Modular tower apparatus and method of manufacture
View Patent ↗In one aspect, a method of making a selected structure using composite materials is disclosed, which method in form includes providing a plurality of members each comprising a composite material, wherein each member is configured to be coupled to at least one other member in the plurality of members along a longitudinal side; coupling onsite the plurality of members along their longitudinal sides to form a base enclosed structure; and reinforcing onsite the base enclosed structure to form the selected structure.
1. A method of providing a selected structure, comprising:
providing a plurality of composite members, each composite member having a joining element for coupling adjoining composite members along a longitudinal sides thereof;
coupling onsite the plurality of composite members along longitudinal sides thereof to form a base enclosure; and
reinforcing the base enclosure onsite, wherein the reinforcing includes: placing composite fibers and a resin around the base enclosure and curing the resin to form a unified structure.
2. The method of claim 1 further comprising placing the plurality of composite members on a mandrel before coupling onsite the plurality of composite members.
3. The method of claim 1 wherein providing the plurality of composite members comprises making each composite member using a process that includes:
providing a core member;
reinforcing the core member with composite fibers substantially along a longitudinal direction of the core member; and
applying and curing a resin on the composite fibers.
4. The method of claim 3 further comprising:
providing along a first longitudinal side of each composite member a cheek and along a second longitudinal side a shoulder in a manner that enables the plurality of composite members to be interconnected with one another along their longitudinal sides.
5. The method of claim 4 wherein the cheek and shoulder interconnect to form a joint that is one of: (i) a half-lap joint; and (ii) a double half-lap joint.
6. The method of claim 1 further comprising reinforcing the base enclosure by one of: (i) a composite material; (ii) a non-composite material; and (iii) a combination of a composite and non-composite material.
7. A method of providing a selected structure, comprising:
providing a first conic section that includes a plurality of longitudinally interconnected panels that form a base enclosure, the plurality of longitudinally interconnected panels including a composite material layer on the plurality of interconnected panels, and a second composite material layer, wherein the second composite layer is applied onsite by placing composite fibers and a resin around the base enclosure and curing the resin to form a unified structure;
providing a second conic section; and
serially joining the first and second conic sections to form at least a part of a tower.
8. The method of claim 7 further comprising reinforcing a joint between the first and second conic sections with a band around the joint.
9. The method of claim 7 wherein the second conic section is smaller in diameter than the first conic section and is made using a metal.
10. The method of claim 7 wherein the second conic section is made from a material suitable for placement under water.
11. The method of claim 7 wherein the composite material layer includes fibers longitudinally arranged on the panel.
12. A tower, comprising:
a plurality of serially connected conic sections, wherein at least one conic section includes a base section that includes a plurality of longitudinally interconnected panels and a composite material layer around the base section, the composite material layer comprising composite fibers and a resin placed around the base section and cured onsite to form a unified structure.
13. The tower of claim 12 further comprising a band around a joint between the at least one conic section and an adjoining conic section configured to provide a reinforcement at the joint.
14. The tower of claim 12 wherein the tower includes an upper section comprising one or more metallic conic sections and a lower section comprising the at least one conic section.
15. The tower of claim 12 wherein the tower includes a lower section that includes one or more conic sections made from a material suitable for placement under water and wherein the lower section is further configured to be moored to a sea bed.
16. The tower of claim 12 wherein at least some of the panels in the interconnected panels include longitudinally placed reinforcement fibers configured to provide greater strength to such panels along a longitudinal direction of such panels compared to a radial direction of such panels.
17. The tower of claim 12 wherein the longitudinally interconnected panels are interconnected by a joint selected from a group consisting of: (i) a half-lap joint; and (ii) double half-lap joint.
18. The tower of claim 12 wherein the conic sections are serially connected by a joint selected from a group consisting of: (i) a half-lap joint; and (ii) double half-lap joint.