IP Library Granted Patent US 12,480,270
Granted Patent B2
US 12,480,270 · App. 19/205,119 · Granted Nov 25, 2025

Submersible offshore platform and method of installing the same

Inventor: Mark A. Danaczko (Houston, TX)
E02B17/0004E02B17/021E02B2017/0091
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Quick Facts
Patent No.
US 12,480,270
App. No.
19/205,119
Granted
Nov 25, 2025
Kind
B2
Abstract

Provided is a submersible offshore platform configured to be installed at a sea floor installation site and a method of installing the offshore platform. The offshore platform may include: a primary node and a primary column disposed thereon; a plurality of support nodes; a plurality of pontoon sections, each of the plurality of pontoon sections configured to connect the plurality of support nodes to the primary node or to each other; a plurality of buoyant modules, wherein each of the plurality of buoyant modules is detachably connected to a respective support node; and a primary column support system, wherein the primary column support system includes: a plurality of vertical supports fixed around a perimeter of the primary column, each of the plurality of vertical supports having one end connected to the primary column node; and a support structure connecting a top portion of each of the plurality of vertical supports to the primary column.

Claims (41)

1 . An offshore platform configured to be submerged and installed at a sea floor installation site, the offshore platform comprising:

a primary node and a primary column disposed thereon;

a plurality of support nodes;

a plurality of pontoon sections, each of the plurality of pontoon sections configured to connect the plurality of support nodes to the primary node or to each other;

a plurality of buoyant modules, wherein each of the plurality of buoyant modules is detachably connected to a respective support node; and

a primary column support system, wherein the primary column support system comprises:

a plurality of vertical supports fixed around a perimeter of the primary column, each of the plurality of vertical supports having one end connected to the primary column node; and

a support structure connecting a top portion of each of the plurality of vertical supports to the primary column,

wherein the plurality of buoyant modules are removable from the plurality of support nodes after the offshore platform is submerged and installed at the sea floor installation site.

2 . The offshore platform of claim 1 , wherein the primary column is configured to support a power generating system including a wind turbine.

3 . The offshore platform of claim 1 , wherein the plurality of buoyant modules are reusable after the offshore platform is submerged and installed at the sea floor installation site.

4 . The offshore platform of claim 1 , wherein the plurality of support nodes and the plurality of buoyant modules are detachably connected by a coupling means, and

wherein the offshore platform is submerged in water by controlling a length of the coupling means connecting the support nodes and the buoyant modules.

5 . The offshore platform of claim 4 , wherein the coupling means is one of wire, chain, or cable, or a combination thereof, one end of the coupling means is connected to the support node and another end of the coupling means is connected to the buoyant module, and the coupling means is detachable at the one end connected to the support node.

6 . The offshore platform of claim 4 , wherein the coupling means is stored within the buoyant modules prior to the submergence of the offshore platform.

7 . The offshore platform of claim 1 , wherein each of the plurality of support nodes have a hollow interior configured to at least partially accommodate the buoyant module therein.

8 . The offshore platform of claim 1 , wherein each of the plurality of buoyant modules is a support column disposed above the plurality of support nodes, and the offshore platform is submerged in water by ballasting the support columns and at least one of the primary node, the primary column, the plurality of support nodes, and the plurality of pontoon sections.

9 . The offshore platform of claim 1 , wherein the primary column support system further comprises one or more intermediate guide structures connected to the primary column and supporting a middle portion of the plurality of vertical supports.

10 . The offshore platform of claim 9 , wherein each of the one or more intermediate guide structures comprises a plurality of ring guides, each ring guide surrounding and accommodating the middle portion of a corresponding vertical support, and

wherein each ring guide laterally restrains the corresponding vertical support but is not fixedly connected thereto.

11 . The offshore platform of claim 1 , wherein the primary column is hollow and has a wall having a thickness which varies along a height of the primary column, and the thickness of the primary column has a step on an inner surface of the wall at a height corresponding to a connection point of the support structure and the primary column.

12 . A method of installing an offshore platform at a sea floor installation site, the method comprising:

assembling the offshore platform, the offshore platform comprising:

a primary node and a primary column disposed thereon;

a plurality of support nodes;

a plurality of pontoon sections, each of the plurality of pontoon sections configured to connect the plurality of support nodes to the primary node or to each other;

a plurality of buoyant modules, wherein each of the plurality of buoyant modules is detachably connected to a respective support node; and

a primary column support system, wherein the primary column support system comprises:

a plurality of vertical supports fixed around a perimeter of the primary column, each of the plurality of vertical supports having one end connected to the primary column node; and

a support structure connecting a top portion of each of the plurality of vertical supports to the primary column;

transporting the offshore platform to a location of the sea floor installation site;

submerging the offshore platform to the sea floor installation site;

embedding the offshore platform into the sea floor installation site; and

removing the plurality of buoyant modules from the plurality of support nodes.

13 . The method of claim 12 , wherein the primary column is configured to support a power generating system including a wind turbine, and

wherein the method further comprises installing the power generating system on the primary column of the offshore platform.

14 . The method of claim 13 , further comprising:

installing a subsea power cable for transmitting electrical power generated by the power generating system.

15 . The method of claim 12 , wherein the plurality of support nodes and the plurality of buoyant modules are detachably connected by a coupling means, and

wherein the submerging the offshore platform to the sea floor installation site comprises controlling a length of the coupling means connecting the support nodes and the buoyant modules.

16 . The method of claim 15 , wherein the coupling means is one of wire, chain, or cable, or a combination thereof, one end of the coupling means is connected to the support node and another end of the coupling means is connected to the buoyant module, and the coupling means is detachable at the one end connected to the support node.

Continuity (4)
Division 18626308 · Apr 3, 2024
Provisional Application 63527985 · Jul 20, 2023
Provisional Application 63456779 · Apr 3, 2023
Related Publication 20250270780A1 · Aug 28, 2025
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