Mooring systems and methods
The mooring system simplifies the connection and disconnection of offshore vessels by using a guide groove and termination region to securely engage the connector structure, reducing operational complexity and costs, and enabling the use of lighter mooring lines.
Patent Information
- Application Number
- JP2022547036
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-02-11
- Filing Date
- 2021-02-04
- Publication Date
- 2026-02-02
- Estimated Expiration
- 2041-02-04
AI Technical Summary
Conventional separable anchoring systems for offshore vessels require complex and costly operations for connection and disconnection, often necessitating the use of remotely operated vehicles (ROVs), and are prone to detachment due to insufficient tension maintenance.
A mooring system with a connector structure and anchor structure featuring a guide groove that allows for connection and disconnection from the water surface, utilizing a longitudinal opening and termination region to securely engage and support the connector structure, eliminating the need for ROVs and enabling thinner, less durable mooring lines.
Facilitates easy and cost-effective connection and disconnection of mooring lines, reducing operational complexity and allowing for the use of lighter, less durable lines, while maintaining secure anchorage even under varying tidal and ocean current conditions.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a mooring system for mooring vessels, in particular permanently or semi-permanently located vessels such as offshore renewable energy installations, in particular tidal turbines, and to a method for remotely engaging and releasing mooring lines. [Background technology]
[0002] Offshore installations, such as renewable energy generation facilities or oil and gas production facilities, may include floating vessels that are anchored to the facility permanently or semi-permanently (i.e., for months or years in a row).
[0003] Mooring lines for such vessels are required to resist forces exerted on the floating vessel due to tides, waves, and water conditions which act to move the floating vessel.
[0004] Underwater conditions, particularly in marine environments, can cause mooring lines to deteriorate, making regular inspection and maintenance (including replacement) essential.
[0005] Conventional separable anchoring systems, such as those described in EP 1882106 or EP 2800685, are adapted to be connected and disconnected using a remotely operated vehicle (ROV). Conventional systems may also be designed to meet application-specific requirements, such as the ability to rotate about an axis and / or release above a predefined load, as is particularly required in oil and gas production applications. A further example is described in JPS 60240594, in which a socket at the end of a cable is received through a slotted opening in a standpipe anchored to the seabed and can be held at the closed top end of the standpipe by tension in the cable. The problem with this configuration is that precise positioning of the cable and socket is required for installation, and the cable and socket are prone to becoming detached from the standpipe unless sufficient tension is maintained on the cable.
[0006] There remains a need to reduce the operational complexity and associated costs (e.g., for deploying an ROV) of separable anchor systems. Summary of the Invention
[0007] According to a first aspect of the present invention, there is provided a mooring system for mooring a floating vessel, comprising: a connector structure having an attachment portion for attachment to a mooring line and an engagement portion; an anchor structure configured to be anchored to the seabed; Equipped with the anchor structure having an open guide groove extending from an entry region to a termination region, the guide groove sized to receive at least the engaging portion of the connector structure; a longitudinal opening extending upwardly from the open guide groove to provide access for a mooring line connected to the attachment portion when the engagement portion is within the guide groove; When the engagement portion engages with the terminal end region of the guide groove, At least the termination region is configured to support the connector structure; A mooring system wherein the engagement portion is held by the termination region against movement of the engagement portion out of the guide channel upward or away from the entrance region.
[0008] The connector structure moves along the guide groove through the entry region to the termination region to connect the connector structure to the anchor structure, the upper opening of the guide groove allowing such movement while the connector structure is attached to the mooring line.
[0009] When the engaging portion of the connector structure engages the termination region at the end of the guide groove, the connector structure can only be removed from the guide groove in the reverse direction toward the entrance region, and further movement of the engaging portion away from the entrance region or upward out of the guide groove is prevented.
[0010] A moored vessel (such as a vessel moored permanently or semi-permanently) may be moored via one or more mooring lines extending to one or more anchors located on the seabed at a distance from the vessel, i.e., not directly below the vessel. To allow for limited movement of the moored vessel at the surface (to accommodate tides, swells, etc.), the mooring lines are provided with some slack. At the seabed, the force exerted on the anchor via the mooring lines is generally along the seabed or may be exerted at an angle to the seabed if the vessel moves away from the anchor. The mooring system can be oriented with respect to the mooring lines such that engagement of the engagement portion with the termination region prevents the connector structure from disengaging from the anchor structure.
[0011] The termination region is also configured to support (i.e., support the weight of) at least the engaging portion of the connector structure, such that the engaging portion of the connector structure remains in the termination region unless urged toward the inlet region. Thus, in use, the connector portion remains connected to the anchor structure even when the mooring line attached to it goes slack. This is particularly beneficial in tidal locations where ocean currents can significantly change the position of a moored vessel.
[0012] It will be appreciated that the termination region is configured to provide such support to the engagement portion when the anchor section is in an orientation that rests on a generally flat seabed.
[0013] In some embodiments, at least the engaging portion of the connector structure is held by the termination region against movement of the engaging portion relative to the anchor structure upward or away from the entrance region.
[0014] The mooring system contrasts with conventional separable moorings or anchors in that the connection can be established while a portion of the mooring line connector or the mooring line itself is extending out of the guide channel. In some embodiments, the mooring line connector can be connected in this manner from the water surface simply via the mooring line, eliminating the need for expensive deployment methods (such as using an ROV).
[0015] In turn, the ease of connection and disconnection from the water surface may allow for the use of thinner mooring lines that have a shorter useful life.
[0016] When the engagement portion is engaged in the terminal region of the guide groove, the attachment portion may be attached to a mooring line that extends generally upward (relative to the seabed), such access between the mooring line and the connector structure being provided by the longitudinal opening.
[0017] The longitudinal opening may extend from the guide groove distally of the termination region, and thus, when the connector structure is engaged with the termination region, it may be connected to a mooring line that extends distally from the termination region generally along the seabed and / or at an angle upward and distally.
[0018] "Proximal" and "distal" and similar terms herein refer to a frame of reference along the guide channel from the entrance region toward the termination region.
[0019] At least a portion of the guide groove, such as the termination region and / or a portion of the guide groove extending therefrom, may extend in a generally horizontal direction, such that in use the engagement portion may be moved in a generally horizontal direction along said at least a portion of the guide groove in use.
[0020] The guide grooves may be defined by appropriately oriented surface regions, each of which may comprise a single surface or multiple surfaces, and the surface regions may be defined by a reticulated surface, such as by a tubular structure.
[0021] The guide groove may be at least partially defined by side regions that may be generally oriented toward one another.
[0022] The guide groove may have a generally upwardly oriented bottom surface region, for example at least in the end region.
[0023] The bottom surface region may extend over the entire guide groove, along all or a portion of the groove.The bottom surface region may extend over a portion of the guide groove, along all or a portion of the groove.
[0024] The bottom surface region may extend between the side surface regions along at least a portion of the guide groove.
[0025] The longitudinal opening may extend between the side regions, along the guide channel, and optionally distally of the end region.
[0026] In the end region, the bottom region may extend on one or both sides (ie, laterally) of the longitudinal opening. In some embodiments, the bottom region may extend between the side regions at the entrance region of the guide channel, and at the termination region of the guide channel, the bottom region may extend from the side regions to either side of the longitudinal opening.
[0027] A vertical longitudinal plane of symmetry may extend along the guide groove, and the guide groove and optionally the entire anchor structure may be symmetrical about the longitudinal plane.
[0028] An entrance area of the guide groove may be configured to allow the mating portion of the connector structure to be lowered into the guide groove.
[0029] The entrance region of the guide channel may be configured so that the engagement portion can be lowered adjacent the entrance region and then moved generally horizontally (distally) into the guide channel.
[0030] At least the entrance region of the guide groove may include a slope, and the slope may be defined by a portion of the bottom region.
[0031] When the engagement portion is lowered into the entrance region and rests on the ramp, the ramp may be oriented to guide the engagement portion distally along the guide groove towards the termination region.
[0032] The inclination may be at an angle of about 40° to 80°, or about 50° to 70°, or about 45°, 50°, 66°, 60°, or 65°, etc., relative to the horizontal plane.
[0033] The slope may have a flat profile or may be curved (eg, parabolic).
[0034] The sloped entrance region may extend to a flat region (ie, a region extending generally along the seabed). The flat region of the guide groove may include a terminal region.
[0035] The transition between the sloped entrance region and the flat region, and optionally the flat termination region, may be abrupt (i.e., may include a corner) or gradual (i.e., may include a smooth transition from sloped to flat).
[0036] In some embodiments, the end regions (and / or any intermediate regions) of the guide groove may be sloped (at the same or different angles). The entire guide groove may be sloped.
[0037] The inclination of each inclined region of the guide groove may be constant or may vary, for example, the inclination may be curved in a direction along the longitudinal direction of the guide groove.
[0038] The entrance region may be configured to receive an engagement portion from within the approach trajectory.
[0039] The extent of the track in the longitudinal plane may be accommodated by a sloped entry region extending between portions of the side regions, as disclosed herein. The entry region may thus taper toward the bottom region when viewed in a vertical plane. Thus, an engaging portion of the connector structure may approach the entry region from within the longitudinal extent of the track between the track extending proximally from the slope and the track extending vertically from the distal-most portion of the entry region (typically coinciding with the proximal-most portion of the termination region).
[0040] The uppermost portion of the inlet region may extend further in the longitudinal plane than the engagement portion, thus accommodating a range of angles (relative to the longitudinal plane) between the engagement portion and the inlet region.
[0041] A range of lateral trajectories relative to the longitudinal center plane may be accommodated by a laterally tapered entrance region, for example, portions of the side regions defining the entrance region may converge distally along the guide groove.
[0042] The entrance region may be generally shaped as an open funnel or chute that tapers distally toward the terminal region of the guide channel.
[0043] The intermediate region and / or the end region may be tapered, for example, the side regions thereof may be tapered. The taper of the entrance region may continue towards the end region. The entire guide groove may be tapered.
[0044] The terminal region of the guide channel may be defined by a distal portion of the bottom region and a distal portion of each side region.
[0045] The termination region may include at least one receiving feature for receiving and engaging an engaging portion of the connector structure (eg, an engaging feature disclosed herein).
[0046] A distal portion of at least one side region may define a receiving feature.
[0047] A distal portion of each side region may define a receiving feature, which may conveniently be identical to one another. The anchor structure may include one or more further receiving features across the distal end of the guide channel.
[0048] The receiving feature may be configured to cooperatively engage with the engaging portion.
[0049] The or each receiving feature may take the form of an angular or rounded recess, a longitudinal slot, etc. on each side of the guide groove. In use, the engaging portion of the connector structure may abut the or each receiving feature to prevent further distal movement, and the or each receiving feature may extend above at least a portion thereof to prevent upward movement of the engaging portion relative to the anchor structure. The connector structure is thereby held by the termination region against movement of the engaging portion upwards or away from the entrance region relative to the anchor structure.
[0050] The anchor structure may comprise a guide section defining a guide channel.The anchor structure may comprise a bottom section adapted to be anchored to the seabed.
[0051] The anchor structure may be adapted to be ballasted.
[0052] The anchor structure may have suitable locations for placing or securing ballast weights thereto.
[0053] At least a portion of the anchor structure may be a hollow structure and may be adapted to be filled with a ballast material.
[0054] At least a portion of the anchor structure may be machined or cast from a block of ballast material, such as a metal block. For example, one or more portions of the anchor structure that define the guide groove may be machined or cast from the ballast material.
[0055] The anchor structure (such as its bottom section) may further comprise a claw for securing the anchor structure to the seabed. Alternatively or additionally, screws, stakes or the like may be used to secure the anchor structure to the seabed.
[0056] The anchor structure may have any suitable configuration, for example, at least a portion of the anchor structure may be constructed from girders, tubular bodies, bars, beams, or the like.
[0057] The anchor structure may be adapted to provide a stable, and in some embodiments generally flat, platform on the seabed. The bottom section may, for example, comprise one or more elongated beams, to which the guide sections may be attached. The guide sections may be attached directly to the bottom section or may be spaced therefrom by a support framework.
[0058] The guide section may be of unitary or hollow construction, or may itself be constructed from a framework such as beams, bars, tubular bodies, etc. The guide groove may be defined by one or more guide surfaces, or may be defined by surfaces of said framework.
[0059] One or more portions of the anchor structure may be hollow structures for receiving ballast material as disclosed herein.
[0060] The mating portion of the connector structure may include mating features corresponding to said receiving features, and the mating features may be configured to cooperatively engage with said receiving features.
[0061] The engagement portion may have an engagement feature extending laterally therefrom for engaging a receiving feature defined by the or each side region.
[0062] In embodiments in which the guide groove is laterally symmetrical (around a longitudinal center plane), the connector structure may be laterally symmetrical around its own longitudinal plane, and the longitudinal planes of the guide groove and connector structure may coincide when the anchor structure and connector structure are engaged with each other.
[0063] The laterally extending engagement feature may comprise a peg or other suitable protrusion. The laterally extending engagement feature may comprise, for example, a rotatable element rotatable about an axis perpendicular to the longitudinal plane. The laterally extending engagement feature may comprise, for example, a mandrel and a bushing or bearing centered on the mandrel.
[0064] A rotatable element such as a bushing or bearing may assist in moving the engagement portion along the guide groove. Over time, movement caused by different tensions on the mooring lines (e.g., in tides or swells) is facilitated by rotation of the connector structure about the rotatable engagement feature, reducing wear between the two surfaces.
[0065] The attachment portion may include any suitable means for connection to the mooring line, such as a simple eyelet, or two or more eyelets, etc. The attachment portion may be adapted to facilitate lateral and / or vertical movement of the mooring line attached thereto.
[0066] For example, the attachment portion may comprise a universal joint, one or more H-plates (optionally having mutually perpendicular eyelets at their ends), or other suitable means for attaching mooring lines.
[0067] The attachment portions may be symmetrically disposed relative to the longitudinal plane extending through the connector structure, such symmetry may assist in balancing and orienting the connector structure during connection and disconnection with the anchor structure.
[0068] The connector structure may include a generally triangular configuration between the mounting portion and the engagement feature.
[0069] The connector structure may include one or more further connectors for connecting hoisting lines. The hoisting line connectors may be releasable. The connectors may be remotely releasable.
[0070] Any suitable configuration for remote release of the towing line can be used, for example, controlled by a control line that may be arranged with the towing line. For example, the towing line can be released via a hydraulically actuated pin powered via one or more hydraulic control lines. The towing line may include a remotely releasable hook controlled by the retraction line. In some embodiments, the towing line may be configured as a so-called "endless line" that is secured around the connector structure or its eyelet and folded back up towards the water surface.
[0071] In some embodiments, reconnection may be established remotely by similar means.
[0072] In use, the connector structure may be connected to a tow line and lowered through the water column into the entrance area. For this purpose, the connector structure may also or alternatively be connected to a mooring line. Alternatively, the tow line may be used primarily to control the position of the connector structure in the water column, and the mooring line may be used for additional control to guide the engagement portion along the guide groove.
[0073] Dedicated guide lines (optionally of lighter construction than mooring lines) may also be utilized to connect to the connector structure at or proximal to the attachment portion.
[0074] The anchoring system may include a lid structure sized to be positioned at and block the entrance portion of the guide channel, and the lid structure may extend entirely across the guide channel.
[0075] The lid structure may optionally be positioned at the entrance portion of the guide channel to reduce fouling (e.g., buildup of silt or marine life) of the surface area defining the guide channel. The lid structure may also resist movement of the engagement portion in a proximal direction toward the entrance portion of the guide channel in use. The lid structure may prevent or resist movement of the engagement portion away from the terminal region of the guide channel.
[0076] The lid structure may be of any suitable construction, but is conveniently a hollow or solid construction to most effectively protect the entry area from contamination. The lid structure may be ballasted or adapted to be ballasted. A connector (which may be releasable, and optionally remotely releasable) is provided on the top of the lid structure, by which the lid structure may be raised or lowered in use.
[0077] The mooring system may include a mooring line attached to a mounting portion of the connector structure. The mooring line may be a braided cable, a chain, or the like.
[0078] The mooring system may include a tow line for connection to the connector structure, which may be a braided cable, chain, or the like.
[0079] The mooring lines may be of relatively heavy construction to withstand the forces exerted on the mooring vessel. The towing lines may be of lighter construction than the mooring lines, and in some embodiments, movement of the connector structure may be more easily controlled using lighter weight towing lines. Similar considerations apply to towing lines used to move the lid structure or to deploy anchor structures, ballast, etc., as will be discussed in more detail below.
[0080] The mooring system may include surface equipment such as may be required to raise and lower the anchor structure, connector structure, and lid structure, if present. The surface equipment may include a mechanical winch. The surface equipment may include one or more vessels and / or one or more floats for use in exerting force on the mooring lines and / or any guide lines of the hauling lines.
[0081] According to a second aspect of the present invention, there is provided a method of connecting a mooring line to a seabed, comprising the steps of: providing a connector structure having an attachment portion attached to a mooring line and an engagement portion, and an anchor structure anchored to the seabed, the anchor structure having an open guide groove sized to receive at least the engagement portion of the connector structure, a longitudinal opening extending upwardly from the open guide groove; lowering the engaging portion of the connector structure into an entrance area of the guide groove, or lowering the engaging portion adjacent to the entrance area of the guide groove and moving the engaging portion generally horizontally into the entrance area; moving the engagement portion distally along the guide channel from the entrance region to the end region of the guide channel; engaging the engaging portion of the connector structure with the terminal portion of the guide groove such that the terminal portion is configured to retain the engaging portion and support the connector structure against movement of the engaging portion upward or away from the entrance area; extending the mooring line from the attachment portion in a direction generally upward or distally away from the entrance region relative to the guide channel; A method for providing
[0082] It will be appreciated that the engagement portion is moved distally along the guide groove from an entrance region to an end region of the guide groove while the tether is connected to the attachment portion. The longitudinal opening provides access for the tether to remain connected to the attachment portion throughout this process. The tether may need to be moved, for example, to pivot the connector structure, and the longitudinal opening to the guide groove provides such access.
[0083] As the mooring lines extend generally distally away from the inlet region, tension is applied through the mooring lines generally along the seabed, acting to hold the connector structure in engagement with the anchor structure.
[0084] A range of directions is understood to be encompassed by the term "generally distally away from the inlet region," provided that the primary component of the force applied between the connector structure and the anchor structure acts to hold them engaged with one another. An upward component of the force may be applied via the mooring line when the vessel to which the mooring line extends moves on the water. Engagement of the engaging portion with the terminal region of the guide groove prevents the connector structure from being removed from the guide groove.
[0085] The method may include moving the engagement portion in a generally horizontal direction along at least a portion of the guide channel. For example, as disclosed herein, the engagement portion may be moved in a generally horizontal direction to engage the termination region and / or the engagement portion may be guided along an angled entry portion into a generally horizontal portion of the guide channel.
[0086] The method may include lowering a connector structure through the water column. The connector structure may be lowered through the water column while at least partially suspended from said mooring lines. The connector structure may be lowered through the water column while at least partially suspended from a tow line. The method may include attaching the tow line (via one or more connectors disclosed herein) to the connector structure.
[0087] Movement of the engagement portion into the entrance area and along the guide groove towards the termination area may be effected by the mooring line and / or the hauling line, if present.
[0088] In some embodiments, guide lines may also be connected to the connector structure (optionally at the water surface), and movement of the connector structure through the water column into the entrance region and / or along the guide groove may be guided, at least in part, by the guide lines.
[0089] Movement of the connector structure through the water column into the inlet region and / or along the guide groove towards the termination region may be controlled at or above the water surface.
[0090] The method may comprise deploying and / or retrieving the mooring, tug, and / or guide lines, thereby performing one or more steps of the method. The method may comprise moving a vessel on the surface of the water to apply a force to the mooring, tug, and / or guide lines, thereby performing one or more steps of the method. The method may include pulling or dragging a connector portion through the mooring, guide, and / or tug lines.
[0091] While the connector structure is entering the entrance area and / or moving along the guide groove to the termination area, one or more of a mooring line, a retrieval line, and / or a guide line may be attached or connected to the connector structure through the longitudinal opening.
[0092] During entry of the connector structure into the entrance area and / or movement along the guide groove to the termination area, one or more of a mooring line, a retrieval line, a guide line, and / or an attachment portion may extend through the longitudinal opening.
[0093] The step involving moving the connector portion does not involve the use of an ROV and / or diving personnel.
[0094] The tether may extend distally away from the entrance region before, during, or after movement of the engagement portion along the guide groove.
[0095] The method may comprise laying at least a length of mooring line along the seabed.
[0096] The longitudinal opening may extend from the guide groove distally of the termination region, and the method may include extending the mooring line from the attachment portion in a generally horizontal direction, such as along the seabed.
[0097] The method may comprise lowering the engagement portion into a sloped entrance region, the slope biasing the engagement portion towards the end region of the guide channel.
[0098] The method may comprise connecting (by any suitable means) a mooring line to an attachment portion above the water surface.
[0099] The method may comprise anchoring the anchor structure to the seabed, which may be performed by one or more of ballasting (e.g., placing ballast weights on the anchor structure), drilling and piling into the seabed, driving anchor claws into the seabed, or any other suitable anchoring method known in the art.
[0100] The method may comprise lowering the anchor structure through the water column, for example by a tow line.
[0101] The method may include decoupling the lift line from the connector structure and / or anchor structure. Such decoupling may be achieved by introducing slack into the lift line, thereby "unhooking" the lift line from one or more connectors, such as by using a control line or by an endless line.
[0102] The guide groove may have a vertical longitudinal center plane. The method may include moving the engagement portion into the entrance region along a trajectory within a range of lateral trajectories away from the longitudinal plane. The method may include contacting the engagement portion with a tapered entrance region of the guide groove, whereby the engagement portion slides or rolls against the tapered entrance region and is thereby guided toward the termination region.
[0103] The method may comprise inserting a lid structure into the entrance region.
[0104] The method may further comprise removing the lid structure from the entrance area to allow subsequent movement of the engagement portion into the entrance area.
[0105] The lid structure may be inserted and / or removed using a lift line.
[0106] Thus, the method may include connecting and / or disconnecting a lift line from the lid structure. In embodiments where a lift line is used for the connector structure, the same or a different lift line may be used for the lid structure.
[0107] The connection and / or disconnection of the tow line may be performed at the surface above the seabed. The connection and / or disconnection of the tow line to / from the lid structure at the seabed may be controlled from the surface.
[0108] The method may comprise the use of the mooring system of the first aspect.
[0109] The method may include a mooring vessel, such as the floating power generation unit described in WO2018 / 115806. The method may include connecting a proximal end of a mooring line to the vessel. This may occur before or after lowering the connector structure through the water column (e.g., after the connector structure engages the anchor structure). The proximal end of the mooring line may be transferred, for example, from a deployment vessel for deploying the mooring system to the vessel to be moored.
[0110] The method may comprise connecting two or more mooring lines, for example two or more mooring lines extending from a single vessel.
[0111] According to a third aspect of the present invention there is provided a method of disconnecting mooring lines, which may comprise carrying out the steps of the method of the second aspect in reverse order.
[0112] The method for separating the mooring lines is as follows: providing a connector structure having an attachment portion attached to a mooring line and an engagement portion, and an anchor structure anchored to the seabed, the anchor structure having an open guide channel including a longitudinal opening extending upwardly from the open guide channel; the engagement portion engages the end region of the guide channel, and the tether extends from the attachment portion in a direction generally distally away from an entrance region of the guide channel relative to the guide channel; The method includes the steps of: moving the engagement portion proximally along the guide channel from the termination region to the entrance region of the guide channel; and either lifting the engaging portion of the connector structure out of the entrance area of the guide groove or moving the engaging portion generally horizontally out of the entrance area.
[0113] In some embodiments, the method may include separating the connector structure from the anchor structure while the mooring line extends generally distally from the entry region. For example, the method may include connecting a retrieval line to the connector structure and moving the connector structure proximally, away from the termination region, and out of the entry region.
[0114] In some embodiments, the method may include moving the mooring line so that it extends generally upward and / or proximally toward the inlet region.
[0115] The method may comprise, at least in part, moving the connector structure proximally away from the termination region and out of the entry region by pulling on a mooring line. Alternatively or additionally, a lift line and / or a guide line may be used.
[0116] The present invention is not limited to marine applications, but is also useful in any body of water, including lakes, rivers, estuaries, etc. Accordingly, references herein to the "ocean bed" should be considered to apply to the bottom of any such body of water, and are therefore interchangeable with "river bed," "lake bed," etc.
[0117] Terms such as "up," "down," "horizontal," "vertical," "along," "to the side of," "flat," "lateral," or "laterally" refer to the orientation of the anchor section when laid on a flat seabed and should not be interpreted to exclude such characteristics for other orientations of the anchor. It should be understood that in use, the orientation of the anchor structure may differ from horizontal due to the slope of the seabed, debris, or other features.
[0118] Optional features disclosed herein with respect to an aspect of the invention are intended to correspond to optional features of any other aspect of the invention. Thus, disclosure herein of the function, structure, or use of features of an apparatus should be understood to correspond to steps in the methods disclosed herein, and disclosure herein with respect to a method should also be understood to encompass apparatus having such features necessary to practice such a method. [Brief explanation of the drawings]
[0119] Non-limiting exemplary embodiments will now be described with reference to the following figures:
[0120] [Figure 1] FIG. 1 is a perspective view of a mooring system. [Figure 2] FIG. 1 is an exploded perspective view of a mooring system. [Figure 3] FIG. 10 is a perspective cross-sectional view of the mooring system without the lid structure inserted in the entrance area of the guide channel. [Figure 4] 1 is a perspective cross-sectional view of the mooring system with the lid structure inserted into the entrance area of the guide channel; FIG. [Figure 5] FIG. 1 shows a ship during deployment of a mooring system. [Figure 6] FIG. 10 is a schematic plan view of an alternative anchor structure. DETAILED DESCRIPTION OF THE INVENTION
[0121] 1-4 show an embodiment of a mooring system 1. The mooring system includes a connector structure 10 and an anchor structure 20 that, in use, rests on the seabed. The system also includes a lid structure 30, which is discussed in more detail below.
[0122] The anchor structure 20 defines a guide groove, generally indicated as 22, that extends from an entry region 24 to a termination region 26. The termination region includes receiving features in the form of recesses or hooks 200, 202 that retain the connector structure, as will be discussed in more detail below.
[0123] The sides of the channel are defined by side plates 28a and 28b. The bottom area of the guide channel 22 (including the sloped surface 24a of the entrance area 24) is defined by a cast block 28c in the illustrated embodiment, providing ballast for the anchor structure.
[0124] Side plates 28a and 28b also include optional tapered projections 228a and 228b which, in use, help guide the connector structure towards the entry area and into engagement with the anchor structure.
[0125] In alternative embodiments, separate ballast may be used, the entire anchor structure or the portion defining the channel may be cast or otherwise formed from a single block, or hollow, tubular, girders or indeed any other suitable form of structure may be used. In further embodiments, the receiving features may be integral to the side plates.
[0126] The guide groove 22 opens along its upper side between the side plates and receiving features from the entrance region 24 to the termination region 26. In the embodiment shown, the upper opening of the guide groove also extends distally of the termination region and is blocked in Figures 1, 3, and 4 by a mooring line attachment portion (discussed below).
[0127] The connector structure 10 includes a mounting portion 12 toward one end thereof and an engagement portion 14 toward the other end thereof. Like the anchor structure 20, the connector structure shown is symmetrical about a longitudinal plane.
[0128] Guide groove 22 is sized to accommodate engagement portion 14. When the engagement portion engages terminal region 26 of guide groove 22, it is prevented from moving further distally D or upwardly U out of the guide groove. Terminal region 26 is also configured to support the weight of the engagement portion (in the illustrated embodiment, by the upward orientation of its bottom region). Thus, in the absence of force applied to connector structure 10, the engagement portion remains so engaged.
[0129] Engagement portion 14 includes two engagement features 140 and 142 extending laterally therefrom. The engagement features are sized to cooperatively engage respective receiving features 200, 202. Because the connector structure and anchor structure are symmetrical, either engagement feature can engage either receiving feature.
[0130] Each of the engagement features 140, 142 includes a central pin or axis 140b, 142b around which a rotatable member 140a, 142a (in the form of a bearing or bushing) is located. When the rotatable member 140, 142 engages the end region of the guide groove, it allows the connector portion to rotate without excessive wear. Such movement is typically achieved by connection to a mooring line during use.
[0131] The attachment portion 12 includes a means, such as a mooring chain, for attaching a mooring line to the connector structure. The attachment portion includes an eyelet 120 through which a pin 121 of an H-plate 122 is secured. This arrangement allows lateral movement of the mooring chain (not shown) relative to the connector portion, thereby reducing lateral forces and therefore movement of the connector portion in use.
[0132] The mooring system 1 further includes a lid structure 30 sized to be received in and block the entrance region 24 of the guide channel 22. In the illustrated embodiment, the lid structure 30 advantageously extends across the entire bottom area extending between the sides of the guide channel, blocking the entrance region 24 and preventing marine life, silt buildup, or other fouling of the guide channel that might otherwise interfere with connection or disconnection of the connector structure to the anchor structure. The lid structure also prevents or resists movement of the engagement portion away from the end region of the guide channel. The lid structure includes connector eyelets 32, 33 for hoisting and / or guiding the lid structure using a hoisting or guide line.
[0133] The mooring system 1 may be used to connect a mooring line 40 to the seabed. At the surface, the mooring line 40 can be connected to the attachment portion 12 of the connector structure 10 in a conventional manner, such as by passing a pin 123 and bolt 124 connection at the end of an H-plate 122 of the connector structure through a loop of mooring chain or an end loop of a mooring cable.
[0134] 5, a lighter weight lift line 50 may be secured to the connector structure 10. A bridle 52 at the end of the lift line may be connected to a releasable connector, such as a hook or eyelet, adjacent the engagement portion 14 of the connector structure 10. The bridle 52 may alternatively be looped around the laterally extending engagement features 140, 142.
[0135] The connector portion can then be lowered through the water column from a vessel 60. In the embodiment shown, this is a deployment vessel, which has a winch 62 and rollers 64 for deploying the mooring lines 40. A crane 66 includes a corresponding winch (not shown) for deploying the tow lines 50. The crane is rotatable and extendable to control the position of the connector structure 10, as discussed below.
[0136] The engaging portion 14 of the connector structure 10 is then lowered into the entrance region 24 of the guide groove 22. The inclined surface 24a of the entrance region 24 is sloped to deflect the engaging portion 14 generally downward and laterally along the inclined surface toward the termination region 26 of the guide groove.
[0137] The distal end 24b of the entrance region, which extends downward to form a line between the proximal ends of the termination regions, and the sloped surface 24a are tapered toward one another so that the upper end of the entrance region (i.e., in the illustrated embodiment, level with the top of block 28c) is larger in the longitudinal plane than the engagement portion 14. The entrance region is thereby configured to receive the engagement portion from within a range of trajectories in the longitudinal plane and / or a range of relative angles between the engagement portion and the entrance region.
[0138] The tapered protrusions 228a and 228b on the side plates 28a and 28b also assist in biasing the engagement portion toward the entrance region when the engagement portion is lowered along a trajectory that is laterally offset from the longitudinal center plane of the guide groove.
[0139] The longitudinal opening along the guide groove allows the engagement portion 14 to enter and move along the guide groove to its termination region 26 while the attachment portion 12 is connected to the mooring line 40. In the illustrated embodiment, the longitudinal groove is wide enough to allow the portion of the connector structure 10 around the H-plate 122 and eyelet 120 to extend at least partially into or through the longitudinal opening, in a range of orientations from a generally vertical orientation (relative to the engagement portion) to a generally horizontal orientation along the seabed, as shown in the figures.
[0140] The connector structure may be deployed from the stern of the vessel 60, as shown in FIG. 5, and the mooring lines 40 may be let out or retracted as needed to provide some control over the position of the connector structure 10 and to at least partially assist in guiding the engaging portion 12 along the guide groove 22 to the terminal portion 26.
[0141] Alternatively, an additional guide chord may be used (not shown).
[0142] As the engagement features 140, 142 move into engagement with the receiving features 200, 202 in the terminal region 26 of the guide channel 22, the lifting line 50 can be released by releasing a hydraulically actuated pin, such as a Hydraulic Release Shackle (HRS) manufactured by LM Handling of Camborne, UK. The hydraulic pin mechanism, hydraulic control line and associated equipment are not shown in the figures.
[0143] In a final step, the lid structure 30 can be lowered into the entrance area 24 using the same or another lifting line. As can be seen by comparing Figures 3 and 4 (shown in a side view without side plates 28b so that the contours of the guide grooves can be seen), the lid structure 30 is configured to extend longitudinally from end to end across the entire entrance area. Additionally, the lid structure 30 has a contour that is the inverse of the contour of the ramp 24a.
[0144] The lid structure not only protects the guide groove from dirt, but also provides an additional barrier to removal of the engagement portion 14 from the guide groove.
[0145] The mooring lines 40 can be separated by generally reversing these steps. However, in some embodiments, removal of the engagement portions 14 from the guide grooves 22 can be accomplished under the influence of the mooring lines alone, without the use of a lift line. The longitudinal grooves allow the attachment portions 12 of the mooring lines to swing or pivot (about the rotating members 140a, 142a) so that they are oriented generally in the proximal direction P relative to the guide grooves, thereby allowing the connector structure 10 to be pulled therefrom under the influence of the mooring lines 40.
[0146] As noted above, the relative ease and transparency of connecting and disconnecting mooring lines, which can be controlled substantially or entirely from the water surface (by moving the vessel 60, winch 62, and / or crane 66), allows the mooring lines to be retrieved, inspected, or replaced more quickly, simply, and cost-effectively. In turn, because these operations are not prohibitively expensive, the mooring lines themselves do not necessarily need to be kept in place for such long periods of time and can be of lighter and / or more cost-effective construction.
[0147] 6 shows a schematic plan view of another anchor structure 70. Similar to anchor structure 20, anchor structure 70 has a guide groove 722. Guide groove 722 extends from an entry region 724 to a termination region 726. The termination region includes receiving features in the form of recesses or hooks 7200, 7202 that retain the connector structure.
[0148] The sides of the groove are defined by side plates 728a and 728b, which taper outwardly toward the proximal end of the groove to define a laterally tapered entrance region 724, thereby further assisting in guiding the mating portion of the connector structure from within the lateral approach trajectory toward a termination region 726 of the groove 722.
[0149] Although exemplary embodiments have been described herein, these should not be construed as limitations on modifications and variations that may be within the scope of the invention disclosed herein and set forth in the appended claims.
Claims
1. 1. A mooring system for mooring a floating vessel, comprising: a connector structure having an attachment portion for attachment to a mooring line and an engagement portion; an anchor structure configured to be anchored to the seabed; Equipped with the anchor structure having a guide groove extending from an angled entry region to a termination region, the guide groove sized to receive at least the engaging portion of the connector structure; When the anchor structure is placed on a flat seabed, the guide groove extends from the inclined entrance region to the flat region and to the end region; and when the engaging portion engages the end region of the guide groove, at least the end region is configured to support the connector structure, and the end region holds the engaging portion against movement of the engaging portion upward out of the guide groove or against movement of the engaging portion out of the guide groove away from the inclined entrance region; a lid structure positioned at and sized to block the inclined entrance region of the guide channel. Mooring system.
2. 2. The mooring system of claim 1, wherein the guide groove is at least partially defined by a bottom surface region extending between side regions generally oriented toward one another, the bottom surface region being generally upwardly oriented at least in the terminal region of the guide groove.
3. 3. The mooring system of claim 1 or 2, wherein the guide groove is at least partially defined by side regions oriented generally towards each other.
4. 4. The mooring system of claim 1, wherein the sloped entrance area of the guide groove is configured to allow the engaging portion of the connector structure to be lowered into the guide groove.
5. 5. The mooring system of claim 4, wherein at least the inclined entrance region of the guide groove comprises a slope that is oriented to guide the engagement portion along the guide groove from the inclined entrance region toward the termination region when the engagement portion is lowered into the inclined entrance region and rests on the slope.
6. 6. The mooring system of claim 1, wherein the terminal region of the guide groove comprises at least one receiving feature for receiving and engaging the engagement portion of the connector structure.
7. 7. The mooring system of claim 6, wherein the guide groove is at least partially defined by side regions generally oriented toward each other and a bottom region extending between the side regions and generally oriented upward, and an end region side of one or both side regions defines the receiving shape.
8. 8. A mooring system according to claim 6 or 7, wherein the engaging portion of the connector structure comprises an engaging feature corresponding to the or each receiving feature.
9. A mooring system according to claim 8 , wherein the or each engagement feature comprises a rotatable element.
10. 10. A mooring system according to any one of claims 1 to 9, wherein the anchor structure is configured to have ballast weights placed on or secured thereto, and / or has a hollow structure filled with ballast material, and / or is provided with a claw for securing the anchor structure to the seabed, and / or is secured to the seabed by screws or pegs.
11. 11. A mooring system according to any one of claims 1 to 10, wherein the attachment portion is adapted to facilitate lateral and / or vertical movement of the mooring line attached thereto.
12. A mooring system according to any preceding claim, comprising a mooring line attached to the attachment portion of the connector structure.
13. 13. A mooring system according to any preceding claim, comprising a tow line for connection to the connector structure.
14. 1. A method of connecting a mooring line to the seabed, comprising: providing a connector structure having an attachment portion attached to a mooring line and an engagement portion, and an anchor structure anchored to the seabed, the anchor structure having a guide groove extending from a sloped entry region to a flat region and a termination region when the anchor structure is placed on a flat seabed, the guide groove being sized to accommodate at least the engagement portion of the connector structure; lowering the engaging portion of the connector structure into the inclined entrance area of the guide groove; moving the engagement portion along the guide groove from the inclined entrance region to the end region; engaging the engaging portion of the connector structure with the terminal region of the guide groove such that the terminal region supports the connector structure, the terminal region holding the engaging portion against movement of the engaging portion upwardly out of the guide groove or against movement of the engaging portion out of the guide groove away from the sloped entrance region when the anchor structure is placed on a flat seabed; extending the mooring line from the attachment portion generally upwardly from the anchor structure or away from the anchor structure in a direction from the sloped entry region toward the termination region; inserting a lid structure into the inclined entrance area; A method for providing
15. 15. The method of claim 14, comprising lowering the connector structure while it is at least partially suspended from a tow line or from the mooring line.
16. 16. The method according to claim 15, wherein the movement of the engagement portion into the inclined entrance area and along the guide groove towards the termination area is effected by the mooring line and / or the hauling line being controlled at or above the water surface.
17. 17. The method of claim 15 or 16, wherein the mooring line is attached or connected to the connector structure while the connector structure is entering the inclined entrance area and / or moving along the guide groove to the termination area.
18. 18. The method of any one of claims 14 to 17, wherein the mooring line extends from the inclined entrance region towards the termination region before, during or after movement of the engagement portion along the guide groove.
19. 19. The method of any one of claims 14 to 18, comprising lowering the engagement portion into a sloped entrance region, the slope biasing the engagement portion towards the end region of the guide channel.
20. 1. A method for separating mooring lines, comprising: providing a connector structure having an attachment portion attached to a mooring line and an engagement portion, and an anchor structure anchored to the seabed, the anchor structure having a guide groove extending from a sloped entry region to a flat region and a termination region when the anchor structure is placed on a flat seabed, the guide groove being sized to accommodate at least the engagement portion of the connector structure; the engaging portion engages the termination region, the termination region retains the engaging portion and supports the connector structure, the termination region retains the engaging portion against movement of the engaging portion upwardly out of the guide groove or against movement of the engaging portion out of the guide groove away from the inclined entrance region when the anchor structure is placed on a flat seabed, and the mooring line extends from the attachment portion generally upwardly from the anchor structure or away from the anchor structure in a direction from the inclined entrance region towards the termination region; The method comprises: removing a lid structure from the sloped entrance area; moving the engagement portion along the guide groove from the end region toward the inclined entrance region; lifting the engaging portion of the connector structure out of the angled entry area or moving the engaging portion generally horizontally out of the angled entry area; A method for providing
21. 21. The method of claim 20, wherein the connector structure is moved out of the guide channel via the tether.
Citation Information
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