Taut inverted catenary mooring system

US10059409B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10059409-B2
Application numberUS-201514875850-A
CountryUS
Kind codeB2
Filing dateOct 6, 2015
Priority dateOct 9, 2014
Publication dateAug 28, 2018
Grant dateAug 28, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A Taut-Inverted-Catenary (TIC) mooring system may be implemented using only field-proven components. The mooring lines yield a positive uplift force on the anchors in all conditions. In the inverted-catenary configuration, geometric stiffness is provided by a subsurface spring buoy or distributed buoyancy elements on the line. The TIC system consists as much as possible of light-weight components, such as polyester fiber rope. Since the uplift force on the anchor is always positive, clearance between polyester rope and the seabed is provided. All geometric stiffness is provided by the spring buoy. Therefore, a ground chain between the seafloor anchor and the fiber rope is not necessary.

First claim

Opening claim text (preview).

What is claimed is: 1. A mooring system comprising: a buoyant body; and, a plurality of mooring legs, each mooring leg comprising a seafloor anchor having a total holding power sufficient to remain fixed on the seafloor; a subsea buoyancy element; a first mooring line segment that extends upwards from the seafloor anchor and is connected at a first end thereof to the seafloor anchor and at an opposing second end to the buoyancy element; and, a second mooring line segment that extends generally upwards from the buoyancy element and is connected at a first end thereof to the buoyancy element and at an opposing second end to the buoyant body such that the second mooring line segment provides some uplift force to the subsea buoyancy element, wherein each mooring leg is configured such that it exerts a positive uplift force on the seafloor anchor under all offset and vertical loading conditions of the buoyant body. 2. The mooring system recited in claim 1 wherein the buoyant body is submersible. 3. The mooring system recited in claim 1 wherein the buoyant body has adjustable buoyancy. 4. The mooring system recited in claim 1 wherein the buoyant body comprises a buoyant turret mooring (BTM) buoy. 5. The mooring system recited in claim 1 wherein each seafloor anchor is positionable on the seafloor. 6. The mooring system recited in claim 1 wherein each mooring leg is devoid of a ground chain. 7. The mooring system recited in claim 1 wherein the first mooring line segment comprises polyester fibers. 8. The mooring system recited in claim 1 wherein the second mooring line segment comprises polyester fibers. 9. The mooring system recited in claim 1 wherein the first mooring line segment comprises aramid fibers. 10. The mooring system recited in claim 1 wherein the second mooring line segment comprises aramid fibers. 11. A mooring system for a surface vessel comprising: a plurality of mooring legs, each mooring leg comprising a seafloor anchor having a total holding power sufficient to remain fixed on the seafloor; a subsea buoyancy element; a first mooring line segment that extends upwards from the seafloor anchor and is connected at a first end thereof to the seafloor anchor and at an opposing second end to the buoyancy element; and, a second mooring line segment that extends generally upwards from the buoyancy element and is connected at a first end thereof to the buoyancy element and at an opposing second end to the surface vessel such that the second mooring line segment provides some uplift force to the subsea buoyancy element, wherein each mooring leg is configured such that it exerts a positive uplift force on the seafloor anchor under all offset and vertical loading conditions of the surface vessel. 12. The mooring system for a surface vessel recited in claim 11 wherein the surface vessel is selected from the group consisting of tension leg platforms (TLPs), semi-submersibles, FPSO's and FSOs. 13. The mooring system recited in claim 11 wherein each seafloor anchor is positionable on the seafloor. 14. The mooring system recited in claim 11 wherein each mooring leg is devoid of a ground chain. 15. The mooring system recited in claim 11 wherein the first mooring line segment comprises polyester fibers. 16. The mooring system recited in claim 11 wherein the second mooring line segment comprises polyester fibers. 17. The mooring system recited in claim 11 wherein the first mooring line segment comprises aramid fibers. 18. The mooring system recited in claim 11 wherein the second mooring line segment comprises aramid fibers. 19. The mooring system recited in claim 11 wherein the first mooring line segment comprises ultra-high-molecular-weight polyethylene fibers. 20. The mooring system recited in claim 11 wherein the second mooring line segment comprises ultra-high-molecular-weight polyethylene fibers. 21. A method for mooring a buoyant turret mooring (BTM) buoy comprising: installing a plurality of anchors in the seafloor at preselected positions, each mooring legs, each a seafloor anchor having a total holding power sufficient to remain fixed on the seafloor; providing an equal plurality of subsea buoyancy elements; connecting a first mooring line segment at a first end thereof to each seafloor anchor, the first mooring line segment extending upwards from the seafloor anchor and connected and at an opposing second end to a buoyancy element; and, connecting a second mooring line segment at a first end thereof to the buoyancy element that extends generally upwards from the buoyancy element and is connected and at an opposing second end to the BTM buoy such that the second mooring line segment provides some uplift force to the subsea buoyancy element, wherein a positive uplift force is exerted on each of the seafloor anchors under all offset and vertical loading conditions of the BTM buoy. 22. A mooring system comprising: a buoyant body; and, a plurality of mooring legs, each mooring leg comprising a seafloor anchor having a total holding power sufficient to remain fixed on the seafloor; a first subsea buoyancy element; a second subsea buoyancy element; a first mooring line segment that extends upwards from the seafloor anchor and is connected at a first end thereof to the seafloor anchor and at an opposing second end to the first buoyancy element; a second mooring line segment that extends generally upwards from the first buoyancy element and is connected at a first end thereof to the first buoyancy element and at an opposing second end to the second buoyancy element such that the second mooring line segment provides some uplift force to the first subsea buoyancy element; and, a third mooring line segment that extends generally upwards from the second buoyancy element and is connected at a first end thereof to the second buoyancy element and at an opposing second end to the buoyant body such that the third mooring line segment provides some uplift force to the second subsea buoyancy element, wherein each mooring leg is configured such that it exerts a positive uplift force on the seafloor anchor under all offset and vertical loading conditions of the buoyant body. 23. A mooring system comprising: a buoyant body; and, a plurality of mooring legs, each mooring leg comprising a seafloor anchor having a total holding power sufficient to remain fixed on the seafloor; a taut mooring line that extends generally upwards from the seafloor anchor and is connected at a first end thereof to the seafloor anchor and at an opposing second end to the buoyant body; and, one or more buoyancy elements on a selected length of the mooring line, wherein each mooring leg is configured such that it exerts a positive uplift force on the seafloor anchor under all offset and vertical loading conditions of the buoyant body. 24. The mooring system recited in claim 23 wherein the one or more buoyancy elements comprise a buoyant jacket substantially surrounding the selected length of the buoyant mooring line. 25. The mooring system recited in claim 23 wherein the one or more buoyancy elements comprise buoyancy cans or foam buoys attached to the selected length of the mooring line.

Assignees

Inventors

Classifications

  • submerged, e.g. fitting into ship-borne counterpart with or without rotatable turret, or being releasably connected to moored vessel · CPC title

  • and comprising a restoring force in the mooring connection provided by means of weight, float or spring devices · CPC title

  • B63B21/502Primary

    by means of tension legs · CPC title

  • B63B22/02Primary

    specially adapted for mooring a vessel · CPC title

  • connected to submerged buoy (mooring buoys per se B63B22/02) · CPC title

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What does patent US10059409B2 cover?
A Taut-Inverted-Catenary (TIC) mooring system may be implemented using only field-proven components. The mooring lines yield a positive uplift force on the anchors in all conditions. In the inverted-catenary configuration, geometric stiffness is provided by a subsurface spring buoy or distributed buoyancy elements on the line. The TIC system consists as much as possible of light-weight componen…
Who is the assignee on this patent?
Single Buoy Moorings
What technology area does this patent fall under?
Primary CPC classification B63B21/502. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 28 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).