintain the smooth lifting of oil stream.Oil well cylinder top is a cut-off rule, then is exactly upwards marine riser, and tubing centrilizer should be arranged in oil well cylinder, should not be arranged on marine riser (material and intensity limit).And in main oil pipe, to a certain extent, more upwards, crude oil low viscosity is required higher (single from local crude oil angle, certain part crude oil present position is higher, lifting power consumption, difficulty are larger), so wish that the former oil viscosity of eminence also can not be too high, thus the lifting of oil stream can be allowed smooth, heater then can play the function of reheat, composite heating, maintain the low viscosity of crude oil at interlude, increase the lifting inertia of oil stream, allow the fluid ability of crude oil entirety in main oil pipe become stronger.
Described external insulation jacket comprises multiple insulation sleeve section 32, the inwall of described insulation sleeve section compresses inside conductor, be provided with elasticity between adjacent insulation sleeve section and connect drum 33, be formed in one between described elasticity connection drum with insulation sleeve section structure, has gap between described elasticity connection drum inwall and inside conductor.Cable length is very long, there is km on hundreds of, after heating power, inside conductor has obviously elongated, the inwall of insulation sleeve section compresses inside conductor, driven mobile so can be heated inside conductor elongated, thus more the opening of adjacent insulation sleeve Duan Huifen, elasticity connects drum and is then stretched, elasticity connects gap smaller between drum inwall and inside conductor, makes external insulation be wrapped in the change that can adapt to inside conductor on the whole better.
Sponge cylinder layer 27 is provided with between described sucker rod and cable, described sponge cylinder layer is connected on sucker rod inwall, through wires hole is provided with in described sponge cylinder layer, described cable is through through wires hole, cable and sucker rod separate by described sponge cylinder layer, the upper end open of described sucker rod is communicated with the water side of a supply-water pump 28, and the water inlet end of described supply-water pump connects water source.Hollow sucker rod is the primary structure heated viscous crude, also be the structure of relatively-high temperature, cable in it also non-rigidly (for cost, to expand with heat and contract with cold and the consideration of installation difficulty, also be difficult to be arranged to rigidity), easily encounter sucker rod inwall, so, just easy Yin Wendu is too high and impaired for external insulation jacket, cause inside conductor to touch sucker rod, form local " short circuit ", affect heating effect.And the existence of sponge cylinder layer, can effectively avoid this problem.Further, sponge cylinder layer can't affect carbon dioxide and enter into air flue in lower extension bar, also can have certain anti-gas reverse back ability on the contrary.Viscous crude is outer at sucker rod, added heat drop in main oil pipe sticks, but, and the viscous crude below screw pump, near sand control screen, relative intensification is with regard to much less, in addition its position is darker, and the crude oil in these places probably also has a big chunk not reach pour point, will cause oil pumping difficulty like this.But on the position that oil pick-up tube is relatively higher, due to continuous heating, it is more that oil temperature can exceed pour point, this is the waste of heat, is also the weak point of a whole set of heating arrangement.And had the air flue of foregoing carbon dioxide, then after coordinating upper sponge cylinder layer and supply-water pump, just can provide better heating effect.Seawater directly can be taken in water source, may also be other water source, water behind road in sucker rod, main forwardtransfer signal worm, lower extension bar three, because the heating of cable (is the cooling of water to cable in fact, the cooling effect of water is far superior to carbon dioxide, can ensure inside and outside cable can not because of overheated impaired), become gas, and, due to the existence of sponge cylinder layer, water can first be adsorbed, then by thermal evaporation, do not exist yet water also fully heating just enter the situation of lower contact to crude oil.Water after these gasifications, the same with carbon dioxide, the effect of heating medium can be played, and due to specific heat of water large, heat capacity is much better than.Heat to such as directly to be taken below screw pump, in sand control screen at the place, the crude oil at sand control screen place can be heated up more, thus more a high proportion of crude oil temperature can be had to exceed pour point, makes it can by smooth lifting.Said process, by medium (gaseous mixture of water vapour or water vapour and carbon dioxide), make that a part of utilization rate in oil pick-up tube is lower even can be described as the heat originally can wasted, be provided to the position (the oil temperature lower part such as sand control screen) more needed, thus effectively improve the oil stream lifting effect of the utility model entirety, decrease heat waste.And the steam entering below can become liquid state again, after reaching heavy water oil storage cavity, to be separated with crude oil, layering.
Be provided with below the oil-in of described screw pump some density be less than pickup area density of sea water and be greater than pickup area oil density help oil suction ball 37, the described oil suction ball that helps is provided with connecting strand 38, and described connecting strand upper end is connected on screw pump.During screw pump oil pumping, seawater with crude oil be together with extract, difference is only that seawater accounting can change, and crude oil viscosity is low, and during original oil content ratio height, the seawater ratio be drawn into is just more on the low side, otherwise the crude oil ratio be then drawn into is lower.Had after helping oil suction ball, when seawater be upwards extracted more time, help oil suction ball because density of sea water is greater than, oil suction club is helped to move towards the oil-in of screw pump, the instantaneous oil pumping bore of covert reduction, thus the liquid measure extracted will tail off, the seawater of extraction is naturally also few.And oil density is relatively smaller, just be much smaller to helping the lifting force of oil suction ball, therefore instantaneous bore during oil suction is obviously greater than instantaneous bore when inhaling seawater, thus the seawater that screw pump is totally drawn into declines than regular meeting, the crude oil be drawn into rises than regular meeting, and in this scheme, the density of oil suction ball is helped preferably to be greater than oil density as much as possible, and pickup area density of sea water, pickup area oil density itself is also dynamic value, the density of oil suction ball is helped to be in suitable scope as long as can meet, do not require to ensure to help the density of oil suction ball be all definitely less than pickup area density of sea water all the time and be greater than pickup area oil density.

Claims (10)

1. a deep-sea viscous crude collecting device, it is characterized in that, comprise main oil pipe, the hollow sucker rod of upper end open, stretch into the oil well cylinder under the mud line of seabed, described oil well cylinder is provided with the marine riser that has inner chamber, described riser top stretches out sea, be tightly connected between the barrel of oil well cylinder and the tube wall of marine riser, main oil pipe is through the inner chamber of marine riser, main oil pipe lower end is stretched in oil well cylinder, screw pump is provided with in described main oil pipe, the upper end of main forwardtransfer signal worm of described screw pump is connected with the lower end of sucker rod, described screw pump is in the lower end of main oil pipe, described oil well cylinder has perforation shell hole, described perforation shell hole stretches into oil reservoir, in described oil well cylinder, bottom is provided with sand control screen, described sand control screen top has screen casing oil-out, described screen casing oil-out communicates with the oil-in of screw pump, screen casing packer is provided with in described oil well cylinder, described sand control screen is through screen casing packer, be tightly connected between described sand control screen lateral wall top and screen casing packer, be tightly connected between described screen casing packer and oily shaft in wall, cable is provided with in described sucker rod, described cable one end connects power supply source, the bottom of cable other end connecting with pumping rod, the top of described sucker rod takes back power supply source by electric wire, described cable comprises inside conductor, external insulation jacket, insulate between described sucker rod and the main forwardtransfer signal worm of screw pump, described oil well cylinder offers some anti-depression holes stretched in the mud layer of seabed, anti-depression beam is provided with in described anti-depression hole, concrete is filled with between described anti-depression hole and anti-depression beam, described sand control screen lateral wall is provided with spirally-guided baric flow blade, formed between adjacent two of spirally-guided baric flow blade revolves and press down fluid mass.
2. a kind of deep-sea according to claim 1 viscous crude collecting device, it is characterized in that, tubing packer is provided with in described oil well cylinder, be tightly connected between described main oil pipe outer wall and tubing packer, be tightly connected between described tubing packer and oily shaft in wall, form heavy water oil storage cavity between the inwall of tubing packer, screen casing packer, oil well cylinder, the bore of described heavy water oil storage cavity is greater than the bore of sand control screen.
3. a kind of deep-sea according to claim 2 viscous crude collecting device, it is characterized in that, the main forwardtransfer signal worm lower end of described screw pump connects extension bar, be provided with in described heavy water oil storage cavity and prevent directly inhaling lagging, described anti-straight lagging of inhaling is connected on lower extension bar, described anti-straight suction between lagging outer ledge and the chamber wall of heavy water oil storage cavity forms the passage that oils, described lower extension bar is provided with many stirring cross bars, described stirring cross bar one end is fixed on lower extension bar, and described stirring cross bar is in below anti-straight suction lagging.
4. a kind of deep-sea according to claim 3 viscous crude collecting device, it is characterized in that, described sucker rod lower ending opening, the main forwardtransfer signal worm of described screw pump is upper, the cored screw of lower ending opening, the upper end open of described sucker rod connects a carbon dioxide air feed pump, described carbon dioxide air feed pump connects carbon dioxide air source, be communicated with between described sucker rod with main forwardtransfer signal worm, described lower extension bar is upper, the hollow stem of lower ending opening, described lower extension bar is connected with main forwardtransfer signal worm and is communicated with, described lower extension bar lower end is stretched in sand control screen, described lower extension bar is provided with multiple air intake be in sand control screen, described air intake is provided with into gas one way valve.
5. a kind of deep-sea according to claim 4 viscous crude collecting device, it is characterized in that, all air intakes vertically arrange in a straight line, be provided with interval in described sand control screen and enter air-casing, described lower extension bar and interval enter to be rotationally connected between air-casing and lower extension bar outer wall and interval enter between air-casing inwall to seal, described interval enters air-casing and is provided with the vertical blowhole of a row, and each blowhole all can correspondingly with one of them air intake be communicated with.
6. a kind of deep-sea according to claim 5 viscous crude collecting device, it is characterized in that, described lower extension bar is provided with multiple mixed gas port, described mixed gas port is provided with mixed gas one way valve, the mixed air-casing of interval is provided with outside described lower extension bar, be rotationally connected between described lower extension bar and the mixed air-casing of interval and seal between lower extension bar outer wall and the mixed air-casing inwall of interval, described interval is mixed air-casing and is between anti-straight suction lagging and screw pump, described interval is mixed air-casing and is provided with some gas mixed holes, and each gas mixed hole all can correspondingly with one of them mixed gas port be communicated with.
7. a kind of deep-sea viscous crude collecting device according to claim 1 or 2 or 3, it is characterized in that, described main oil pipe is provided with tubing centrilizer, described tubing centrilizer tip height is consistent with oil well cylinder tip height, heating chamber is provided with in described tubing centrilizer, be provided with heater in described incubation cavity, the heating head of heater stretches in main oil pipe, and described marine riser inwall is provided with insulation layer.
8. a kind of deep-sea according to claim 1 viscous crude collecting device, it is characterized in that, described external insulation jacket comprises multiple insulation sleeve section, the inwall of described insulation sleeve section compresses inside conductor, be provided with elasticity between adjacent insulation sleeve section and connect drum, be formed in one between described elasticity connection drum with insulation sleeve section structure, has gap between described elasticity connection drum inwall and inside conductor.
9. a kind of deep-sea viscous crude collecting device according to claim 1 or 2 or 3, it is characterized in that, sponge cylinder layer is provided with between described sucker rod and cable, described sponge cylinder layer is connected on sucker rod inwall, be provided with through wires hole in described sponge cylinder layer, described cable is through through wires hole, and cable and sucker rod separate by described sponge cylinder layer, the upper end open of described sucker rod is communicated with the water side of a supply-water pump, and the water inlet end of described supply-water pump connects water source.
10. a kind of deep-sea viscous crude collecting device according to claim 1 or 2 or 3, it is characterized in that, be provided with below the oil-in of described screw pump some density be less than pickup area density of sea water and be greater than pickup area oil density help oil suction ball, the described oil suction ball that helps is provided with connecting strand, and described connecting strand upper end is connected on screw pump.
CN201520163404.2U 2015-03-23 2015-03-23 A kind of deep-sea viscous crude collecting device Expired - Fee Related CN204492771U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520163404.2U CN204492771U (en) 2015-03-23 2015-03-23 A kind of deep-sea viscous crude collecting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520163404.2U CN204492771U (en) 2015-03-23 2015-03-23 A kind of deep-sea viscous crude collecting device

Publications (1)

Publication Number Publication Date
CN204492771U true CN204492771U (en) 2015-07-22

Family

ID=53572094

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520163404.2U Expired - Fee Related CN204492771U (en) 2015-03-23 2015-03-23 A kind of deep-sea viscous crude collecting device

Country Status (1)

Country Link
CN (1) CN204492771U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104727786A (en) * 2015-03-23 2015-06-24 傅永财 Deep sea thickened oil acquisition equipment
CN114810001A (en) * 2022-05-24 2022-07-29 东营众志石油工程技术有限公司 Pneumatic screw pump mixed-flooding oil production process pipe column

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104727786A (en) * 2015-03-23 2015-06-24 傅永财 Deep sea thickened oil acquisition equipment
CN114810001A (en) * 2022-05-24 2022-07-29 东营众志石油工程技术有限公司 Pneumatic screw pump mixed-flooding oil production process pipe column
CN114810001B (en) * 2022-05-24 2023-10-31 东营众志石油工程技术有限公司 Pneumatic screw pump mixed flooding oil extraction process tubular column

Similar Documents

Publication Publication Date Title
CN101793138B (en) Hydrocyclone and screw pump combined downhole oil-water separation method
CN103410488B (en) Gas hydrates water pumping gas production quarrying apparatus and exploitation method thereof
CN205225215U (en) A mining devices for two sets of oil reservoir slicing mining
CN203394482U (en) Heavy oil exploiting device used for horizontal well
CN203285416U (en) Downhole oil-water separation device of double electric submersible pump
CN206071469U (en) A kind of same well oil extraction water injection string
CN204492771U (en) A kind of deep-sea viscous crude collecting device
CN104727786A (en) Deep sea thickened oil acquisition equipment
CN206144543U (en) Device for cycle oil recovery of taking in and send out in pit with super supercritical carbon dioxide
CN104818966A (en) Recovery well
CN104775793A (en) Oil extracting device
CN104832147A (en) Oil reservoir collector
CN203441440U (en) Thickened oil recovery system for horizontal well
CN206144550U (en) High gas -oil is than oil well gas -liquid separation system
CN201013344Y (en) Corollary equipment for bottom water reservoir potential equilibrium dislodging
CN104818976B (en) A kind of electric heating collector
CN208830979U (en) The note of downhole oil-water separation based on electric pulse adopts integrated device
CN104806207B (en) A kind of deep-sea viscous crude harvester
CN104818973A (en) High-viscosity oil pool extractor
CN104818974A (en) Viscosity reduction collection well
CN104832134A (en) Undersea mineral extraction device
CN104832146A (en) Oil extraction device
CN104818975A (en) Viscosity reduction extracting device
CN108894759A (en) The note of downhole oil-water separation based on electric pulse adopts integrated device and its application method
CN206676032U (en) A kind of device using physical method for separation oil water mixture

Legal Events

Date Code Title Description
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: 20150722

Termination date: 20180323

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