This application is a national stage entry of international application number PCT/GB2010/050657, having international filing date of Apr. 22, 2010, which was published in English, and which claims priority to Great Britain Patent Application No. GB 0906899.0, filed Apr. 22, 2009, the entireties of which are hereby incorporated by reference as if fully set forth herein.
This invention relates to electrical connections for conductors in a downhole environment, particular connections that are engageable and releasable downhole.
An oil or gas well may use many types of apparatus that require an electric connection, such as tools and measuring devices that are lowered down the well, and equipment that is installed or present in a casing or production tube. Electrical power for these tools is usual supplied through a conductive line from the surface extending from the tool to the surface. Sometimes a conductive line must be disposed down the well to attach to the tool, rather than the tool being lowered with the conductive line already attached. There are many reasons why the conductive line is not always installed simultaneously with the tool; the tool may have been installed with or incorporated in the casing or production tube, or it may be convenient to install a particular tool down a casing or production line without an electric line, or an already attached electric line may have to be recovered due to a fault or to allow another tool access.
To make an electric connection in this downhole environment, it must be ensured firstly that the lowered connector locates and engages securely with the installed connector, and further that well fluid and material suspended in the well fluid does not penetrate between the surfaces of the connectors to prevent or degrade the conduction between the connection. Ideally, the connection should be reversible without damaging the connectors, allowing the lowered connection to be released and removed from the well, and re-lowered and re-attached as many times as necessary.
It is an object of the present invention to effectively protect the electric connection between the lowered and installed connectors.
According to the present invention, there is provided apparatus for making an electrical connection in a borehole or other remote environment comprising;
a first connection assembly having a first conductive member,
a second connection assembly having a second conductive member,
the first conductive member and second conductive member being movable to form an electrical contact, and
a means for urging dielectric fluid around the electrical contact formed by the first conductive member and second conductive member as the first and second conducting members are moved together.
According to another aspect of the invention, there is also provided apparatus for making an electrical connection in a borehole or other downhole environment comprising;
a first connection assembly having a first conductive member,
a second connection assembly having a second conductive member and a retractable member, the retractable member covering the first or second conductive member,
a cammed surface,
a latching means that can interact with the cammed surface to secure the first connection assembly and second connection assembly together,
the retractable member moving on the first or second connection assembly to expose the first or second conductive member,
dynamic seals that wipe across the first or second conductive member,
the first conductive member and second conductive member being movable to form an electrical contact.
According to further aspect of the invention, there is also provided a first connection as herein defined, and a second connection as herein defined.
Referring to
The male connection assembly comprises a male probe 16 which extends through a housing 12, and a retaining member 14 which comprises flexible fingers ending in radially inward pointing lugs 23 which locates the male probe 16. The male probe 16 has a conductor rod 18 that terminates at its lower end to supply a tool or measuring device, and which extends along the bore of the housing 12. The conductor rod 18 is surrounded for most of its length by an insulating layer 19. The insulating layer terminates at the upper end of the conductor rod 18, revealing an exposed conductive surface 17 of the conductor rod. The upper part of the conductor rod 18 and the insulating layer 19 are enclosed by dynamic seal carriers 21, 22. A protective sheath 26 encloses the upper part of the conductive rod and dynamic seal carriers 21,22, including the conductive surface 17. A conical mating surface 24 is situated that the tip of the male probe 16.
The female electrical connection assembly 30 is disposed in a side window 32 in a casing string. A central rod 34 extends through the bore of a shaped inner tube 36. Between the inner surface of the side window 32 and the outer surface of the shaped inner tube 36, an upper finger member 37 and a lower finger member 38 are located. The central rod also extends through dynamic seal carriers 42, 43, 44. A conductive surface 45 is exposed on the inner surface of dynamic seal carrier 44. The conductive surface 45 leads to a socket 53, (shown in
The shaped inner tube 36 can slide over the central rod 34, depending upon the configuration of the finger members 37, 38 which will be described below. The central rod 34 and upper finger member 37 are secured together. The shaped inner tube 36 and the lower finger member 38 are also secured together.
In use, the male connection assembly 10 may be installed in a side window, and the female connection assembly 30 is lowered down beside the side window 32 and urged across into the side window, just above the male connection assembly 10.
Referring also to
The lower finger member 37 comprises fingers fixed together at their upper end but free to flex at their free, downward-pointing end. Each free end terminates in a spherical collet 39, so that flexible fingers are biased to spring away from the central rod so that the collet 39 follows the profiled surface of the side window 32. The upper finger member is similar, and also has flexible fingers terminating in spherical collets 47.
The inner surface of side window 32 comprises a guide which has a lower recess 46, which the collets 39 of the lower finger member 38 abut against when the female connection member is in the unengaged position shown in
The central rod 34 has a inward conical mating surface 25 at its lower end which corresponds to the conical mating surface 24 protruding at the upper end of the male connection assembly 10. As the central rod 34, shaped inner tube 36 and upper and lower finger members 37, 38 slide down the shaped guide surface of the side window 32 towards the male connection assembly 10, the bottom of the central rod 34 abuts the top of the male connection assembly 10, and the conical mating surfaces 24, 25 engage.
At the same time, dynamic seal carrier 43 abuts the top of the protective sheath 26. Protective sheath 26 comprises upper indentations 27 on side external surfaces (corresponding to collet fingers profiles 37), just below the top of the sheath, and a lower indentation 28. As the lower finger member 38 descends through the shaped guide surface of the side window 32, the collets 39 come to the lower end of the lower recess 46, and are forced radially inward by the reduction of the inner diameter of the lower recess 46. The collets 39 are forced to engage with the indentation 27 of the protective sheath 26.
In the unengaged state shown in
Referring now to
The shaped inner tube 36 and lower finger member 38 continue descending until the collets 39 contact the top of the retaining member 14. By this point, the female connection assembly's dynamic seal carriers 42 and 43 have pushed down the male assembly's protective sheath 26 and dynamic seal carriers 21, 22, so that the dynamic seal carriers 42 and 43 have slid onto the conductor rod 18. When the female electrical connection assembly 30 and the male electrical connection assembly 10 are in this fully engaged position (as shown in
As the dynamic seal carriers 43, 44 slide down the conductor rod 18, they wipe the exposed conductive surface 17, to ensure that the electrical contact between the exposed conductive surface 17 of the conductor rod 18 and the conductive surface 45 of dynamic seal carrier 44 is sound.
The presence of water between electrical connection surfaces increases the resistance between electric contacts. To reduce this effect, dielectric oil is introduced between the electric contacts. However, even when mating surfaces are sealed, some water ingress occurs, accelerated by any heating and cooling and resulting expansion and contraction of parts of the system.
The central rod 34 has a narrow waist section 41, so that there is an annulus 31 between the central rod 34 and the shaped inner tube 36. The annulus is filled with protective dielectric fluid. Referring to
Referring to
The dynamic seal carriers 21 and 43 pass over the conductive surface 17 to wipe off any well fluid that might have collected on the conductive surface 17. However, to ensure removal of such well fluid, further wiping operations together with application of the dielectric fluid can be performed.
A chamber 33 is located in the shaped inner tube 36, also filled with protective dielectric fluid. The chamber 33 in the shaped inner tube 36 is bounded at its upper end by a movable plug 51. At the chamber's lower end, a check valve 55 leads to port 56. A plug 57 seals the chamber from the well environment itself. Referring to
This cycle of lowering the female electrical connection assembly 30 to expel dielectric fluid from the annulus 31 to clean the electric connections, and drawing the female electrical connection assembly 30 back up to refill the annulus 31 from the chamber 33, can be continued as many times as necessary.
Also referring to
Referring to
The action of the embodiment described above depends upon the upon a downward force, such as the weight of the female electrical connection assembly 30. Additionally though, components could for example be biased by incorporating springs. In such a case, the seals would be chosen to have a very low resistance to movement.
In the above embodiment, the cleaning of the conductive surface 17 is carried out both by purging the conductive surface 17 and other parts of the system with dielectric fluid from the chamber 33, and by the wiping action of the seals 58. It may be though that in some situations it is necessary or preferable to rely on the scraping action of the seals alone, perhaps using stiffer seals or more positively urging the seals against the conductive surface 17 moving the reltive movement of the conductive surface 17 and the dynamic seal carriers, without using the purging action of the dielectric fluid. In such a case, the purging can be disabled by removing the check valve 57. If the purging action was not required, the embodiment could much reduce the chamber 33, though some access to the outside for means of pressure equalisation would still be beneficial.
The electric connection in the above example is described with the male electrical connection assembly 10 and female electrical connection assembly 30 disposed in a side window 32 of a casing string. The same principle could equally be applied to an electrical connection made in the main bore of a casing or production string; in such a case, rather than having a shaped side window pre-installed in a string, a shaped guide having a shaped inner surface corresponding to that of the side window 32 would be lowered down the string with the female electrical connection assembly 30 housed within it.
Parts of the male connector assembly could be removable for repair or maintenance. Referring to
Referring to
The connecting rod 72 passes through a flange 61 that secures the engagement member but allows some movement before the wireline connection member 68 abuts the flange. The engagement member 66 may be raised by injecting high pressure fluid between the connection member 68 and the flange 61.
As for the finger members of the previous embodiments, the finger member 64 comprises flexible fingers, the fingers being attached to the slidable engagement member 66 at their upper end but free to flex at their free ends. The fingers terminate with lugs 65, and also feature generally spherical collets 67 situated midway along the fingers. The housing 62 has a shaped inner surface, which features a recess 69 having a larger diameter than the remainder of the inner surface of the housing 62. The lower edge 71 of the housing 61 has a pointed section.
Referring to
Referring to
Retaining member 14 has features a rounded edge 20 which engages with the upper indentation 27 of protective sheath 26. As the engagement member 66 is forced upwards, the lugs 65 of finger members 67 engage with the rounded edge 20 of retaining member 14, and then the lower edge 71 of the housing 62 engages with the notches 29 of lugs 23. The lower edge of the housing 62 is prevented from flexing radially inwards by the lugs 65 of finger members 67, which abut the protective sheath 26. The lugs 23 are therefore forced to bend radially outwards, releasing the protective sheath 26 and the conducting rod 18 from the housing 12.
Referring to
The protective sheath 26 and dynamic seal carrier 21 may be replaced or repaired before being returned to the male electrical connection assembly 10. Reinstallation is effected by lowering the protective sheath 26 and dynamic seal carrier 21 on a similar assembly to the retrieval assembly 60. The funnel 52 has a flared shape to locate and fit over the conical mating surface 24 of the conductor rod 18. The inner surface of housing of the reinstallation assembly could be arranged such that a finger member 64 would disengage from the protective sheath 26 and dynamic seal carrier 21 as the reinstallation assembly neared the male electrical connection assembly housing 12. The shaped guide of the reinstallation assembly corresponding to housing 62 would be shorter, or the fingers of finger member corresponding to finger member 64 would not terminate in lugs 65. When the protective sheath 26 and dynamic seal carrier 21 are in position therefore, the lugs 23 of retaining member 14 engage with the lower indentation 28 of the protective sheath 26, and the reinstallation assembly may be drawn upwards to leave the protective sheath 26 and dynamic seal carrier 21 in place.
For simplicity, the electric connection system has been described using a single conductor rod in the male electrical connection assembly 10, and a single corresponding conductive surface in the female electrical connection assembly 30. In practice, many tools require three phase electrical power delivered via three conductive paths. Referring to
The embodiments described have a male electrical connection assembly 10 having a male probe 16 being the installed part; however, a male probe member have a retractable protective sheath could equally be lowered onto a previously installed female connection member.
Number | Date | Country | Kind |
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0906899.0 | Apr 2009 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/GB2010/050657 | 4/22/2010 | WO | 00 | 10/24/2011 |
Publishing Document | Publishing Date | Country | Kind |
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WO2010/122342 | 10/28/2010 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3398392 | Henderson | Aug 1968 | A |
4174875 | Wilson et al. | Nov 1979 | A |
4589717 | Pottier et al. | May 1986 | A |
4767349 | Pottier et al. | Aug 1988 | A |
4825946 | Schnatzmyer | May 1989 | A |
4997384 | Godfrey et al. | Mar 1991 | A |
5222770 | Helevirta | Jun 1993 | A |
5577925 | Schnatzmeyer et al. | Nov 1996 | A |
5967816 | Sampa et al. | Oct 1999 | A |
6511335 | Rayssiguier et al. | Jan 2003 | B1 |
6758272 | Bixenman et al. | Jul 2004 | B2 |
7462051 | Hall et al. | Dec 2008 | B2 |
7900698 | Stoesz | Mar 2011 | B2 |
Entry |
---|
International Search Report, Jul. 2009. |
Written Opinion, Jul. 2009. |
Number | Date | Country | |
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20120045917 A1 | Feb 2012 | US |