The present invention relates to wiper systems, and more particularly to an apparatus for removing liquids and/or debris from a cylindrical member, such as a drill pipe.
When drilling into subterranean formations, for example into a hydrocarbon reservoir, the drill cuttings produced by the drill bit are carried to the earth's surface by circulating drilling fluids. Drilling fluids, also referred to as drilling mud, are also used to control the wellfluids (e.g. oil, gas, water). The drilling fluids are continuously pumped down into the well bore through the drill pipe and the drill bit are recirculated to the surface. When the drill pipe is being removed from the wellbore (referred to as “tripping out”), the drill pipe outer surface is often covered by liquids and debris, such as drilling fluids and cuttings. These substances need to be removed before drill pipe sections are placed in storage. The substances are harmful to the environment, and therefore need to be collected for safe storage treatment.
Several systems and devices for wiping the exterior surface of a pipe exist. For example, US 2015/0275625 A1 discloses a hand-held clamp-on wiper that facilitates the cleaning of external surfaces of sections of a drill string or drill pipe to remove earth, drilling mud, and other solid/liquid compounds while the drill string is being handled on a drilling platform. The pipe wiper includes a split cylinder with two halves hinged together, each with a handle. Internal to each half cylinder are a number of half circle flexible squeegees that conform to the outside diameter of the drill string when the device is closed. The device may be handled by an individual and positioned around the pipe, and the user may close and hold the pipe wiper around the pipe while the drill string is moving upward so as to wipe liquid and solid debris from the pipe as it is raised.
One disadvantage of the prior art devices is that they are hand-held and manually operated, and therefore require human presence on the drill floor, very close to the drill pipe. Current HSE (Health, Safety, Environment) standards stipulate the human presence on the drill floor should be kept to a minimum. One objective of the present invention is therefore to present a device which may be remotely operated.
The invention is set forth and characterized in the main claim, while the dependent claims describe other characteristics of the invention.
It is thus provided a tool comprising a body having a through-going opening and one or more elongate flexible elements, characterized by:
In one embodiment, the tool comprises at least a pair of elongate flexible elements, and each elongate flexible element is connected to the movable element via respective connection members that are arranged at opposite sides of the opening. The movable element may be a ring gear drivingly connected to the drive unit, and the connection members are preferably connected to the ring gear at diametrically opposite sides.
In one embodiment, the tool comprises compartments configured for housing respective elongate flexible elements. In one embodiment, the connection members are arranged at different and parallel horizontal planes. The ring gear may be configured to rotate at least 180°.
In one embodiment, the drive unit and the at least one control unit are operable to control the deployment and retraction of the respective elongate flexible element, and the interplay between the drive unit and the control units is controllable, either manually or based on sensed parameters such as tension in the elongate flexible member.
In one embodiment, the tool comprises a plurality of external nozzles configured and arranged for spraying a fluid onto at least a portion of the elongate flexible elements, the external nozzles being arranged between the through-going opening and a control unit.
In one embodiment, the tool comprises a plurality of internal nozzles configured and arranged for spraying a fluid into the through-going opening.
The tool according to the invention may be used as a wiper tool for wiping substances from the outer wall of a tubular element or a rod element, such as a drill pipe.
It is also provided a drilling facility, comprising at least a deck and devices for handling a drill pipe or a similar tubular, characterized by at least one tool according to the invention. The tool is one embodiment connected to a deck and is arranged such that the through-going opening is aligned with a deck opening for the drill pipe. In one embodiment, the tool is connected to a deck which is below a drilling deck, and a collection system is fluidly connected to the tool and configured to collect substances wiped from the drill pipe by the elongate flexible elements.
These and other characteristics of the invention will become clear from the following description of embodiments of the invention, given as non-restrictive examples, with reference to the attached schematic drawings, wherein:
The following description may use terms such as “horizontal”, “vertical”, “lateral”, “back and forth”, “up and down”, “upper”, “lower”, “inner”, “outer”, “forward”, “rear”, etc. These terms generally refer to the views and orientations as shown in the drawings and that are associated with a normal use of the invention. The terms are used for the reader's convenience only and shall not be limiting.
Referring initially to
Each compartment 10, 20 comprises a respective elongate flexible member 12, 22, stored inside the compartment, for example in a coiled configuration as shown in
The movable element 30 and the connection members 13, 23 are shown in
From the above description, it will be understood that actuating the drive unit 6 to move (rotate) the ring gear 30 in one direction will cause the elongate flexible members 12, 22 (e.g. bands or belts) to be pulled a distance out from their respective compartments 10, 20. During this tool activation operation, the first and second control units 11, 21 are either not engaged or they are engaged to provide a desired amount of back-tension in the elongate flexible members, in order to maintain the elongate flexible members taut. Conversely, in a tool deactivation operation, the first and second control units 11, 21 are operated to pull (e.g. wind) the respective flexible members 12, 22 into their respective compartments. The control units may comprise or be assisted by springs or other automatic retraction devices. During this operation, the drive unit 6 is either not engaged or it is engaged to provide a desired amount of back-tension in the elongate flexible members, in order to maintain the elongate flexible members taut. In either operation, the interplay between the drive unit 6 and the control units 11, 21 may be controlled manually or based on sensed parameters, such as tension in the flexible members.
In the activated state as illustrated in
The elongate flexible members comprise materials that are suitable for the intended wiping operation, and may be belts or bands. It will be understood that the tool may have other applications.
When the drill pipe is pulled from the well, the wiper tool may be activated to deploy the elongate flexible elements, as described above. Substances removed from the drill pipe outer surface by the wiper tool are collected by a collection system 57 which is connected to a tank or container (e.g. a trip tank) 56 via a conduit 55. In this manner, as the wiper tool may be permanently installed and remotely operated, the drill pipe cleaning process may be performed without exposing humans to harmful substances.
A second embodiment of the tool according to the invention will now be described with reference to
In this second embodiment, the tool 1′ according to the invention comprises a flushing system, comprising a plurality of nozzles 73 external to the opening 9 and a plurality of internal nozzles 77. In the illustrated embodiment, the external nozzles 73 are arranged in pairs, one on each side of the path for the elongate flexible member and pointing towards each other, as illustrated in
Internal nozzles 77 are arranged around an inner wall of the opening 9, and configured and arranged for spraying water towards the center of the opening, whereby a drill pipe 3 or other object passing through the tool is cleaned. The internal nozzles 77 may be used to clean objects that cannot be cleaned by the flexible cleaning members 11, 22 (for example a bottom-hole assembly). The illustrated embodiment comprises four nozzles 77 arranged at regular intervals, but the invention is not limited to this quantity or arrangement. The internal nozzles are connected to a pressurized water supply system (not shown) by fluid lines 78 and fittings 75.
Water ejected from the nozzles 73, 77, along with substances removed from the drill pipe, may be collected the above-mentioned collection system 57. Compressors, valves, piping, etc. that are required to operate the nozzles are not illustrated, as such parts are well known in the art. The nozzles 73, 77 may be activated manually, or automatically based on information from sensors (not shown). The internal nozzles 77 may for example be activated manually, while the external nozzles 73 may be activated automatically when the elongate flexible member is being retracted into the compartment.
Referring to
It should be understood that the first embodiment of the tool according to the invention also may comprise as flushing system as described with reference to
Number | Date | Country | Kind |
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20211567 | Dec 2021 | NO | national |
Filing Document | Filing Date | Country | Kind |
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PCT/NO2022/050319 | 12/20/2022 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2023/121474 | 6/29/2023 | WO | A |
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International Preliminary Report on Patentability received in International Application No. PCT/NO2022/050319, dated Mar. 27, 2024, in 15 pages. |
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Number | Date | Country | |
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20250146377 A1 | May 2025 | US |