NL2024941B1 - A stabbing guide and an operating method - Google Patents

A stabbing guide and an operating method Download PDF

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Publication number
NL2024941B1
NL2024941B1 NL2024941A NL2024941A NL2024941B1 NL 2024941 B1 NL2024941 B1 NL 2024941B1 NL 2024941 A NL2024941 A NL 2024941A NL 2024941 A NL2024941 A NL 2024941A NL 2024941 B1 NL2024941 B1 NL 2024941B1
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Netherlands
Prior art keywords
guide
guide members
tubular
insert
support
Prior art date
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NL2024941A
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Dutch (nl)
Inventor
Roodenburg David
Alexander De Mul Arthur
Original Assignee
Itrec Bv
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Publication date
Application filed by Itrec Bv filed Critical Itrec Bv
Priority to PCT/EP2021/052853 priority Critical patent/WO2021156468A1/en
Priority to US17/797,911 priority patent/US20230073941A1/en
Application granted granted Critical
Publication of NL2024941B1 publication Critical patent/NL2024941B1/en

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    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B19/00Handling rods, casings, tubes or the like outside the borehole, e.g. in the derrick; Apparatus for feeding the rods or cables
    • E21B19/02Rod or cable suspensions
    • EFIXED CONSTRUCTIONS
    • E21EARTH OR ROCK DRILLING; MINING
    • E21BEARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B19/00Handling rods, casings, tubes or the like outside the borehole, e.g. in the derrick; Apparatus for feeding the rods or cables
    • E21B19/02Rod or cable suspensions
    • E21B19/06Elevators, i.e. rod- or tube-gripping devices

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Geology (AREA)
  • Mining & Mineral Resources (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Environmental & Geological Engineering (AREA)
  • Fluid Mechanics (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Earth Drilling (AREA)

Abstract

The invention relates to a stabbing guide for tubulars, comprising: - a body; - a plurality of guide members moveably supported by the body to receive a tubular and to move relative to the body between an open position and a closed position; and - an actuation mechanism configured to be operated to move the plurality of guide members between the open and closed positions, wherein the body is configured to be held by a tubular connection tool.

Description

P34442NLOO/MVE Title: A stabbing guide and an operating method The invention relates to a stabbing guide for tubulars and a method for operating a stabbing guide, as used, for example, in the oil and gas industry when making-up a tubular string. In the oil and gas industry, and in other industries where bores are drilled in the earth to access subsurface regions, many operations require the assembly or disassembly of long strings of tubulars. Examples of such tubular strings are a drill string formed of a plurality of drill pipes with a drill bit mounted on the distal end of the drill string, and a casing string formed of a plurality of casings. Generally, the tubulars, e.g. the drill pipes or casings, have a threaded male or pin connection on a leading end and a threaded female or box connection on a trailing end. A tubular string is made up by adding tubulars to the upper end of the existing string that meanwhile is supported and held in or below the drill floor with only a short length of tubular, e.g. the “stick- up”, extending from the drill floor. A tubular to be added is then lifted and manipulated to bring the male connection on the lower end of the tubular towards the female connection on the upper end of the stick-up. As the male and female connection are brought together, it is conventional to locate a stabbing guide on or around the female connection to guide the male connection into alignment with the female connection, thereby protecting the end surfaces and threads from damage. A prior art example of a stabbing guide is disclosed in EP3030742. The shown stabbing guide has the advantage that manual location and manipulation is reduced by using a mounting frame that is pivotable between a retracted location, in which the guide members are spaced from the stick-up, and an active location, in which the guide members surround the upper end of the stick-up. However, a drawback is that the flexibility of the relatively large stabbing guide including mounting frame is reduced due to the increased size and weight.
Hence, it is an object of the invention to provide a stabbing guide that can easily be handled and operated while maintaining the advantage of reduced manual intervention. According to a first aspect of the invention there is provided a stabbing guide for tubulars, comprising: - a body;
2. - a plurality of guide members moveably supported by the body to receive a tubular and to move relative to the body between an open position and a closed position; and - an actuation mechanism configured to be operated to move the plurality of guide members between the open and closed positions, wherein the body is configured to be held by a tubular connection tool. And advantage of using the tubular connection tool is that no or at least minimal manual location and operation is required as the tubular connection tool can be used for moving the stabbing guide around and that this does not require an additional tool so that space is saved. The stabbing guide can also be made smaller and lighter as no mounting frame and/or positioning means are required as part of the stabbing guide. These are all provided by the tubular connection tool. A tubular connection tool such as a power tong or roughneck is common practice to use to make a connection between two tubulars by torqueing the connection up to a predetermined torque. The tubular connection tool is usually located on a platform of the drill floor, either on rails, or hung from a derrick on a chain. In order to make up or break out a threaded connection, a two tong arrangement is preferred. An active (or wrenching) tong supplies torque to the section of tubular above the threaded connection, while a passive (or backup) tong supplies a reaction torque below the threaded connection. The backup tong clamps the tubular below the threaded connection and prevents it from rotating. This clamping can be performed mechanically, hydraulically or pneumatically. The wrenching tong clamps the tubular above the threaded connection and is driven so that it supplies torque for a limited angle.
In an embodiment, the body has a tubular shape, which makes it easier for a tubular connection tool to hold the stabbing guide as the body mimics a tubular. In an embodiment, the stabbing guide further comprises a support allowing to position the stabbing guide on a flat surface when the stabbing guide is not held by the tubular connection tool. This has the advantage that the tubular connection tool is able to easily grab and put back the stabbing guide from a storage location during operation without any or minimal manual intervention. Alternatively, a hoisting device maybe used to easily transport the stabbing guide between the tubular connection tool and a storage location.
In an embodiment, the stabbing guide is provided with two guide members, each guide member being pivotable about a respective pivot axis between an open position and a closed
23. position. Preferably, the respective pivot axes extend parallel to a longitudinal axis of the tubulars, i.e. parallel to a longitudinal axis of the body held by the tubular connection tool, which preferably extend vertically. The two pivot axes preferably coincide. An advantage of this configuration is that only two simple and easy actuatable motions need to be performed to close or open the stabbing guide. In prior art document EP3030742, a total of four guiding elements are required, each having their own actuation mechanism. In an embodiment, the two guide members have a shape corresponding to a circle sector with a cutaway for receiving a portion of a tubular, seen in plan view, wherein preferably, the circle sector spans an angular range in between 90 and 180 degrees, preferably between 100 and 170 degrees, more preferably between 120 and 175 degrees, and most preferably between 150 and 160 degrees. In an embodiment, the stabbing guide is configured to be used with at least two types of tubulars having a different diameter, so that preferably the guide members are releasably connected to the actuation mechanism to allow the guide members to be replaced by another set of guide members corresponding to a different tubular diameter. In an embodiment, a locking mechanism is provided to lock the guide members to the actuation mechanism during use, so that the guide members do not inadvertently release from the actuation mechanism during operation thereof. Actuators can be provided on the stabbing guide, but an embodiment wherein additionally or alternatively the actuation mechanism is operable using external actuators is also envisaged.
In an embodiment, the actuation mechanism includes at least one actuator arranged between the body and at least one of the guide members to move the at least one guide member between the open an closed positions. Power may be provided to the at least one actuator using a battery as part of the stabbing guide, but may also originate externally, e.g. in the form of an electricity line to a mains or external generator or in the form of hydraulic lines. In an embodiment, the actuation mechanism includes a portion configured to engage with the tubular connection tool such that actuation of the tubular connection tool is able to move at least one guide member between the open and closed positions via the actuation mechanism. Preferably, the tubular connection tool is able to actuate all guide members, so that no external power and actuators on the stabbing guide are required for operation.
-4- In an embodiment, the actuation mechanism includes a circular shaped element — seen in pan view, i.e. a cylindrical or ring shaped element - rotatably arranged around a tubular shaped body, wherein the body is configured to be held by a passive tong of the tubular connection tool, wherein the circular shaped element is configured to engage with an active tong of the tubular connection tool, and wherein the actuation mechanism is configured to transfer rotational movement of the circular shaped element to movement of the guide members between the open and closed position. In an embodiment, the stabbing guide is configured to operate on casing tubulars. The stabbing guide may then be referred to as casing stabbing guide. In an embodiment, the support configured to position the stabbing guide on a flat surface when the stabbing guide is not held by the tubular connection tool is connected to a lower part of the body. Preferably, the body is pivotable relative to the support about a corresponding support pivot axis allowing the body to move between an active orientation substantially perpendicular to the support and a transport orientation substantially parallel to the support. The first aspect of the invention also relates to a method for using the stabbing guide according to the first aspect of the invention, wherein the method comprises the following steps starting from a situation in which the stabbing guide is at a distance from a firing line: a. arranging the body of the stabbing guide in a tubular connection tool; b. providing the guide members in the open position; c. moving the stabbing guide to a position such that the guide members - while being in the open position - surround a free end of a tubular in the firing line; and d. moving the guide members to the closed position. In an embodiment, steps b. and d. are carried out by actuators arranged on the stabbing guide.
In an embodiment, steps b. and d. are carried out by actuators of the tubular connection tool. According to a second aspect of the invention, there is provided a stabbing guide for tubulars, comprising: - a body; - two guide members moveably supported by the body to receive a tubular and to move relative to the body between an open position and a closed position; and
-5. - an actuation mechanism configured to be operated to move the plurality of guide members between the open and closed positions, wherein each guide member is pivotable about a respective pivot axis between the open position and the closed position.
In an embodiment, the pivot axes of the two guide members coincide. In an embodiment, the two guide members have a shape corresponding to a circle sector with a cutaway for receiving a portion of a tubular, wherein preferably, the circle sector spans an angular range in between 90 and 180 degrees. It is explicitly noted here that features and embodiments described in relationship to the first aspect of the invention may readily be combined with the stabbing guide according to the second aspect of the invention where possible and appropriate.
The invention will now be described by reference to the accompanying drawings in which like parts are indicated using like reference symbols, and in which: Fig. 1 schematically depicts a side view of a stabbing guide according to an embodiment of the invention; Fig. 2 schematically depicts a side view of the stabbing guide of Fig. 1 held by a tubular connection tool; Fig. 3 schematically depicts a top view of the stabbing guide of Fig. 1 in the tubular connection tool of Fig. 2 with the guide members in the open position; Fig. 4 schematically depicts a top view of the stabbing guide of Fig. 1 in the tubular connection tool of Fig. 2 with the guide members in the closed position; Fig. 5 schematically depicts a side view of a stabbing guide according to another embodiment of the invention in a tubular connection tool; Fig. 6 schematically depicts a top view of the stabbing guide and the tubular connection tool of Fig. 5 with the guide members in the open position; and Fig. 7 schematically depicts a top view of the stabbing guide and the tubular connection tool of Fig. 5 with the guide members in the closed position. Fig. 1 schematically depicts a side view of a stabbing guide SG according to an embodiment of the invention. The stabbing guide SG of Fig. 1 is a stabbing guide according to the first aspect of the invention as well as a stabbing guide according to the second aspect of the invention. Although described together, it will be clear to the skilled person that the first and second aspect of the invention do not necessarily need to be combined.
-6- The stabbing guide SG includes a support SU, a body BO, and an actuation mechanism AM that is partially shown in Fig. 1. The other part of the actuation mechanism AM is omitted from Fig. 1 and will be explained below by reference to the Figs. 3 and 4. The stabbing guide SG also comprises guide members GM that are supported by the body BO via the actuation mechanism AM and which are explained in more detail below by reference to the Figs. 2-4. The actuation mechanism AM includes two arms AR that are moveably supported by the body BO. In this embodiment, the moveability is provided by pivotally arranging the arms AR to pivot about a pivot axis PA1.
The body BO in turn is arranged on and connected to the support SU using two bolts B1, B2. In Fig. 1, a longitudinal axis LAB of the body BO extends perpendicular to a longitudinal axis LAS of the support SU. This orientation is referred to as an active orientation. When bolt B2 is removed, bolt B1 provides a pivot axis PA2 for the body BO to pivot counter clockwise in Fig.
1 towards the support SU until the body BO reaches support element SE, which support element SE may include a locking mechanism to temporarily lock the orientation of the body BO, which orientation is characterized by the longitudinal axis LAB being substantially parallel to the longitudinal axis LAS. This orientation is referred to as a transport orientation.
Inthe transport orientation, the footprint of the stabbing guide SG is relatively small and the stabbing guide fits in a smaller rectangular box than in the active position, thereby being able to be easily transported.
In the active orientation, the body BO is substantially vertical and can be held by a tubular connection tool as will be elucidated below by reference to the Figs. 2-4. Fig. 1 depicts the stabbing guide SG in the active position with the arms AR of the actuation mechanism extending in a direction opposite to the direction in which the support SU extends from the body BO having the advantage that the weight of the guide members GM when supported by the arms AR may be balanced by the support SU such that when the stabbing guide SG is lifted using a lifting eye LE at an upper end of the body BO, the body BO remains substantially vertical.
Fig. 2 schematically depicts a side view of the stabbing guide SG of Fig. 1 when held by a tubular connection tool TCT. For clarity reasons, the lifting eye LE and the support element SE are omitted in Fig. 2 as is a part of the actuation mechanism AM.
-7- Fig. 3 schematically depicts a top view of the stabbing guide SG of Fig. 1 in the tubular connection tool TCT of Fig. 2 with guide members GM supported by the arms AR in the closed position.
Fig. 4 schematically depicts a top view of the stabbing guide SG of Fig. 1 in the tubular connection tool TCT of Fig. 2 with the guide members GM in the open position.
The tubular connection tool TCT shown in Fig. 2 is in this embodiment hung from a derrick and includes a passive tong PT and an active tong AT.
The tubular connection tool TCT can be moved over the drill floor to catch or grab the stabbing guide SG using the passive tong PT and/or the active tong AT.
The stabbing guide SG is then lifted by the tubular connection tool TCT, or the stabbing guide SG was lifted prior to catching or grabbing, so that the tubular connection tool TCT is able to move the stabbing guide SG relative to the drill floor with the support SU extending below the tubular connection tool TCT.
In Fig. 2, the contours of a spinner SP are visible, however, in this embodiment, the spinner SP has no relationship with the function and operation of the stabbing guide SG.
Fig. 3 and Fig. 4 depict a part of the actuation mechanism AM that is not visible in Figs. 1 and 2, namely the provision of two hydraulic actuators HA1, HA2 between the respective arms AR and a bracket BR attached to the body BO.
Actuation of the hydraulic actuators HA1, HA2 will allow rotation of the arms AR and thus the guide members GM about the pivot axis PA1 between an open position as shown in Fig. 3 allowing to pass and receive a tubular TU in a firing line FL that will fit into the cutaways CA of the guide members GM that have the shape in plan view of a circle sector, and a closed position as shown in Fig. 4 in which the guide members engage with the tubular TU to guide the male connection of another tubular into alignment with the female connection of the tubular TU while protecting the end surface and threads from damage.
The cutaway CA in the guide members GM can also be seen in Fig. 2, see dashed lines.
The cutaway CA has an upper portion UCA and a lower portion LCA.
The lower portion LCA has a cylindrical shape matching a tubular TU of a specific diameter.
In the closed position the lower portion LCA surrounds and rests on the tubular TU, while the upper portion UCA extends above the tubular TU and diverges to a larger diameter at the top to receive and guide the male connection of the tubular to be connected to the tubular TU in alignment with the tubular TU while protecting the end surface of the tubular TU and the threads of both tubulars.
-8- Due to the fact that the guide members GM are supported on the arms AR of the actuation mechanism AM, they can easily be replaced by other guide members when working with tubulars of a different diameter. To this end, the guide members GM are preferably releasably connected to the arms AR. Also preferably, a locking mechanism is provided to lock the guide members GM to the actuation mechanism AM during use, so that the guide members GM do not inadvertently release from the actuation mechanism AM during operation thereof. Figs. 5-7 schematically depict another embodiment of a stabbing guide SG according to the invention which stabbing guide SG in this embodiment is used with the same or a similar tubular connection tool TCT. Fig. 5 schematically depicts a side view, Fig. 6 depicts a top view with the guide members GM in the open position, and Fig. 7 depicts a top view with the guide members GM in the closed position. The main difference between the two embodiments is that the embodiment of Figs. 1-4 depicts a stabbing guide with integrated actuators, wherein the active and/or passive tongs of the tubular connection tool are only used to hold the body, where the embodiment of Fig.s 5-7 depicts a stabbing guide in which no actuators are provided on the stabbing guide, but the actuation mechanism is actuated using the active tong of the tubular connection tool as will be explained below in more detail.
As shown in Fig. 5, the stabbing guide SG comprises a support SU supporting a body BO, which body BO has a mainly tubular shaped main body MB. A lower part of the main body MB is configured to be held by the passive tong PT. Extending from the lower part of the main body MB is an auxiliary body AB, which auxiliary body AB is configured to support a part of the actuation mechanism AM, including the arms AR that are pivotable about a pivot axis PA1. The actuation mechanism AM further includes a circular shaped element CSE (the circular shape is clearly visible in plan view, see Figs. 8 and 7) arranged around an upper part of the tubular shaped main body MB and configured to engage with the active tong AT. The actuation mechanism AM further includes a link mechanism LM between the element CSE and the arms AR to transfer rotational movement of the element CSE to movement of the arms AR and thus of the guide members supported by the arms AR between an open position as shown in Fig. 6 and a closed position as shown in Fig. 7.
In Fig. 7, the arrow near the circular shaped element CSE indicates an angle a that the active tong AT has to rotate the circular shaped element CSE between the open and closed
-9- positions. The link mechanism LM can be used to magnify this angle, so that the arms AR and thus the guide members GM are rotated over a larger angle about pivot axis PA1 then the circular shaped element CSE is rotated about the longitudinal axis LAB of the main body MB.
Also shown by reference to Fig. 7, but also present in the embodiment of Figs. 1-4, is that the guide members GM span an angular range of 180 degrees minus angle B, wherein angle B may be 1, 2, 5 or 10 degrees. In other words, the angle B may be in the range of 0-90 degrees, preferably in the range of 2-60 degrees, more preferably in the range of 5-45 degrees.

Claims (16)

-10 - CONCLUSIES-10 - CONCLUSIONS 1. Een insteekgeleider voor buizen, omvattende: - een lichaam; - een veelvoud aan geleidingsorganen beweegbaar ondersteund door het lichaam om een buis te ontvangen en om te bewegen ten opzichte van het lichaam tussen een open positie en een gesloten positie; en - een actuatiemechanisme ingericht om bediend te worden om de veelvoud aan geleidingsorganen te bewegen tussen de open en gesloten posities, met het kenmerk, dat het lichaam is ingericht om vastgehouden te worden door een buisverbindingswerktuig.A pipe insertion guide comprising: - a body; - a plurality of guide members movably supported by the body to receive a tube and to move relative to the body between an open position and a closed position; and - an actuating mechanism arranged to be actuated to move the plurality of guide members between the open and closed positions, characterized in that the body is adapted to be held by a pipe connecting tool. 2. Een insteekgeleider volgens conclusie 1, omvattende een steun die het mogelijk maakt om de insteekgeleider op een vlakke ondergrond te positioneren wanneer de insteekgeleider niet vastgehouden wordt door het buisverbindingswerktuig.An insert guide according to claim 1, comprising a support that allows the insertion guide to be positioned on a flat surface when the insert guide is not held by the tubing joining tool. 3. Een insteekgeleider volgens conclusie 1 of 2, waarbij het lichaam een buisvorm heeft.An insert guide according to claim 1 or 2, wherein the body has a tubular shape. 4. Een insteekgeleider volgens een van de conclusies 1 t/m 3, waarbij twee geleidingsorganen zijn verschaft, waarbij elk geleidingsorgaan zwenkbaar is rond een respectieve zwenkas tussen de open positie en de gesloten positie.An insert guide according to any one of claims 1 to 3, wherein two guide members are provided, each guide member being pivotable about a respective pivot axis between the open position and the closed position. 5. Een insteekgeleider volgens conclusie 4, waarbij de zwenkassen van de twee geleidingsorganen samenvallen.An insert guide according to claim 4, wherein the pivot axes of the two guide members coincide. 6. Een insteekgeleider volgens conclusie 4 of 5, waarbij de twee geleidingsorganen een vorm hebben die overeenkomt met een cirkelpunt met een uitsparing voor het ontvangen van een deel van een buis, en waarbij bij voorkeur, de cirkelpunt een hoekbereik tussen de 90 en 180 graden omspant.An insert guide according to claim 4 or 5, wherein the two guide members have a shape corresponding to a circle point with a recess for receiving a part of a tube, and preferably wherein the circle point has an angular range between 90 and 180 degrees. spans. 7. Een insteekgeleider volgens een van de voorgaande conclusies, waarbij de geleidingsorganen losneembaar verbonden zijn met het actuatiemechanisme om het mogelijk te maken dat de geleidingsorganen worden vervangen door een andere set geleidingsorganen die overeenkomen met een andere buisdiameter.An insertion guide according to any one of the preceding claims, wherein the guide members are releasably connected to the actuation mechanism to allow the guide members to be replaced with a different set of guide members corresponding to a different tube diameter. 8. Een insteekgeleider volgens een van de voorgaande conclusies, waarbij het actuatiemechanisme ten minste één actuator omvat die aangebracht is tussen het lichaam en ten minste één van de geleidingsorganen om het ten minste één geleidingsorgaan te bewegen tussen de open en gesloten posities.An insertion guide according to any one of the preceding claims, wherein the actuating mechanism comprises at least one actuator arranged between the body and at least one of the guide members for moving the at least one guide member between the open and closed positions. 9. Een insteekgeleider volgens een van de voorgaande conclusies, waarbij het actuatiemechanisme een deel omvat dat is ingericht om te koppelen met het buisverbindingswerktuig zodat actuatie van het buisverbindingswerktuig in staat isAn insertion guide according to any preceding claim, wherein the actuating mechanism comprises a portion adapted to engage the tubing joining tool to enable actuation of the tubing joining tool -11 - om ten minste één geleidingsorgaan te bewegen tussen de open en gesloten posities via het actuatiemechanisme.-11 - to move at least one guide member between the open and closed positions via the actuating mechanism. 10. Een insteekgeleider volgens conclusie 3 en 9, waarbij het actuatiemechanisme een cirkelvormig element omvat dat roteerbaar is aangebracht rond het buisvormige lichaam, waarbij het lichaam is ingericht om vastgehouden te worden door een passieve tong van het buisverbindingswerktuig, waarbij het cirkelvormige element is ingericht om te koppelen met een actieve tong van het buisverbindingswerktuig, en waarbij het actuatiemechanisme is ingericht om rotationele beweging van het cirkelvormige element om te zetten in beweging van de geleidingsorganen tussen de open en gesloten posities.An insertion guide according to claims 3 and 9, wherein the actuation mechanism comprises a circular element rotatably mounted about the tubular body, the body adapted to be retained by a passive tongue of the tubular connecting tool, the circular element being adapted to to be coupled to an active tongue of the pipe connecting tool, and wherein the actuation mechanism is adapted to convert rotational movement of the circular element into movement of the guide members between the open and closed positions. 11. Een insteekgeleider volgens een van de voorgaande conclusies, waarbij de insteekgeleider is ingericht om werkzaam te zijn op casingbuizen.An insert guide according to any one of the preceding claims, wherein the insert guide is adapted to act on casing pipes. 12. Een insteekgeleider volgens conclusie 2, waarbij de steun is verbonden met een onderste deel van het lichaam.An insert guide according to claim 2, wherein the support is connected to a lower part of the body. 13. Een insteekgeleider volgens conclusie 12, waarbij het lichaam zwenkbaar is ten opzichte van de steun rond een overeenkomstige steunzwenkas die het mogelijk maakt het lichaam te bewegen tussen een actieve oriëntatie in hoofdzaak loodrecht op de steun en een transport oriëntatie in hoofdzaak parallel aan de steun.An insert guide according to claim 12, wherein the body is pivotable with respect to the support about a corresponding support pivot axis that allows the body to move between an active orientation substantially perpendicular to the support and a transport orientation substantially parallel to the support . 14. Een werkwijze voor het gebruiken van de insteekgeleider volgens een van de voorgaande conclusies, waarbij de werkwijze de volgende stappen omvat startende vanuit een situatie waarin de insteekgeleider op een afstand van een vuurlijn staat: a. het aanbrengen van het lichaam van de insteekgeleider in een buisverbindingswerktuig; b. het verschaffen van de geleidingsorganen in de open positie; c. het bewegen van de insteekgeleider naar een positie zodat de geleidingsorganen — terwijl ze in de open positie zijn — rond een vrij uiteinde van een buis in de vuurlijn zijn geplaats; d. het bewegen van de geleidingsorganen naar de gesloten positie.A method of using the insert guide according to any one of the preceding claims, wherein the method comprises the following steps starting from a situation where the insert guide is spaced from a firing line: a. a pipe connecting tool; b. providing the guide members in the open position; c. moving the insertion guide to a position such that the guide members - while in the open position - are positioned about a free end of a tube in the firing line; d. moving the guide members to the closed position. 15. Een werkwijze volgens conclusie 14, waarbij de stappen b. en d. worden uitgevoerd door actuatoren aangebracht op de insteekgeleiderA method according to claim 14, wherein steps b. and d. are performed by actuators mounted on the insertion guide 16. Een werkwijze volgens conclusie 14, waarbij de stappen b. en d. worden uitgevoerd door actuatoren van het buisverbindingswerktuig.A method according to claim 14, wherein steps b. and d. are performed by actuators of the pipe connecting tool.
NL2024941A 2020-02-07 2020-02-19 A stabbing guide and an operating method NL2024941B1 (en)

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Application Number Priority Date Filing Date Title
PCT/EP2021/052853 WO2021156468A1 (en) 2020-02-07 2021-02-05 A stabbing guide and an operating method
US17/797,911 US20230073941A1 (en) 2020-02-07 2021-02-05 A stabbing guide and an operating method

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EP20156265 2020-02-07

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3030742A2 (en) 2013-08-09 2016-06-15 Weatherford U.K. Limited Tubular stabbing guide
WO2017044482A1 (en) * 2015-09-08 2017-03-16 Weatherford Technology Holdings, Llc Genset for top drive unit
WO2019174691A1 (en) * 2018-03-11 2019-09-19 Maersk Drilling A/S Robotic apparatus for performing drill floor operations

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3030742A2 (en) 2013-08-09 2016-06-15 Weatherford U.K. Limited Tubular stabbing guide
WO2017044482A1 (en) * 2015-09-08 2017-03-16 Weatherford Technology Holdings, Llc Genset for top drive unit
WO2019174691A1 (en) * 2018-03-11 2019-09-19 Maersk Drilling A/S Robotic apparatus for performing drill floor operations

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