EP2825722A1 - Device for insulating a portion of a well - Google Patents
Device for insulating a portion of a wellInfo
- Publication number
- EP2825722A1 EP2825722A1 EP13704731.2A EP13704731A EP2825722A1 EP 2825722 A1 EP2825722 A1 EP 2825722A1 EP 13704731 A EP13704731 A EP 13704731A EP 2825722 A1 EP2825722 A1 EP 2825722A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- pipe
- jacket
- space
- sleeve
- opening
- 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.)
- Withdrawn
Links
- 239000002184 metal Substances 0.000 claims abstract description 23
- 238000004891 communication Methods 0.000 claims abstract description 14
- 229920001971 elastomer Polymers 0.000 claims description 16
- 239000000463 material Substances 0.000 claims description 11
- 239000011248 coating agent Substances 0.000 claims description 10
- 238000000576 coating method Methods 0.000 claims description 10
- 239000007788 liquid Substances 0.000 claims description 7
- 238000007789 sealing Methods 0.000 claims description 7
- 239000011343 solid material Substances 0.000 claims description 3
- 239000004033 plastic Substances 0.000 claims description 2
- 239000012530 fluid Substances 0.000 description 19
- 238000009413 insulation Methods 0.000 description 15
- 238000002955 isolation Methods 0.000 description 15
- 239000011435 rock Substances 0.000 description 6
- 230000000694 effects Effects 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 239000007789 gas Substances 0.000 description 4
- 230000003014 reinforcing effect Effects 0.000 description 4
- 239000000243 solution Substances 0.000 description 4
- 239000000806 elastomer Substances 0.000 description 3
- 238000011144 upstream manufacturing Methods 0.000 description 3
- 230000004913 activation Effects 0.000 description 2
- 238000002347 injection Methods 0.000 description 2
- 239000007924 injection Substances 0.000 description 2
- 239000003566 sealing material Substances 0.000 description 2
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 2
- 208000001953 Hypotension Diseases 0.000 description 1
- 238000004026 adhesive bonding Methods 0.000 description 1
- 230000004888 barrier function Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000004568 cement Substances 0.000 description 1
- 239000000919 ceramic Substances 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 230000008602 contraction Effects 0.000 description 1
- 238000012962 cracking technique Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 230000002950 deficient Effects 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
- 238000005553 drilling Methods 0.000 description 1
- 238000011156 evaluation Methods 0.000 description 1
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- 230000007257 malfunction Effects 0.000 description 1
- 239000012528 membrane Substances 0.000 description 1
- 239000007769 metal material Substances 0.000 description 1
- 239000011325 microbead Substances 0.000 description 1
- 239000000203 mixture Substances 0.000 description 1
- 235000011837 pasties Nutrition 0.000 description 1
- 229920000642 polymer Polymers 0.000 description 1
- 239000004576 sand Substances 0.000 description 1
- 239000002689 soil Substances 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 230000000638 stimulation Effects 0.000 description 1
- 230000008961 swelling Effects 0.000 description 1
- 238000012549 training Methods 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B33/00—Sealing or packing boreholes or wells
- E21B33/10—Sealing or packing boreholes or wells in the borehole
- E21B33/12—Packers; Plugs
- E21B33/127—Packers; Plugs with inflatable sleeve
- E21B33/1277—Packers; Plugs with inflatable sleeve characterised by the construction or fixation of the sleeve
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B33/00—Sealing or packing boreholes or wells
- E21B33/10—Sealing or packing boreholes or wells in the borehole
- E21B33/12—Packers; Plugs
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B33/00—Sealing or packing boreholes or wells
- E21B33/10—Sealing or packing boreholes or wells in the borehole
- E21B33/12—Packers; Plugs
- E21B33/126—Packers; Plugs with fluid-pressure-operated elastic cup or skirt
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B33/00—Sealing or packing boreholes or wells
- E21B33/10—Sealing or packing boreholes or wells in the borehole
- E21B33/13—Methods or devices for cementing, for plugging holes, crevices or the like
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B34/00—Valve arrangements for boreholes or wells
- E21B34/06—Valve arrangements for boreholes or wells in wells
- E21B34/10—Valve arrangements for boreholes or wells in wells operated by control fluid supplied from outside the borehole
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B43/00—Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
- E21B43/12—Methods or apparatus for controlling the flow of the obtained fluid to or in wells
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B43/00—Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
- E21B43/14—Obtaining from a multiple-zone well
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B43/00—Methods or apparatus for obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells
- E21B43/25—Methods for stimulating production
- E21B43/26—Methods for stimulating production by forming crevices or fractures
Definitions
- the present invention is in the field of drilling.
- This invention applies in particular but not exclusively to the casing of a horizontal well.
- a horizontal well makes it possible, among other things, to considerably increase the productive length and therefore the surface of contact with the geological formation in which gas and / or oil is present in a source rock.
- a pipe is thus lowered into the well with insulation devices at its periphery, spaced in a predetermined manner.
- hydraulic fracturing is a rock cracking technique in which the pipe is laid horizontally.
- the injected liquid is generally composed of 99% of water mixed in particular with sand or ceramic microbeads.
- the rock fractures under pressure, the solids penetrate inside the cracks and keep them open when the pressure is reduced so that gas or oil can flow through the breaches created.
- Fracturing is nowadays mostly carried out using a pipe assembly as described above.
- the zones are fractured one by one, which makes it possible to control and control the quantity of fluid injected in restricted volumes and distributed along the zone.
- pressures in the range of 1000 bar (15,000 psi) can be achieved.
- a key element of this fracturing device is in the insulation and sealing device. It must indeed ensure a perfect seal between the zones to ensure the quality and safety of the fracturing.
- the isolation devices are subject to high internal but also external pressures as well as to differential pressures.
- the fluids injected often have a lower temperature than that of the well, also subjecting the insulation devices to temperature variations.
- This rubber ring then expands radially and comes into contact with the wall of the well.
- mechanical packers have a principle of operation similar to that of hydraulic isolation devices, except that the compression of the rubber ring is performed by an external tool.
- the inflatable insulation devices in English "inflatable packers" are composed of an elastic membrane inflated by injection of liquid under pressure. After activation, the pressure is maintained in the sealing device by check valve systems.
- the insulating devices based on inflatable elastomer are composed of a polymer of the rubber type that swells in contact with a type of fluid (oil, water, etc.) according to the formulations.
- Expansible metal insulation devices are usually composed of a ductile metal jacket attached and sealed at its ends to the surface of a pipe.
- the metal jacket is expanded radially outwardly until it contacts the wall well, by increasing the pressure in the pipe, so as to create an annular barrier.
- the seal does not rely on an elastomeric means only, whose effectiveness over time and under severe conditions is uncertain.
- fracturing often uses fluids at external ambient temperature while isolation devices are placed at the well temperature.
- expansible metal folders are less sensitive to temperature variations and more particularly to thermal contractions.
- the coefficient of thermal expansion of the metal is of course lower than that of an elastomer.
- FIG. 1 a portion of pipe capable of being engaged inside a well.
- This pipe 1 is represented here provided with two insulating devices 2 between which extends a pipe portion 1 which has a set of open openings 3.
- This pipe 1 is shown again in the lower part of the figure, the insulation devices 2 then occupying an expanded position.
- the arrow v represents the flow of fluid inside the pipe, for fracturing, that is to say from upstream to downstream.
- Figure 2 is a simplified sectional view of a pipe such as that shown in Figure 1 which extends into a previously prepared well.
- this pipe has, at regular distance, isolation devices 2.
- isolation devices 2 are shown for the sake of simplification.
- each device consists of a tubular metal jacket 20 whose opposite ends are secured, directly or indirectly to the outer face of the pipe by reinforcing rings or skirts 21.
- the metal sleeves 20, not deformed, extend substantially in the extension of the rings 21.
- the distal end of the pipe preferably comprises a not shown port which is initially open during the descent of the pipe in the well so as to allow upstream fluid flow downstream at the pressure P 0 .
- This port is preferably closed with a ball that is placed in and closes this port, which increases the pressure in the pipe.
- a first pressurized fluid Pi greater than Po is then sent inside the pipe and the latter is introduced through openings 10 arranged opposite the liners 20 on the whole of the pipe so as to deform the metal jackets and adopt the position of Figure 2 in which their central intermediate portion is applied against the wall Ai of the well.
- the material of the jacket and the pressure are chosen so that the metal deforms beyond its elastic limit.
- a device not shown allows to release an opening at the distal end of the pipe when the pressure Pi is slightly increased.
- the pressure at the opening changes from Pi to Po and circulation is then possible in the pipe from upstream to downstream of the well.
- another ball 5 is launched inside the pipe and is placed in a sliding seat 4 located substantially at a mid-distance between the two insulating devices N and N-1.
- the seat 4 is located just opposite the aforementioned openings 3 and closes. Under the effect of the displacement of the ball, the seat 4 is closed and moves, thus releasing the openings 3. Then is injected into the pipe 1 a fracturing fluid under very high pressure.
- This fluid under pressure P 2 , is introduced into the device N and into the annular space B which separates the devices N and N-1.
- the pressure that prevails inside the device N-1 returns to the initial pressure of the well, that is to say to the pressure P 0 .
- Document EP-A-1 624 152 discloses a device in which each jacket which equips the tube bears a "skin" which extends only over part of the jacket. Between the shirt and the skin is present a sealing material.
- the present invention aims to overcome these difficulties.
- the system according to the invention has an expansion pressure lower than the fracturing pressure and is not sensitive to changes in temperature.
- this device for isolating a portion of a well which comprises a pipe provided, along its outer face, with at least one tubular metal jacket - the so-called “first outer jacket” - whose opposite ends are integral. , directly or indirectly, of said outer face of the pipe, this pipe, the first outer jacket and its ends defining together an annular space, the wall of said pipe having at least one opening which makes it communicate with said space, this jacket being likely to expand and to come, on an intermediate part of its length, to apply sealingly against the well,
- the solution according to the invention it is possible to provide inside the insulation devices a pressure substantially equal to that which allows the fracturing of the rock, without worry of collapse and leakage.
- the solution according to the invention does not call into question the general structure of pipes equipped with known insulation devices.
- said communication passage consists of at least one orifice that presents the wall of said first metal jacket and which opens into the part of said space which extends between the two shirts; said communication passage consists of at least one orifice situated between two ends facing said folders and which opens into the part of said space between the two shirts;
- said communication passage between the outside of the first jacket and said space consists of at least one orifice situated between the pipe and the end facing said second jacket and opens into the part of said space situated between the pipe and the jacket; interior;
- said opening of the duct communicates with said space via an annular gap which extends between the first ends facing the first liner and the second liner;
- said second jacket is made of a material capable of presenting a plastic deformation, such as metal and / or of elastically deformable material such as rubber or a rubber-based material;
- the outer face of the liner is provided, at least in said intermediate portion, with an elastically deformable sealing coating, for example rubber;
- - It comprises a non-deformable ring which wraps, over a fraction of its length, said first sleeve and at least partially opposes its expansion and that of the second sleeve;
- the external face of the pipe comprises, facing said at least one opening of communication between the pipe and said space, an elastically deformable coating,
- said at least one opening extends facing a skirt for securing the first liner to said duct;
- said at least one opening extends opposite said non-deformable ring
- At least one end of said shirts is adapted to move longitudinally relative to the pipe.
- FIG. 2 is, as explained above, a sectional view of a portion of a pipe to illustrate the method used so far;
- FIG. 3 is a half view, in longitudinal section, and extremely simplified, a first embodiment of the invention
- FIG. 4 is a more detailed sectional view along a longitudinal plane of the embodiment of Figure 3;
- FIG. 5 is an enlarged view of the portion of FIG. 4 marked in the form of a rectangle
- FIGS. 6, 7 and 8 are views of the pipe portion in different states that are a function of the pressure and the nature of the fluids circulating in the pipe;
- Figure 1 1 is a more detailed view, in longitudinal section, of the embodiment of Figure 10;
- Figures 12 and 14 are views of the opposite ends of the metal jacket of the embodiment of Figure 10;
- FIG. 13 is a view of another step relating to the use of this pipe.
- FIG. 15 is a three-dimensional view of another particular embodiment of the pipe.
- FIGS. 16 and 17 show, on the one hand, a portion of this longitudinal section view pipe and, respectively, a detail view of this portion, namely that which is surrounded by an oval in FIG.
- Figure 18 is a view of a variant of the embodiment of Figure 17.
- the device isolates an annular portion of the well where there is a high pressure HP (hereinafter referred to as P2) from another annular portion, located downstream, where a low BP pressure reigns (hereinafter designated P 0 ).
- HP high pressure HP
- P 0 low BP pressure reigns
- this pipe is provided, as is well known, along its outer face of a metal jacket 20 whose opposite ends X20 are integral with the outer face of this pipe.
- the external face of the tubular metal jacket 20 is provided with a crenellated coating 201, for example made of rubber, able to increase the tightness of the liner when it is deformed and plated against well A.
- this is a second sleeve 22, also expandable, whose X22 ends are sandwiched between those of the first sleeve 20 and the outer face of the pipe 1, as shown Figures 4 and 5.
- the two shirts are made of ductile metallic material.
- the second inner liner 22 could be in another expandable material such as an elastically deformable rubber material.
- FIG. 6 one is in a situation in which the openings 3 of the pipe 1 are closed and in the direction of the arrow v a fluid is injected under a predetermined pressure Pi.
- This pressure is calculated so as to allow the deformation of the first outer sleeve 20 beyond its elastic limit. It is for example of the order of 550 bar (about 8000psi).
- the fluid enters inside the space E which is delimited by the wall of the pipe 1, the first outer jacket 20 and its ends X20.
- This space E is divided into two parts, in this case a space E1 delimited by the pipe 1 and the second jacket 22, and a space E 2 delimited by the two shirts.
- the space E (that is to say the areas E1 and E2) are not adapted to receive and be filled with a solid material or of a material liquid or pasty able to solidify, or with a sealing material.
- the second jacket 22 has an expansion pressure which is less than or equal to Pi, that is to say that it is able to expand under the effect of a pressure less than or equal to Pi.
- the second inner liner 22 is sandwiched between the first liner 20 and the pipe 1, the second liner 22 deforms and presses against the inner face of the first liner 20.
- the openings 3 are disengaged and a fluid is circulated in line 1 under a fracturing pressure P 2 greater than Po (and Pi).
- This fluid therefore occupies the annular space B which separates the two adjacent insulation devices and, as shown in FIG. 7, the pressure P 2 which prevails therein is communicated inside the space E through the orifices 200. that presents the outer jacket 20.
- FIGS. 10 to 14 there is also a two-sleeve structure 20 and 22.
- the outer jacket 20 is devoid of openings 200.
- the openings 10 which make the pipe 1 communicate with the above-mentioned space E communicate with the latter by an annular gap j which extends between the first end of the first sleeve 20 and the first end of the second sleeve 22. This is particularly visible in FIGS. 10 and 12.
- the jacket 20 has been previously locally deformed to release such an interval.
- the reinforcing ring or skirt 21 is not waterproof, and for this purpose has an opening 213.
- the corresponding ends X 2 0 and X 22 of the two shirts 20 and 22 are joined and welded to the body 210 of the skirt 21 1 to one another. There remains however an interval j 2 between the internal face of the second sleeve 22 and the wall of the pipe 1.
- the pressure fluid less than or equal to P 2 may rush into the gap 2 and deform the second sleeve 22 which then applies intimately against the first sleeve 20.
- Figure 15 is shown a variant of a pipe whose two insulating devices 2 are each provided with a non-deformable ring 6, which partially and locally thwart the expansion of the shirts 20 and 22.
- this ring 6 is located opposite the zone where the pipe is provided with communication openings 10 between the inside of the pipe 1 and the space E.
- the outer face of the pipe 1 comprises a deformable elastic coating 7, for example made of rubber which covers the openings 10.
- It may be a single tubular piece that covers all the openings 10 or several different parts each covering an opening.
- This coating is attached in certain points to the shirt, for example by gluing. Thus, when there is a flow of pressure directed openings 10 towards the coating 7, it allows the pressure to escape in the regions where it is not attached to the pipe 1.
- the outer jacket 20 shown here is of the same type as that of Figures 3 and following, so that it comprises at least one through hole 200.
- folds generated in the material itself of the shirt can be as many mechanically fragile areas, even sources of leaks.
- the expansion and collapse phases of the sleeve 22 may make it defective.
- the openings 10 and their associated coating 7 are located in the region of the ends of the shirts 20 and 22.
- the shirt 22 decreases slightly of diameter and comes to exert a pressure on the coating 7, thus closing the openings 10.
- the pressure P 2 is then applied in the space Ei which further limits the risk of collapse.
Landscapes
- Geology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Mining & Mineral Resources (AREA)
- Environmental & Geological Engineering (AREA)
- Fluid Mechanics (AREA)
- Physics & Mathematics (AREA)
- General Life Sciences & Earth Sciences (AREA)
- Geochemistry & Mineralogy (AREA)
- Pipe Accessories (AREA)
- Gasket Seals (AREA)
- Pressure Vessels And Lids Thereof (AREA)
- Filtering Of Dispersed Particles In Gases (AREA)
- Rigid Pipes And Flexible Pipes (AREA)
- Thermal Insulation (AREA)
Abstract
The invention relates to a device for insulating a portion of a well, which includes a pipe (1) provided, along the outer surface thereof, with at least one tubular metal jacket (20), referred to as a first outer jacket, the opposite ends of which are directly or indirectly secured to said outer surface of the pipe (1), wherein said pipe, the first outer jacket (20), and the ends (X20) thereof together define an annular space (E), the wall of said pipe (1) having at least one opening placing same in communication with said space (E), said jacket being capable of expanding and sealingly engaging, over an intermediate portion of the length thereof, with the well. Said device is characterized in that it comprises: a second jacket (22) which is also expandable, which is referred to as a second outer jacket, and which extends between said pipe (1) and the first jacket (20), the ends (X22) thereof also being directly or indirectly secured to the outer surface of said pipe (1); and at least one passage (200) for placing the exterior of the first jacket (20) and said space (E) in communication.
Description
Dispositif d'isolation d'une partie d'un puits Device for isolating part of a well
La présente invention se situe dans le domaine du forage.The present invention is in the field of drilling.
Elle a plus particulièrement trait à un dispositif d'isolation d'une partie d'un puits de forage. It more particularly relates to a device for isolating part of a wellbore.
Cette invention s'applique notamment mais non exclusivement au tubage d'un puits horizontal. This invention applies in particular but not exclusively to the casing of a horizontal well.
Cette configuration de puits s'est généralisée ces dernières années, grâce aux nouvelles techniques d'extraction. This well configuration has become widespread in recent years thanks to new extraction techniques.
Un puits horizontal permet, entre autres, d'augmenter considérablement la longueur productive et donc la surface de contact avec la formation géologique dans laquelle du gaz, et/ou du pétrole est présent dans une roche mère. A horizontal well makes it possible, among other things, to considerably increase the productive length and therefore the surface of contact with the geological formation in which gas and / or oil is present in a source rock.
Dans une telle configuration horizontale, il est techniquement difficile de tuber et de cimenter l'espace annulaire entre le tube en position horizontale et la paroi intérieure du puits. Cette technique de cimentation, utilisée dans la majorité des puits verticaux ou à faible déviation, permet de garantir l'étanchéité entre les différentes zones géologiques. In such a horizontal configuration, it is technically difficult to tuber and cement the annular space between the tube in horizontal position and the inner wall of the well. This cementing technique, used in the majority of vertical or low deviation wells, makes it possible to guarantee the tightness between the different geological zones.
L'exploitation de puits horizontaux, que ce soit pour des besoins de stimulation ou de contrôle des flux, nécessite de pouvoir isoler certaines zones au sein même de la formation. The exploitation of horizontal wells, whether for stimulation or flow control purposes, requires the isolation of certain areas within the training.
Une conduite est ainsi descendue dans le puits avec des dispositifs d'isolation à sa périphérie, espacés de manière prédéterminée. A pipe is thus lowered into the well with insulation devices at its periphery, spaced in a predetermined manner.
En termes anglais, on parle de "zonal isolation packers". Entre ces dispositifs d'isolation, la conduite dispose souvent de ports ouverts ou fermés à la demande qui autorisent la communication entre la conduite et la zone isolée du puits. In English terms, we speak of "zonal isolation packers". Between these isolation devices, the pipe often has open or closed ports on demand that allow communication between the pipe and the isolated area of the well.
Dans cet environnement de complétion horizontale, la fracturation hydraulique est une technique de fissuration de la roche dans laquelle la conduite est disposée horizontalement. In this horizontal completion environment, hydraulic fracturing is a rock cracking technique in which the pipe is laid horizontally.
On procède à une fissuration par injection d'un liquide sous pression. Cette technique rend possible l'extraction de pétrole ou de gaz contenus dans des roches très compactes et très imperméables.
Habituellement, le liquide injecté est généralement composé de 99 % d'eau mélangé notamment à du sable ou des microbilles de céramique. La roche se fracture sous l'effet de la pression, les éléments solides pénètrent à l'intérieur des fissures et les maintiennent ouvertes lorsque la pression est diminuée de telle manière que le gaz ou le pétrole puisse fluer à travers les brèches ainsi créées. It is cracked by injection of a liquid under pressure. This technique makes it possible to extract oil or gas contained in very compact and highly impermeable rocks. Usually, the injected liquid is generally composed of 99% of water mixed in particular with sand or ceramic microbeads. The rock fractures under pressure, the solids penetrate inside the cracks and keep them open when the pressure is reduced so that gas or oil can flow through the breaches created.
La fracturation est aujourd'hui majoritairement effectuée en utilisant un assemblage de conduites tel que décrit plus haut. Les zones sont fracturées une par une, ce qui permet de contrôler et de maîtriser la quantité de fluide injecté dans des volumes restreints et répartis le long de la zone. Ainsi, des pressions de l'ordre de 1000 bar (15 000 psi) peuvent être atteintes. Fracturing is nowadays mostly carried out using a pipe assembly as described above. The zones are fractured one by one, which makes it possible to control and control the quantity of fluid injected in restricted volumes and distributed along the zone. Thus, pressures in the range of 1000 bar (15,000 psi) can be achieved.
Un élément clé de ce dispositif de fracturation se situe dans le dispositif d'isolation et d'étanchéité. Il doit en effet assurer une étanchéité parfaite entre les zones pour garantir la qualité et la sécurité de la fracturation. A key element of this fracturing device is in the insulation and sealing device. It must indeed ensure a perfect seal between the zones to ensure the quality and safety of the fracturing.
En effet, si une étanchéité est défaillante, une zone pourra être fracturée plusieurs fois, créant ainsi une fracture de trop grande taille et atteignant des zones géologiques non désirées. Indeed, if a seal fails, an area may be fractured several times, creating a fracture too large and reaching undesired geological areas.
Durant ces opérations de fracturation, les dispositifs d'isolation sont sujets à de hautes pressions internes mais également externes ainsi qu'à des pressions différentielles. De plus, les fluides injectés ont souvent une température plus faible que celle du puits, soumettant également les dispositifs d'isolation à des variations de température. During these fracturing operations, the isolation devices are subject to high internal but also external pressures as well as to differential pressures. In addition, the fluids injected often have a lower temperature than that of the well, also subjecting the insulation devices to temperature variations.
Plusieurs types de dispositifs d'isolation sont actuellement utilisés. Several types of isolation devices are currently used.
Ainsi, on fait usage de dispositifs d'isolation hydrauliques (en anglais « Hydraulic Packers ») qui utilisent la pression hydraulique pour comprimer un anneau de caoutchouc via un ou plusieurs piston(s). Thus, use is made hydraulic hydraulic devices (in English "Hydraulic Packers") that use the hydraulic pressure to compress a rubber ring via one or more piston (s).
Cet anneau de caoutchouc s'expanse alors radialement et vient en contact avec la paroi du puits. This rubber ring then expands radially and comes into contact with the wall of the well.
Le brevet US 7 571 765 est un exemple typique de ce genre de dispositif d'isolation hydraulique. US Pat. No. 7,571,765 is a typical example of this kind of hydraulic isolation device.
A l'usage, on se rend compte que ce type de dispositif ne permet pas d'étanchéifier correctement un puits présentant une section ovalisée.
De plus, on peut constater une fracturation de la roche en regard des dispositifs d'isolation. Les dispositifs d'isolation hydrauliques sont, de plus, sensibles aux variations de température. In use, it is realized that this type of device does not properly seal a well having an oval section. In addition, we can see a fracturing of the rock next to the isolation devices. Hydraulic isolation devices are, moreover, sensitive to temperature variations.
D'autres types de dispositifs peuvent être utilisés. Ainsi, les dispositifs d'isolation mécaniques (en anglais Other types of devices can be used. Thus, mechanical insulation devices (in English
"mechanical packers") ont un principe de fonctionnement proche de celui des dispositifs d'isolation hydrauliques, si ce n'est que la compression de l'anneau en caoutchouc est réalisée par un outil externe. "mechanical packers") have a principle of operation similar to that of hydraulic isolation devices, except that the compression of the rubber ring is performed by an external tool.
Par ailleurs, les dispositifs d'isolation gonflables (en anglais "inflatable packers") sont composés d'une membrane élastique gonflée par injection de liquide sous pression. Après activation, la pression est maintenue dans le dispositif d'étanchéité par des systèmes de clapets antiretour. In addition, the inflatable insulation devices (in English "inflatable packers") are composed of an elastic membrane inflated by injection of liquid under pressure. After activation, the pressure is maintained in the sealing device by check valve systems.
Les dispositifs d'isolation à base d'élastomère gonflable (en anglais "swellable packers") sont composés d'un polymère du genre caoutchouc qui gonfle au contact d'un type de fluide (huile, eau, etc.) selon les formulations. The insulating devices based on inflatable elastomer (in English "swellable packers") are composed of a polymer of the rubber type that swells in contact with a type of fluid (oil, water, etc.) according to the formulations.
L'activation de ces dispositifs est initiée par le contact avec le fluide. On comprend donc qu'il faut que le gonflement soit relativement lent pour éviter le blocage du tube lors de la descente dans le puits. En conséquence, il faut parfois attendre plusieurs semaines pour que l'isolation de la zone soit effective. The activation of these devices is initiated by the contact with the fluid. It is therefore understood that the swelling must be relatively slow to prevent blockage of the tube during the descent into the well. As a result, it may take several weeks for the insulation of the area to be effective.
D'autres types de dispositifs d'isolation sont ceux dits Other types of insulation devices are those said
« expansibles » (en anglais "expandable packers" ou « métal packers ») et sont composés d'une chemise métallique expansible qui est déformée par application de liquide sous pression (voir l'article SPE 22 858 "Analytical and Expérimental Evaluation of Expanded Métal Packers For Well"Expansibles" (in English "expandable packers" or "metal packers") and are composed of an expandable metal shirt which is deformed by application of liquid under pressure (see article SPE 22 858 "Analytical and Experimental Evaluation of Expanded Metal Packers For Well
Completion Services (D.S. Dreesen et al - 1991 ), US 6 640 893 etCompletion Services (D.S. Dreesen et al. - 1991), US 6,640,893 and
US 7 306 033). US 7,306,033).
Les dispositifs d'isolation expansibles en métal sont habituellement composés d'une chemise métallique ductile attachée et scellée à ses extrémités à la surface d'une conduite. L'intérieur de la conduite, d'une part, et l'anneau défini par la surface extérieure de la conduite et la surface intérieure de la chemise expansible, d'autre part, communiquent l'un avec l'autre. La chemise métallique est expansée radialement vers l'extérieur jusqu'à ce qu'elle soit en contact avec la paroi
du puits, en augmentant la pression dans la conduite, de manière à créer une barrière annulaire. Expansible metal insulation devices are usually composed of a ductile metal jacket attached and sealed at its ends to the surface of a pipe. The inside of the pipe, on the one hand, and the ring defined by the outer surface of the pipe and the inner surface of the expandable jacket, on the other hand, communicate with each other. The metal jacket is expanded radially outwardly until it contacts the wall well, by increasing the pressure in the pipe, so as to create an annular barrier.
Contrairement aux autres dispositifs d'isolation, dans cette technique, l'étanchéité ne repose pas sur un moyen élastomère seulement, dont l'efficacité au cours du temps et sous des conditions sévères est incertaine. De plus, la fracturation fait souvent usage de fluides à température ambiante externe alors que les dispositifs d'isolation sont placés à la température du puits. Unlike other insulation devices, in this technique, the seal does not rely on an elastomeric means only, whose effectiveness over time and under severe conditions is uncertain. In addition, fracturing often uses fluids at external ambient temperature while isolation devices are placed at the well temperature.
Or, les chemises expansibles en métal sont moins sensibles aux variations de température et plus particulièrement aux contractions thermiques. Le coefficient d'expansion thermique du métal est bien entendu inférieur à celui d'un élastomère. However, expansible metal folders are less sensitive to temperature variations and more particularly to thermal contractions. The coefficient of thermal expansion of the metal is of course lower than that of an elastomer.
Ces dispositifs d'isolation expansibles en métal combinent donc les avantages des dispositifs exposés plus haut. D'une part, comme les dispositifs d'isolation à base d'élastomère gonflable, leur design est simple et peu coûteux et, d'autre part, ils peuvent être activés à la demande comme des dispositifs d'isolation hydrauliques, peu après que la conduite ait été engagée dans le puits. These expandable metal insulation devices therefore combine the advantages of the devices discussed above. On the one hand, as the inflatable elastomer insulation devices, their design is simple and inexpensive and, on the other hand, they can be activated on demand as hydraulic isolation devices soon after the pipe was engaged in the well.
A titre purement illustratif est représentée à la figure 1 une portion de conduite apte à être engagée à l'intérieur d'un puits. Cette conduite 1 est représentée ici pourvue de deux dispositifs d'isolation 2 entre lesquels s'étend une portion de conduite 1 qui présente un ensemble d'ouvertures débouchantes 3. For purely illustrative purposes is shown in Figure 1 a portion of pipe capable of being engaged inside a well. This pipe 1 is represented here provided with two insulating devices 2 between which extends a pipe portion 1 which has a set of open openings 3.
Cette conduite 1 est représentée une nouvelle fois en partie basse de la figure, les dispositifs d'isolation 2 occupant alors une position expansée. This pipe 1 is shown again in the lower part of the figure, the insulation devices 2 then occupying an expanded position.
La flèche v représente la circulation de fluide à l'intérieur de la conduite, en vue d'une fracturation, c'est-à-dire d'amont en aval. The arrow v represents the flow of fluid inside the pipe, for fracturing, that is to say from upstream to downstream.
La figure 2 est une vue simplifiée en coupe d'une conduite telle que celle qui apparaît à la figure 1 qui s'étend dans un puits préalablement préparé. Figure 2 is a simplified sectional view of a pipe such as that shown in Figure 1 which extends into a previously prepared well.
La description de cette figure a simplement pour but d'expliquer comment on utilise jusqu'ici des conduites pourvues de tels dispositifs d'isolation de zone. The description of this figure is merely intended to explain how hitherto pipes with such zone isolation devices are used.
Dans le sol S a été préalablement creusé un puits A dont la paroi est référencée Ai .
A l'intérieur de ce puits a été mise en place une conduite 1 qui est représentée partiellement ici. In the soil S was previously dug a well A whose wall is referenced Ai. Inside this well has been set up a pipe 1 which is shown partially here.
Le long de sa paroi, cette conduite présente, à distance régulière, des dispositifs d'isolation 2. Ici, seuls deux dispositifs 2 dénommés N et N-1 sont représentés dans un seul souci de simplification. Along its wall, this pipe has, at regular distance, isolation devices 2. Here, only two devices 2 called N and N-1 are shown for the sake of simplification.
Dans la pratique, il existe un nombre supérieur et très important de tels dispositifs le long de la conduite. De manière connue, chaque dispositif est constitué d'une chemise métallique tubulaire 20 dont les extrémités opposées sont rendues solidaires, directement ou indirectement de la face externe de la conduite par des bagues ou jupes de renfort 21 . In practice, there is a greater and very large number of such devices along the pipe. In known manner, each device consists of a tubular metal jacket 20 whose opposite ends are secured, directly or indirectly to the outer face of the pipe by reinforcing rings or skirts 21.
Une pression P0 règne dans le puits. A pressure P 0 prevails in the well.
A l'origine, les chemises métalliques 20, non déformées, s'étendent sensiblement dans le prolongement des bagues 21 . Originally, the metal sleeves 20, not deformed, extend substantially in the extension of the rings 21.
L'extrémité distale de la conduite comporte de préférence un port non représenté qui est initialement ouvert lors de la descente de la conduite dans le puits de manière à permettre une circulation de fluide d'amont en aval à la pression P0. Ce port est préférentiellement obturé à l'aide d'une bille qui se place dans et obture ce port, ce qui permet d'augmenter la pression dans la conduite. The distal end of the pipe preferably comprises a not shown port which is initially open during the descent of the pipe in the well so as to allow upstream fluid flow downstream at the pressure P 0 . This port is preferably closed with a ball that is placed in and closes this port, which increases the pressure in the pipe.
Un premier fluide sous pression Pi supérieure à Po est alors envoyé à l'intérieur de la conduite et celui-ci s'introduit par des ouvertures 10 disposées en regard des chemises 20 sur l'ensemble de la conduite de manière à faire se déformer les chemises métalliques et adopter la position de la figure 2 dans laquelle leur partie intermédiaire centrale est appliquée contre la paroi Ai du puits. A first pressurized fluid Pi greater than Po is then sent inside the pipe and the latter is introduced through openings 10 arranged opposite the liners 20 on the whole of the pipe so as to deform the metal jackets and adopt the position of Figure 2 in which their central intermediate portion is applied against the wall Ai of the well.
Bien entendu, le matériau de la chemise et la pression sont choisies de manière à ce que le métal se déforme au-delà de sa limite élastique. Of course, the material of the jacket and the pressure are chosen so that the metal deforms beyond its elastic limit.
Un dispositif non représenté permet de libérer une ouverture située à l'extrémité distale de la conduite lorsque la pression Pi est légèrement augmentée. La pression au niveau de l'ouverture passe de Pi à Po et une circulation est alors possible dans la conduite de l'amont vers l'aval du puits.
Ensuite, une autre bille 5 est lancée à l'intérieur de la conduite et vient se placer dans un siège coulissant 4 situé sensiblement à une mi- distance entre les deux dispositifs d'isolation N et N-1 . A device not shown allows to release an opening at the distal end of the pipe when the pressure Pi is slightly increased. The pressure at the opening changes from Pi to Po and circulation is then possible in the pipe from upstream to downstream of the well. Then, another ball 5 is launched inside the pipe and is placed in a sliding seat 4 located substantially at a mid-distance between the two insulating devices N and N-1.
Originellement, le siège 4 se situe juste en regard des ouvertures 3 précitées et les obture. Sous l'effet du déplacement de la bille, le siège 4 est obturé et se déplace, dégageant ainsi les ouvertures 3. On injecte alors à l'intérieur de la conduite 1 un fluide de fracturation sous très haute pression. Originally, the seat 4 is located just opposite the aforementioned openings 3 and closes. Under the effect of the displacement of the ball, the seat 4 is closed and moves, thus releasing the openings 3. Then is injected into the pipe 1 a fracturing fluid under very high pressure.
Ce fluide, sous pression P2, s'introduit dans le dispositif N ainsi que dans l'espace annulaire B qui sépare les dispositifs N et N-1 . This fluid, under pressure P 2 , is introduced into the device N and into the annular space B which separates the devices N and N-1.
En revanche, la pression qui règne à l'intérieur du dispositif N- 1 revient à la pression initiale du puits, c'est-à-dire à la pression P0. On the other hand, the pressure that prevails inside the device N-1 returns to the initial pressure of the well, that is to say to the pressure P 0 .
Dans ces conditions, la différence de pression qui existe entre l'espace annulaire B et le dispositif N-1 expose la chemise 2 du dispositif N à de fortes contraintes qui l'amènent, dans certaines régions, à s'effondrer partiellement. On comprend que ceci constitue une source de fuites de pression de sorte que la zone B à fracturer n'est plus étanche aux fluides et aux gaz. Under these conditions, the difference in pressure that exists between the annular space B and the device N-1 exposes the sleeve 2 of the device N to high stresses which cause it, in some regions, to partially collapse. It is understood that this constitutes a source of pressure leaks so that the zone B to be fractured is no longer impervious to fluids and gases.
Des systèmes ont été ajoutés à ce genre d'installation pour résister à l'effondrement. Un exemple est donné dans le document WO 201 1/042 492. Une autre option est d'utiliser cette différence de pression grâce à des valves pour maintenir une pression interne dans le dispositif après expansion ou pour "capturer" cette différence de pression (voir US7591321 , US 2006/004 801 et US 201 1/02 66 004). Toutefois, l'ensemble de ces solutions se traduit par un accroissement de la complexité du matériel et un risque de dysfonctionnement. Systems have been added to this type of installation to resist collapse. An example is given in WO 201 1/042 492. Another option is to use this pressure difference through valves to maintain an internal pressure in the device after expansion or to "capture" this pressure difference (see US7591321, US 2006/004801 and US 201 1/0266004). However, all of these solutions result in an increase in the complexity of the equipment and a risk of malfunction.
On connaît par le document EP-A-1 624 152 un dispositif dans lequel chaque chemise qui équipe le tube porte une "peau" qui s'étend seulement sur une partie de la chemise. Entre la chemise et la peau est présent un matériau de scellage. Document EP-A-1 624 152 discloses a device in which each jacket which equips the tube bears a "skin" which extends only over part of the jacket. Between the shirt and the skin is present a sealing material.
La présente invention a pour but de pallier ces difficultés. The present invention aims to overcome these difficulties.
Plus spécifiquement, elle a trait à un dispositif d'isolation d'une partie du puits qui est capable de résister à de fortes pressions différentielles tout en conservant une haute capacité d'étanchéité.
De plus, le système selon l'invention présente une pression d'expansion inférieure à la pression de fracturation et n'est pas sensible aux changements de température. More specifically, it relates to a device for isolating a portion of the well which is capable of withstanding high differential pressures while maintaining a high sealing capacity. In addition, the system according to the invention has an expansion pressure lower than the fracturing pressure and is not sensitive to changes in temperature.
Ainsi, ce dispositif d'isolation d'une partie d'un puits qui comprend une conduite pourvue, le long de sa face externe, d'au moins une chemise métallique tubulaire - dite "première chemise externe" - dont les extrémités opposées sont solidaires, directement ou indirectement, de ladite face externe de la conduite, cette conduite, la première chemise externe et ses extrémités délimitant ensemble un espace annulaire, la paroi de ladite conduite présentant au moins une ouverture qui la fait communiquer avec ledit espace, cette chemise étant susceptible de s'expanser et de venir, sur une partie intermédiaire de sa longueur, s'appliquer de manière étanche contre le puits, Thus, this device for isolating a portion of a well which comprises a pipe provided, along its outer face, with at least one tubular metal jacket - the so-called "first outer jacket" - whose opposite ends are integral. , directly or indirectly, of said outer face of the pipe, this pipe, the first outer jacket and its ends defining together an annular space, the wall of said pipe having at least one opening which makes it communicate with said space, this jacket being likely to expand and to come, on an intermediate part of its length, to apply sealingly against the well,
se caractérise par le fait qu'il comporte : is characterized by the fact that it comprises:
- d'une part, une seconde chemise également expansible - dite "seconde chemise interne" - qui s'étend entre ladite conduite et la première chemise, ses extrémités étant également solidaires, directement ou indirectement, de la face externe de ladite conduite tout en étant prises en sandwich entre les extrémités de la première chemise et la face externe de la conduite et, on the one hand, a second sleeve also expandable - called "second inner liner" - which extends between said duct and the first liner, its ends being also secured, directly or indirectly, to the outer face of said duct while being sandwiched between the ends of the first liner and the outer face of the pipe and,
- d'autre part, au moins un passage de communication entre l'extérieur de la première chemise et ledit espace, on the other hand, at least one communication passage between the outside of the first liner and the said space,
- ledit espace étant exempt de matériau solide ou de scellage, ou d'un liquide ou une pâte apte à se modifier. - Said space being free of solid material or sealing, or a liquid or a paste adapted to change.
Grâce à la solution selon l'invention, on parvient à faire régner à l'intérieur des dispositifs d'isolation une pression sensiblement égale à celle qui permet la fracturation de la roche, sans souci d'effondrement et de fuite d'étanchéité. De plus, la solution selon l'invention ne remet pas en cause la structure générale des conduites équipées de dispositifs d'isolation connus. Thanks to the solution according to the invention, it is possible to provide inside the insulation devices a pressure substantially equal to that which allows the fracturing of the rock, without worry of collapse and leakage. In addition, the solution according to the invention does not call into question the general structure of pipes equipped with known insulation devices.
Selon d'autres caractéristiques avantageuses et non limitatives : According to other advantageous and nonlimiting features:
- ledit passage de communication consiste en au moins un orifice que présente la paroi de ladite première chemise métallique et qui débouche dans la partie dudit espace qui s'étend entre les deux chemises ;
- ledit passage de communication consiste en au moins un orifice situé entre deux des extrémités en regard des dites chemises et qui débouche dans la partie dudit espace entre les deux chemises ; said communication passage consists of at least one orifice that presents the wall of said first metal jacket and which opens into the part of said space which extends between the two shirts; said communication passage consists of at least one orifice situated between two ends facing said folders and which opens into the part of said space between the two shirts;
- ladite ouverture que présente la paroi de la conduite débouche dans la partie dudit espace située entre la conduite et la seconde chemise ; - said opening that presents the wall of the conduit opens into the portion of said space between the pipe and the second sleeve;
- ledit passage de communication entre l'extérieur de la première chemise et ledit espace consiste en au moins un orifice situé entre la conduite et l'extrémité en regard de ladite seconde chemise et débouche dans la partie dudit espace situé entre la conduite et la chemise intérieure ; said communication passage between the outside of the first jacket and said space consists of at least one orifice situated between the pipe and the end facing said second jacket and opens into the part of said space situated between the pipe and the jacket; interior;
- ladite ouverture que présente la paroi de la conduite débouche dans la partie dudit espace qui s'étend entre les deux chemises ; said opening which presents the wall of the pipe opens into the part of said space which extends between the two shirts;
- ladite ouverture de la conduite communique avec ledit espace via un intervalle annulaire qui s'étend entre les premières extrémités en regard de la première chemise et de la seconde chemise ; said opening of the duct communicates with said space via an annular gap which extends between the first ends facing the first liner and the second liner;
- ladite seconde chemise est en un matériau apte à présenter une déformation plastique, tel que du métal et/ou en matériau élastiquement déformable tel que du caoutchouc ou un matériau à base de caoutchouc ; said second jacket is made of a material capable of presenting a plastic deformation, such as metal and / or of elastically deformable material such as rubber or a rubber-based material;
- la face externe de la chemise est pourvue, au moins dans ladite partie intermédiaire, d'un revêtement d'étanchéité élastiquement déformable, par exemple en caoutchouc ; - The outer face of the liner is provided, at least in said intermediate portion, with an elastically deformable sealing coating, for example rubber;
- qu'il comporte une bague non déformable qui enveloppe, sur une fraction de sa longueur, ladite première chemise et qui contrarie au moins partiellement son expansion et celle de la seconde chemise ; - It comprises a non-deformable ring which wraps, over a fraction of its length, said first sleeve and at least partially opposes its expansion and that of the second sleeve;
- la face externe de la conduite comporte, en regard de ladite au moins une ouverture de communication entre la conduite et ledit espace, un revêtement élastiquement déformable, the external face of the pipe comprises, facing said at least one opening of communication between the pipe and said space, an elastically deformable coating,
- ladite au moins une ouverture s'étend en regard d'une jupe de solidarisation de la première chemise à ladite conduite ; said at least one opening extends facing a skirt for securing the first liner to said duct;
- ladite au moins une ouverture s'étend en regard de ladite bague non déformable ; said at least one opening extends opposite said non-deformable ring;
- au moins une extrémité desdites chemises est apte à se déplacer longitudinalement par rapport à la conduite. - At least one end of said shirts is adapted to move longitudinally relative to the pipe.
D'autres caractéristiques et avantages de la présente invention apparaîtront à la lecture détaillée qui va suivre de certains modes
de réalisation préférentiels. Cette description sera faite en référence aux dessins annexés dans lesquels : Other features and advantages of the present invention will appear on the following detailed reading of certain modes. preferred embodiments. This description will be made with reference to the appended drawings in which:
- la figure 1 représente, comme indiqué plus haut, une portion de conduite selon l'état de la technique et étant que entendu que, visuellement, celle de la présente invention présente sensiblement le même aspect ; - Figure 1 shows, as indicated above, a portion of pipe according to the prior art and being understood that, visually, that of the present invention has substantially the same appearance;
- la figure 2 est, comme expliqué plus haut, une vue en coupe d'une partie d'une conduite destinée à illustrer la méthode utilisée jusqu'ici ; - Figure 2 is, as explained above, a sectional view of a portion of a pipe to illustrate the method used so far;
- la figure 3 est une demi vue, en coupe longitudinale, et extrêmement simplifiée, d'un premier mode de réalisation de l'invention ; - Figure 3 is a half view, in longitudinal section, and extremely simplified, a first embodiment of the invention;
- la figure 4 est une vue plus détaillée en coupe, selon un plan longitudinal du mode de réalisation de la figure 3 ; - Figure 4 is a more detailed sectional view along a longitudinal plane of the embodiment of Figure 3;
- la figure 5 est une vue agrandie de la partie de la figure 4 repérée sous la forme d'un rectangle ; FIG. 5 is an enlarged view of the portion of FIG. 4 marked in the form of a rectangle;
- les figures 6, 7 et 8 sont des vues de la portion de conduite dans différents états qui sont fonction de la pression et de la nature des fluides en circulation dans la conduite ; - Figures 6, 7 and 8 are views of the pipe portion in different states that are a function of the pressure and the nature of the fluids circulating in the pipe;
- les figures 9 et 10 sont des vues analogue à la figure 3, d'autres modes de réalisation ; - Figures 9 and 10 are views similar to Figure 3, other embodiments;
- la figure 1 1 est une vue plus détaillée, en coupe longitudinale, du mode de réalisation de la figure 10 ; - Figure 1 1 is a more detailed view, in longitudinal section, of the embodiment of Figure 10;
- les figures 12 et 14 sont des vues des extrémités opposées de la chemise métallique du mode de réalisation de la figure 10 ; Figures 12 and 14 are views of the opposite ends of the metal jacket of the embodiment of Figure 10;
- la figure 13 est une vue d'une autre étape relative à l'utilisation de cette conduite ; FIG. 13 is a view of another step relating to the use of this pipe;
- la figure 15 est une vue en trois dimensions d'un autre mode de réalisation particulier de la conduite ; - Figure 15 is a three-dimensional view of another particular embodiment of the pipe;
- les figures 16 et 17 représentent d'une part une portion de cette conduite de vue en coupe longitudinale ainsi que, respectivement, une vue de détail de cette portion, à savoir celle qui est entourée par un ovale à la figure 15. FIGS. 16 and 17 show, on the one hand, a portion of this longitudinal section view pipe and, respectively, a detail view of this portion, namely that which is surrounded by an oval in FIG.
- enfin, la figure 18 est une vue d'une variante du mode de réalisation de la figure 17. - Finally, Figure 18 is a view of a variant of the embodiment of Figure 17.
En référence aux figures 3 et 4 (sur lesquelles les mêmes référence numériques désignent les mêmes objets), on a représenté seulement une portion de conduite 1 en place dans un puits A, et l'on a
particulièrement représenté la portion de conduite qui est pourvue du dispositif d'isolation référencé N-1 à la figure 2. With reference to FIGS. 3 and 4 (on which the same reference numerals designate the same objects), only a portion of line 1 has been shown in place in a well A, and particularly shown the pipe portion which is provided with the isolation device referenced N-1 in Figure 2.
Il est représenté expansé à la figure 3 et non expansé à la figure 4. It is shown expanded in Figure 3 and not expanded in Figure 4.
Tel que représenté à la figure 3, le dispositif isole une partie annulaire du puits où règne une haute pression HP (ci-après désignée P2) d'une autre partie annulaire, située en aval, où règne une basse pression BP (ci-après désignée P0). As shown in FIG. 3, the device isolates an annular portion of the well where there is a high pressure HP (hereinafter referred to as P2) from another annular portion, located downstream, where a low BP pressure reigns (hereinafter designated P 0 ).
Plus particulièrement en référence à la figure 4, cette conduite tubulaire est pourvue, ainsi que cela est bien connu, le long de sa face externe d'une chemise métallique 20 dont les extrémités opposées X20 sont solidaires de la face externe de cette conduite. More particularly with reference to Figure 4, this pipe is provided, as is well known, along its outer face of a metal jacket 20 whose opposite ends X20 are integral with the outer face of this pipe.
Plus précisément, ces extrémités sont enserrées à l'intérieur de bagues annulaires de renfort référencées 21 sur la figure 4. More specifically, these ends are clamped inside annular reinforcing rings referenced 21 in FIG.
En consultant plus particulièrement la figure 5, on constate que la face externe de la chemise métallique tubulaire 20 est pourvue d'un revêtement crénelé 201 , par exemple en caoutchouc, apte à augmenter l'étanchéité de la chemise quand celle-ci est déformée et plaquée contre le puits A. With particular reference to FIG. 5, it can be seen that the external face of the tubular metal jacket 20 is provided with a crenellated coating 201, for example made of rubber, able to increase the tightness of the liner when it is deformed and plated against well A.
On note, plus particulièrement aux figures 3 et 5 qu'il existe au moins un orifice 200 qui traverse de part en part l'épaisseur de la paroi de la chemise 20. On en expliquera plus loin la fonction. It is noted, more particularly in Figures 3 and 5 that there is at least one orifice 200 which passes right through the thickness of the wall of the jacket 20. The function will be explained later.
Selon une caractéristique particulière de l'invention, on a ici affaire à une seconde chemise 22, également expansible, dont les extrémités X22 sont prises en sandwich entre celles de la première chemise 20 et la face externe de la conduite 1 , comme cela est montré aux figures 4 et 5. According to a particular feature of the invention, this is a second sleeve 22, also expandable, whose X22 ends are sandwiched between those of the first sleeve 20 and the outer face of the pipe 1, as shown Figures 4 and 5.
Dans le cas représenté ici, les deux chemises sont en matériau métallique ductile. Toutefois, la seconde chemise interne 22 pourrait être dans un autre matériau expansible tel qu'un matériau élastiquement déformable à base de caoutchouc. In the case shown here, the two shirts are made of ductile metallic material. However, the second inner liner 22 could be in another expandable material such as an elastically deformable rubber material.
A la figure 5, on note que les extrémités X22 de la seconde chemise interne 22 sont logées sous une partie de la paroi de la première chemise externe 20, celle-ci présentant longitudinalement une longueur supérieure.
Ces chemises sont fixées à la paroi de la conduite 1 par des soudures. In Figure 5, it is noted that the ends X22 of the second inner sleeve 22 are housed under a portion of the wall of the first outer sleeve 20, the latter longitudinally having a greater length. These shirts are fixed to the wall of the pipe 1 by welds.
Il en va de même des deux parties 210 et 212 qui constituent respectivement le corps et l'extrémité de la jupe ou bague de renfort 21 . The same is true of the two parts 210 and 212 which respectively constitute the body and the end of the skirt or reinforcing ring 21.
Des moyens de fixation autres que des soudures peuvent bien entendu être utilisés. Fastening means other than welds can of course be used.
Nous allons maintenant décrire, plus particulièrement en référence aux figures 6 à 8, comment on utilise un tel dispositif d'isolation d'une partie de puits, We will now describe, more particularly with reference to FIGS. 6 to 8, how such a device for isolating a portion of a well is used,
A la figure 6, on se situe dans une situation dans laquelle les ouvertures 3 de la conduite 1 sont fermées et on y injecte, dans le sens de la flèche v un fluide sous une pression prédéterminée Pi. Cette pression est calculée de manière à permettre la déformation de la première chemise externe 20 au-delà de sa limite élastique. Elle est par exemple de l'ordre de 550 Bar (environ 8000psi). In FIG. 6, one is in a situation in which the openings 3 of the pipe 1 are closed and in the direction of the arrow v a fluid is injected under a predetermined pressure Pi. This pressure is calculated so as to allow the deformation of the first outer sleeve 20 beyond its elastic limit. It is for example of the order of 550 bar (about 8000psi).
Ce faisant, le fluide rentre à l'intérieur de l'espace E qui est délimité par la paroi de la conduite 1 , la première chemise externe 20 et ses extrémités X20. In doing so, the fluid enters inside the space E which is delimited by the wall of the pipe 1, the first outer jacket 20 and its ends X20.
Cet espace E est divisé en deux parties, en l'occurrence un espace E1 délimité par la conduite 1 et la seconde chemise 22, et un espace E2 délimité par les deux chemises. This space E is divided into two parts, in this case a space E1 delimited by the pipe 1 and the second jacket 22, and a space E 2 delimited by the two shirts.
En tout état de cause, selon l'invention, l'espace E (c'est-à- dire les espaces E1 et E2) ne sont pas prévus pour recevoir et être rempli d'un matériau solide, ou d'un matériau liquide ou pâteux apte à se solidifier, ou encore avec un matériau de scellage. In any event, according to the invention, the space E (that is to say the areas E1 and E2) are not adapted to receive and be filled with a solid material or of a material liquid or pasty able to solidify, or with a sealing material.
La seconde chemise 22 présente une pression d'expansion qui est inférieure ou égale à Pi, c'est-à-dire qu'elle est apte à s'expanser sous l'effet d'une pression inférieure ou égale à Pi. The second jacket 22 has an expansion pressure which is less than or equal to Pi, that is to say that it is able to expand under the effect of a pressure less than or equal to Pi.
Du fait que la seconde chemise interne 22 est prise en sandwich entre la première chemise 20 et la conduite 1 , la seconde chemise 22 se déforme et vient se plaquer contre la face interne de la première chemise 20. Because the second inner liner 22 is sandwiched between the first liner 20 and the pipe 1, the second liner 22 deforms and presses against the inner face of the first liner 20.
Sous l'effet de la pression P1 , les chemises 20 et 22 se déforment donc simultanément radialement vers l'extérieur, comme le montre la figure 6, et la première chemise 20 se plaque contre le puits.
Après expansion des chemises, la pression est diminuée jusqu'à un retour à Po. Cette pression P0 s'applique donc dans l'espace Ei situé entre la conduite 1 et la seconde chemise intérieure 22. A cet instant Ei est sensiblement égal à E, à l'épaisseur de la seconde chemise 22 près. Under the effect of the pressure P1, the shirts 20 and 22 thus deform simultaneously radially outwards, as shown in Figure 6, and the first sleeve 20 is pressed against the well. After expansion of the jackets, the pressure is decreased until a return to Po. This pressure P 0 therefore applies in the space Ei situated between the pipe 1 and the second inner jacket 22. At this instant Ei is substantially equal to E, to the thickness of the second jacket 22 near.
C'est donc la situation de la figure 6. This is the situation of Figure 6.
Dans une étape ultérieure, on dégage les ouvertures 3 et on fait circuler dans la conduite 1 un fluide sous une pression de fracturation P2, supérieure à Po (et à Pi). In a subsequent step, the openings 3 are disengaged and a fluid is circulated in line 1 under a fracturing pressure P 2 greater than Po (and Pi).
Ce fluide vient donc occuper l'espace annulaire B qui sépare les deux dispositifs d'isolation voisins et, comme le montre la figure 7, la pression P2 qui y règne est communiquée à l'intérieur de l'espace E par les orifices 200 que présente la chemise extérieure 20. This fluid therefore occupies the annular space B which separates the two adjacent insulation devices and, as shown in FIG. 7, the pressure P 2 which prevails therein is communicated inside the space E through the orifices 200. that presents the outer jacket 20.
Ainsi, l'espace Ei qui est situé entre la conduite 1 et la deuxième chemise 22 voit son volume réduire graduellement puisque ladite pression est suffisante pour déformer cette seconde chemise et la plaquer progressivement contre la conduite 1 . On passe alors progressivement de la situation de la figure 6 à celle de la figure 8. Thus, the space Ei which is situated between the pipe 1 and the second jacket 22 is gradually reduced in volume since the said pressure is sufficient to deform the second jacket and progressively press against the pipe 1. We then gradually move from the situation of Figure 6 to that of Figure 8.
Ce faisant, on obtient, de part et d'autre de la première chemise externe 20, la même pression équilibrée P2. Dans ces conditions, l'étanchéité est conservée et le risque d'effondrement de la chemise n'existe plus. In doing so, one obtains, on either side of the first outer jacket 20, the same balanced pressure P 2 . Under these conditions, the seal is maintained and the risk of collapse of the shirt no longer exists.
Cette solution est particulièrement avantageuse puisqu'aucun organe mécanique en mouvement n'est nécessaire. Il suffit seulement de prévoir une seconde chemise 22 ainsi que des orifices 200 dans la première chemise 20. This solution is particularly advantageous since no moving mechanical member is necessary. It suffices only to provide a second jacket 22 and orifices 200 in the first jacket 20.
Dans le mode de réalisation illustré très schématiquement à la figure 9, on a affaire à sensiblement la même structure que celle décrite précédemment si ce n'est que l'orifice 200 (ou les orifices) n'est pas situé dans la paroi de la chemise 20, mais entre l'une des deux extrémités en regard des chemises 20 et 22. In the embodiment illustrated very schematically in FIG. 9, we are dealing with substantially the same structure as that described previously except that the orifice 200 (or the orifices) is not located in the wall of the 20, but between one of the two ends facing the shirts 20 and 22.
Toutefois, le fonctionnement décrit plus haut vaut également pour ce mode de réalisation, si ce n'est que la pression P2 s'engage entre les deux chemises par le(s) orifice(s) précité(s) situés entre les extrémités des deux chemises. However, the operation described above is also valid for this embodiment, except that the pressure P 2 engages between the two jackets by the (these) orifice (s) above (s) located between the ends of two shirts.
Dans le mode de réalisation illustré aux figures 10 à 14, on a aussi affaire à une structure à deux chemises 20 et 22.
Toutefois, la chemise externe 20 est dépourvue d'orifices 200. En revanche, les ouvertures 10 qui font communiquer la conduite 1 avec l'espace E précité communiquent avec ce dernier par un intervalle annulaire ji qui s'étend entre la première extrémité de la première chemise 20 et la première extrémité de la seconde chemise 22. Ceci est particulièrement visible aux figures 10 et 12. In the embodiment illustrated in FIGS. 10 to 14, there is also a two-sleeve structure 20 and 22. However, the outer jacket 20 is devoid of openings 200. On the other hand, the openings 10 which make the pipe 1 communicate with the above-mentioned space E communicate with the latter by an annular gap j which extends between the first end of the first sleeve 20 and the first end of the second sleeve 22. This is particularly visible in FIGS. 10 and 12.
Pour ce faire, la chemise 20 a été préalablement déformée localement pour libérer un tel intervalle. To do this, the jacket 20 has been previously locally deformed to release such an interval.
Sous l'effet de l'introduction d'un premier fluide à pression Pi dans la conduite, les ouvertures 3 étant fermées, le fluide s'infiltre par les ouvertures 10 et s'engouffre dans l'intervalle annulaire ji pour occuper l'espace E2 situé entre les deux chemises 20 et 22. On se situe alors dans la configuration de la figure 1 1 . Under the effect of the introduction of a first pressure fluid Pi into the pipe, the openings 3 being closed, the fluid infiltrates through the openings 10 and engulfs in the annular gap ji to occupy the space E 2 located between the two shirts 20 and 22. It is then in the configuration of Figure 1 1.
En se reportant à la figure 14, on constate, à l'autre extrémité des chemises, que la bague ou jupe de renfort 21 n'est pas étanche, et présente à cet effet une ouverture 213. En revanche, les extrémités correspondantes X20 et X22 des deux chemises 20 et 22 sont jointives et soudées au corps 210 de la jupe 21 1 l'une à l'autre. Il demeure toutefois un intervalle j2 entre la face interne de la deuxième chemise 22 et la paroi de la conduite 1 . Referring to FIG. 14, it can be seen at the other end of the shirts that the reinforcing ring or skirt 21 is not waterproof, and for this purpose has an opening 213. On the other hand, the corresponding ends X 2 0 and X 22 of the two shirts 20 and 22 are joined and welded to the body 210 of the skirt 21 1 to one another. There remains however an interval j 2 between the internal face of the second sleeve 22 and the wall of the pipe 1.
Dans ces conditions, le fluide de pression inférieure ou égale à P2 peut s'engouffrer dans l'intervalle j2 et venir déformer la deuxième chemise 22 qui s'applique alors intimement contre la première chemise 20. Under these conditions, the pressure fluid less than or equal to P 2 may rush into the gap 2 and deform the second sleeve 22 which then applies intimately against the first sleeve 20.
On se situe alors dans la configuration de la figure 13 où il existe une pression d'équilibre P2 à l'intérieur et à l'extérieur du dispositif d'isolation. It is then in the configuration of Figure 13 where there is an equilibrium pressure P 2 inside and outside the isolation device.
Ainsi, tout risque d'effondrement même partiel du dispositif 2 est garanti. Thus, any risk of even partial collapse of the device 2 is guaranteed.
A la figure 15 est représentée une variante d'une conduite dont les deux dispositifs d'isolation 2 sont pourvues chacune d'une bague 6 non déformable, qui contrarie partiellement et localement l'expansion des chemises 20 et 22. In Figure 15 is shown a variant of a pipe whose two insulating devices 2 are each provided with a non-deformable ring 6, which partially and locally thwart the expansion of the shirts 20 and 22.
Comme le montre plus particulièrement la vue en coupe de la figure 16, cette bague 6 se situe en regard de la zone où la conduite est pourvue des ouvertures 10 de communication entre l'intérieur de la conduite 1 et l'espace E.
Conformément à une caractéristique avantageuse de la présente invention, la face externe de la conduite 1 comporte, un revêtement élastique déformable 7, par exemple en caoutchouc qui recouvre les ouvertures 10. As is more particularly shown in sectional view of FIG. 16, this ring 6 is located opposite the zone where the pipe is provided with communication openings 10 between the inside of the pipe 1 and the space E. According to an advantageous characteristic of the present invention, the outer face of the pipe 1 comprises a deformable elastic coating 7, for example made of rubber which covers the openings 10.
II peut s'agir d'une seule et même pièce tubulaire qui recouvre l'ensemble des ouvertures 10 ou de plusieurs pièces différentes recouvrant chacune une ouverture. It may be a single tubular piece that covers all the openings 10 or several different parts each covering an opening.
Ce revêtement n'est rattaché qu'en certains points à la chemise, par exemple par collage. Ainsi, lorsqu'on a affaire à un flux de pression dirigé des ouvertures 10 en direction du revêtement 7, celui-ci laisse s'échapper la pression dans les régions où il n'est pas rattaché à la conduite 1 . This coating is attached in certain points to the shirt, for example by gluing. Thus, when there is a flow of pressure directed openings 10 towards the coating 7, it allows the pressure to escape in the regions where it is not attached to the pipe 1.
La chemise extérieure 20 présentée ici est du même type que celle des figures 3 et suivantes, de sorte qu'elle comporte au moins un orifice traversant 200. The outer jacket 20 shown here is of the same type as that of Figures 3 and following, so that it comprises at least one through hole 200.
Ainsi que nous l'avons vu plus haut, lorsque la pression P2 envahit l'espace E2, il se produit un effondrement de la chemise 22. As we have seen above, when the pressure P 2 invades the space E 2 , there is a collapse of the jacket 22.
Lors de cet effondrement, des plis générés dans le matériau même de la chemise peuvent constituer autant de zones mécaniquement fragiles, voire sources de fuites. During this collapse, folds generated in the material itself of the shirt can be as many mechanically fragile areas, even sources of leaks.
Or, si le dispositif selon l'invention est amené à être réutilisé plusieurs fois, les phases d'expansion et d'effondrement de la chemise 22 risquent de la rendre défectueuse. However, if the device according to the invention is made to be reused several times, the expansion and collapse phases of the sleeve 22 may make it defective.
Dans le mode de réalisation de la figure 18, les ouvertures 10 et leur revêtement associé 7 sont situés dans la région des extrémités des chemises 20 et 22. Ainsi, dans cette région et sous l'effet de P2, la chemise 22 diminue légèrement de diamètre et vient exercer une pression sur le revêtement 7, obturant ainsi les ouvertures 10. In the embodiment of Figure 18, the openings 10 and their associated coating 7 are located in the region of the ends of the shirts 20 and 22. Thus, in this region and under the effect of P 2 , the shirt 22 decreases slightly of diameter and comes to exert a pressure on the coating 7, thus closing the openings 10.
La pression P2 est alors appliquée dans l'espace Ei ce qui limite encore plus le risque d'effondrement.
The pressure P 2 is then applied in the space Ei which further limits the risk of collapse.
Claims
1. Dispositif d'isolation d'une partie d'un puits (A) qui comprend une conduite (1 ) pourvue, le long de sa face externe, d'au moins une chemise métallique tubulaire (20) - dite "première chemise externe" - dont les extrémités opposées (X20) sont solidaires, directement ou indirectement, de ladite face externe de la conduite (1 ), cette conduite, la première chemise externe (20) et ses extrémités (X20) délimitant ensemble un espace annulaire (E), la paroi de ladite conduite (1 ) présentant au moins une ouverture (10) qui la fait communiquer avec ledit espace (E), cette chemise étant susceptible de s'expanser et de venir, sur une partie intermédiaire de sa longueur, s'appliquer de manière étanche contre le puits (A), 1. Device for isolating a portion of a well (A) which comprises a pipe (1) provided, along its outer face, with at least one tubular metal jacket (20) - called "first outer jacket whose opposite ends (X20) are integral, directly or indirectly, with said outer face of the pipe (1), this pipe, the first outer jacket (20) and its ends (X20) delimiting together an annular space (E ), the wall of said pipe (1) having at least one opening (10) which makes it communicate with said space (E), this jacket being able to expand and to come, on an intermediate portion of its length, s apply tightly against the well (A),
caractérisé par le fait qu'il comporte : characterized by the fact that it comprises:
- d'une part, une seconde chemise (22) également expansible - dite "seconde chemise interne" - qui s'étend entre ladite conduite (1 ) et la première chemise (20), ses extrémités (X22) étant également solidaires, directement ou indirectement, de la face externe de ladite conduite (1 ) tout en étant prises en sandwich entre les extrémités de la première chemise (20) et la face externe de la conduite (1 ) et, - On the one hand, a second sleeve (22) also expandable - called "second inner jacket" - which extends between said pipe (1) and the first sleeve (20), its ends (X22) being also integral, directly or indirectly, the outer face of said pipe (1) while being sandwiched between the ends of the first jacket (20) and the outer face of the pipe (1) and,
- d'autre part, au moins un passage (200, 2) de communication entre l'extérieur de la première chemise (20) et ledit espace - on the other hand, at least one passage (200, 2) of communication between the outside of the first jacket (20) and said space
(E), (E),
- ledit espace (E) étant exempt de matériau solide ou de scellage, ou d'un liquide ou une pâte apte à se solidifier. - Said space (E) being free of solid material or sealing, or a liquid or a paste capable of solidifying.
2. Dispositif selon la revendication 1 , caractérisé par le fait que ledit passage de communication consiste en au moins un orifice (200) que présente la paroi de ladite première chemise métallique (20) et qui débouche dans la partie (E2) dudit espace (E) qui s'étend entre les deux chemises (20, 22). 2. Device according to claim 1, characterized in that said communication passage consists of at least one orifice (200) that has the wall of said first metal sleeve (20) and which opens into the portion (E 2 ) of said space (E) extending between the two shirts (20, 22).
3. Dispositif selon la revendication 1 , caractérisé par le fait que ledit passage de communication consiste en au moins un orifice (200) situé entre deux des extrémités (X20, X22) en regard des dites chemises (20, 22) et qui débouche dans la partie (E2) dudit espace (E) entre les deux chemises (20, 22). 3. Device according to claim 1, characterized in that said communication passage consists of at least one orifice (200) located between two ends (X20, X22) facing said shirts (20, 22) and which leads into the portion (E 2 ) of said space (E) between the two shirts (20, 22).
4. Dispositif selon l'une des revendications 2 ou 3, caractérisé par le fait que ladite ouverture (10) que présente la paroi de la conduite (1 ) débouche dans la partie (Ei) dudit espace (E) située entre la conduite (1 ) et la seconde chemise (22). 4. Device according to one of claims 2 or 3, characterized in that said opening (10) that the wall of the pipe (1) opens into the portion (Ei) of said space (E) between the pipe ( 1) and the second sleeve (22).
5. Dispositif selon la revendication 1 , caractérisé par le fait que ledit passage de communication (j2) entre l'extérieur de la première chemise (20) et ledit espace (E) consiste en au moins un orifice situé entre la conduite (1 ) et l'extrémité (X22) en regard de ladite seconde chemise (22) et débouche dans la partie (E1) dudit espace (E) situé entre la conduite (1 ) et la chemise intérieure (22). 5. Device according to claim 1, characterized in that said communication passage (j 2 ) between the outside of the first jacket (20) and said space (E) consists of at least one orifice located between the pipe (1). ) and the end (X 22 ) opposite said second jacket (22) and opens into the portion (E 1 ) of said space (E) between the pipe (1) and the inner liner (22).
6. Dispositif selon la revendication 5, caractérisé par le fait que ladite ouverture (10) que présente la paroi de la conduite (1 ) débouche dans la partie (E2) dudit espace (E) qui s'étend entre les deux chemises (20, 22). 6. Device according to claim 5, characterized in that said opening (10) that the wall of the pipe (1) opens into the part (E 2 ) of said space (E) which extends between the two folders ( 20, 22).
7. Dispositif selon la revendication 5, caractérisé par le fait que ladite ouverture (10) de la conduite (1 ) communique avec ledit espace (E) via un intervalle annulaire (ji) qui s'étend entre les premières extrémités en regard (X20, X22) de la première chemise (20) et de la seconde chemise (22). 7. Device according to claim 5, characterized in that said opening (10) of the pipe (1) communicates with said space (E) via an annular gap (ji) which extends between the first ends facing (X20 , X22) of the first liner (20) and the second liner (22).
8. Dispositif selon l'une des revendications précédentes, caractérisé par le fait que ladite seconde chemise (22) est en un matériau apte à présenter une déformation plastique, tel que du métal et/ou en matériau élastiquement déformable tel que du caoutchouc ou un matériau à base de caoutchouc. 8. Device according to one of the preceding claims, characterized in that said second jacket (22) is of a material capable of having a plastic deformation, such as metal and / or elastically deformable material such as rubber or a rubber-based material.
9. Dispositif selon l'une des revendications précédentes caractérisé par le fait que la face externe de la chemise (20) est pourvue, au moins dans ladite partie intermédiaire, d'un revêtement (201 ) d'étanchéité élastiquement déformable, par exemple en caoutchouc. 9. Device according to one of the preceding claims characterized in that the outer face of the liner (20) is provided, at least in said intermediate portion, with a coating (201) resiliently deformable sealing, for example in rubber.
10. Dispositif selon l'une des revendications précédentes, caractérisé par le fait qu'il comporte une bague non déformable (6) qui enveloppe, sur une fraction de sa longueur, ladite première chemise (20) et qui contrarie au moins partiellement son expansion et celle de la seconde chemise (22). 10. Device according to one of the preceding claims, characterized in that it comprises a non-deformable ring (6) which envelops, over a fraction of its length, said first sleeve (20) and which at least partially thwarts its expansion and that of the second shirt (22).
11. Dispositif selon l'une des revendications précédentes caractérisé par le fait que la face externe de la conduite (1 ) comporte, en regard de ladite au moins une ouverture (10) de communication entre la conduite (1 ) et ledit espace (E), un revêtement élastiquement déformable (7). 11. Device according to one of the preceding claims characterized in that the outer face of the pipe (1) comprises, facing said at least one opening (10) of communication between the conduit (1) and said gap (E), an elastically deformable coating (7).
12. Dispositif selon la revendication 1 1 , caractérisé par le fait que ladite au moins une ouverture (10) s'étend en regard d'une jupe (21 ) de solidarisation de la première chemise (20) à ladite conduite (1 ). 12. Device according to claim 1 1, characterized in that said at least one opening (10) extends opposite a skirt (21) for securing the first sleeve (20) to said pipe (1).
13. Dispositif selon la revendication 10, caractérisé par le fait que ladite au moins une ouverture (10) s'étend en regard de ladite bague non déformable (6). 13. Device according to claim 10, characterized in that said at least one opening (10) extends opposite said non-deformable ring (6).
14. Dispositif selon l'une des revendications précédentes caractérisé par le fait qu'au moins une extrémité (X20, X22) desdites chemises (20, 22) est apte à se déplacer longitudinalement par rapport à la conduite (1 ). 14. Device according to one of the preceding claims characterized in that at least one end (X20, X22) of said sleeves (20, 22) is adapted to move longitudinally relative to the pipe (1).
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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FR1252384A FR2988126B1 (en) | 2012-03-16 | 2012-03-16 | DEVICE FOR INSULATING A PART OF A WELL |
US201261614225P | 2012-03-22 | 2012-03-22 | |
PCT/EP2013/051665 WO2013135415A1 (en) | 2012-03-16 | 2013-01-29 | Device for insulating a portion of a well |
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EP2825722A1 true EP2825722A1 (en) | 2015-01-21 |
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EP13704731.2A Withdrawn EP2825722A1 (en) | 2012-03-16 | 2013-01-29 | Device for insulating a portion of a well |
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EP (1) | EP2825722A1 (en) |
CN (1) | CN103717830B (en) |
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- 2013-01-29 WO PCT/EP2013/051665 patent/WO2013135415A1/en active Application Filing
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WO2013135415A1 (en) | 2013-09-19 |
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AU2013231602B2 (en) | 2017-04-27 |
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CA2841797A1 (en) | 2013-09-19 |
US20160376870A1 (en) | 2016-12-29 |
CN103717830A (en) | 2014-04-09 |
FR2988126B1 (en) | 2015-03-13 |
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