The present invention relates to a conduit device for a petroleum well intervention string for guiding the intervention string, such as a carbon fibre reinforced rod containing electrical conductors and/or signal fibres, between a drum unit on deck and an intervention string injector on a wellhead.
Traditionally wireline drum units are placed near the wellhead unit and aligned with the gooseneck on the wellhead unit and must have cleared a free straight path, also along the deck below, for the intervention string to hang in a catenary line between the drum and the gooseneck on the wellhead unit. Temporary differences in speed between the drum and the injector head are taken up in the slack catenary line. This slack line and the fixed spatial requirements excludes other operations in the area, and further poses a risk to personal injury and damage to the intervention string.
WO2011/096820 describes a series of ball-and-socket bending restrictor element pipe sections comprising pipe sections with ball-only ends for being linked using longitudinally split socket-only sleeves with locking elements. That bending restrictor is used over goosenecks.
A solution to the above problem is a conduit device (7) for a petroleum well intervention string (0), comprising a first end (72) connected to an intervention string drum unit (100) with a drum (101), a second end (73) connected to an injector head (204) of a wellhead assembly (200), wherein said conduit device (7) at any point between said first end (72) and said second end (73) has a radius of curvature (R) larger than or equal to a given smallest allowable radius of curvature (R0) for said intervention string (0); said conduit device (7) forming a substantially incompressible fixed length path for the portion of said intervention string (0) at any time present between said first end (72) and said second end (73); said conduit device (7) constituting a tubular path for said intervention string (0).
Further advantageous features are defined in the dependent claims attached.
Advantages of the invention are mentioned under the heading “Embodiments of the invention” below.
a and 1b show a bend restrictor (1) of the invention bent into an arch, a semi-circle with a minimum allowed bending radius of R0 shown in side view and in end view of the arch. The pipe sections (2) are generally rotational symmetric about their local longitudinal axis and are provided with ball-and-socket connectors so the bend restrictor arch is not limited to any fixed plane.
a(1) to 5f are illustrations of a single pipe section (2) (2a, 2b, 2c . . . ) forming elements from which the bend restrictor of the invention is assembled.
a(1) is a side view of a single pipe section of the invention, the left part showing a locking ring at the receptacle or socket end, and the right part showing a corresponding ball-part end for being inserted into a socket end of a next pipe section.
b is a section view of the same, showing the locking ring in the locking position about the socket end. A sphere of the internal radius of the socket end is shown, please see
c is an isometric “perspective” view of the same pipe section of the invention.
d(1), 5d(2) 5e, 5f correspond to
a is a perspective illustration of a wellhead with an injector head in a steel frame, the conduit device (7) here constituted by a flexible bend restrictor (1) laid over a gooseneck attached to the steel frame, the bend restrictor (1) forming a closed, fixed length path between the injector head (204) and the steel frame (102) of the motorized drum unit (100) with a large-diameter drum (101) and a tension compensator arch (103). The push-through threading direction for the intervention string for the particular unidirectional bending restrictor type illustrated in
b is a side elevation view of the same, and
The present invention is a conduit device (7) for a petroleum well intervention string (0). The conduit device comprises a first end (72) arranged for being connected to an intervention string drum unit (100) with a drum (101), and a second end (73) connected to an injector head (204) of a wellhead assembly (200). Please see
The term “tubular” used here means pipe-shaped, pipe bend, hose-shaped, tunnel or hole, i.e. any closed channel adapted for and wherein the intervention string runs. The notion “incompressible” is exemplified by such as a metal pipe, fibre reinforced tubes, a chain of ball-and-socket type bending restrictor elements made in metal or a hardened polymer material, please see an example in
An advantage of the present invention is that the conduit device (7) is incompressible results in that the intervention string tension is substantially maintained (except for friction loss) at all times along all the path between the injector head (204) and the drum unit (100).
An advantage by the invention by the feature that the conduit device (7) being tubular prevents mechanical contact between the string (0) and anything external to the conduit device (7) and also protects the string (0) from wear and crushing damage. This feature further protects personnel's health by preventing personal injury by mechanical contact with the running intervention string (0) or chemical contact with the possibly polluted intervention string (0).
In an embodiment of the invention it comprises one or more sections of straight pipe (75) of extensive length. An example is illustrated in
In an embodiment of the invention, at any point between said first end (72) and said second end (73) has a radius of curvature (R) larger than or equal to a given smallest allowable radius of curvature (R0) for said intervention string (0). This is in practice not optional but is a requirement regardless of how the conduit is made. It limits the amount of bending that the member can be subjected to. Elements are specified below, but include straight pipes, bends, stiff hoses, bend restrictor elements.
In an embodiment of the invention, the conduit device (7) comprises one or more pipe bend (76) of fixed curvature.
In an embodiment of the invention the conduit device (7) of the invention is laterally flexible along at least a portion of its path between the first end (72) and the second end (73). Examples of this is shown in
An advantage of the present invention is that one may place the intervention drum at a significant distance from the wellhead unit, more than 80 meters in total distance as counted along the conduit device has been tested, and the requirement of alignment and a free straight path for the intervention string hanging in a catenary line between the drum and the wellhead unit may be disposed with.
The conduit device (7) comprises in an embodiment of the invention one or more ball-and-socket type bend restrictor elements (2), please see
In an embodiment of the invention the conduit device (7) comprises one or more extensive sections of semi-stiff hose (77). Practical tests of more than 30 meters of stiff hose has been tried with success.
The conduit device (7) of the invention may have the first end (72) attached at a terminal point (105) of a drum frame (102) of said drum unit (100). Preferably and advantageously, said drum frame (102) is provided with a tension compensator arch (103) arranged between said terminal point (105) and said drum (101). Advantageously, any temporary speed differences due to different inertia of the string (0), the injector head (204) and the drum (101) are taken up by the tension compensator arch (103).
Preferably also, the conduit device of the invention not only forms an incompressible length path, but also forms a substantially inextendable fixed length path for said portion of said intervention string running or residing between said first end (72) and said second end (73), i.e. that all the tubular components may not be extended nor pulled apart in their longitudinal direction. This is achieved by the lockable but rotatable ball- and socket connectors illustrated in
In an embodiment of the invention the conduit device is laid over or attached to a gooseneck (202) arranged at said second end (73) at the wellhead.
The conduit device of may comprise a combination of components. It may comprise flange connections (78) with either a ball connector (21) or a socket type connector (22) in the opposite end. The flange connections may be used as end or intermittent connections so as for allowing connection of any of: the drum frame (102), the bend restrictor element pipes (2), the pipe bends (76), the straight pipe sections (75), possible semi-stiff hoses (77), and an entry point of said injector head (204).
Number | Date | Country | Kind |
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20111775 | Dec 2011 | NO | national |
This nonprovisional application claims the benefit of U.S. Provisional Application No. 61/580,098 filed on Dec. 23, 2011 and to Patent Application No. 20111775 filed in Norway, on Dec. 23, 2011. The entire contents of all of the above applications are hereby expressly incorporated by reference.
Number | Name | Date | Kind |
---|---|---|---|
689492 | Hughes | Dec 1901 | A |
2453038 | Rossmann | Nov 1948 | A |
2810439 | McCullough et al. | Oct 1957 | A |
2892535 | Cullen et al. | Jun 1959 | A |
3479067 | Potts | Nov 1969 | A |
3524606 | Coski | Aug 1970 | A |
3563436 | Reynard et al. | Feb 1971 | A |
3646798 | Alcock | Mar 1972 | A |
3690409 | Brauss | Sep 1972 | A |
4091867 | Shannon et al. | May 1978 | A |
4099403 | Alcock et al. | Jul 1978 | A |
4125162 | Groves et al. | Nov 1978 | A |
4464922 | Pamplin et al. | Aug 1984 | A |
4492363 | Niskin | Jan 1985 | A |
4947665 | Alcock et al. | Aug 1990 | A |
5538092 | Precopia | Jul 1996 | A |
6000656 | Taylor et al. | Dec 1999 | A |
6006839 | Dearing et al. | Dec 1999 | A |
6161619 | Head | Dec 2000 | A |
6276456 | Head | Aug 2001 | B1 |
6457534 | Rolovic et al. | Oct 2002 | B1 |
6516892 | Reilly | Feb 2003 | B2 |
6880630 | Widney | Apr 2005 | B2 |
7753344 | Moretz et al. | Jul 2010 | B1 |
7810556 | Havinga | Oct 2010 | B2 |
8613309 | Bakker et al. | Dec 2013 | B1 |
8689862 | Talgo et al. | Apr 2014 | B2 |
20020195255 | Reilly | Dec 2002 | A1 |
20030010505 | Gipson | Jan 2003 | A1 |
20030034162 | Kulhanek | Feb 2003 | A1 |
20030044235 | Stockstill | Mar 2003 | A1 |
20040118556 | Widney | Jun 2004 | A1 |
20040188101 | Moretz | Sep 2004 | A1 |
20040194963 | Torres | Oct 2004 | A1 |
20100263879 | Cochran | Oct 2010 | A1 |
20110226885 | Fries et al. | Sep 2011 | A1 |
20110315804 | Talgo et al. | Dec 2011 | A1 |
20120111581 | He et al. | May 2012 | A1 |
20130094910 | Giles | Apr 2013 | A1 |
20130160988 | Armstrong et al. | Jun 2013 | A1 |
20130161441 | Bjornenak et al. | Jun 2013 | A1 |
20140014317 | Aarsland et al. | Jan 2014 | A1 |
Number | Date | Country |
---|---|---|
1170126 | May 1964 | DE |
199 42 608 | Apr 2001 | DE |
0 571 207 | May 1993 | EP |
2044130 | Feb 1971 | FR |
2843954 | Mar 2004 | FR |
2868408 | Oct 2005 | FR |
1401422 | Jul 1975 | GB |
2 296 001 | Jun 1996 | GB |
2457585 | Aug 2009 | GB |
57-141989 | Sep 1982 | JP |
61-277561 | Dec 1986 | JP |
2151264 | Jun 2000 | RU |
WO 0138768 | May 2001 | WO |
WO 2006027553 | Mar 2006 | WO |
WO 2010117162 | Oct 2010 | WO |
Number | Date | Country | |
---|---|---|---|
20130160988 A1 | Jun 2013 | US |
Number | Date | Country | |
---|---|---|---|
61580098 | Dec 2011 | US |