IP Library Granted Patent US 11,332,223
Granted Patent B2
US 11,332,223 · App. 16/766,184 · Granted May 17, 2022

Array of pontoons for solar panel and connection modules therefor

Inventor: Allard Pieter Van Hoeken (Katwijk, NL)
Assignee: OCEANS OF ENERGY B.V.
B63B35/44B63B39/00H01R35/02H01R35/04H02S20/30B63B2035/4453
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Quick Facts
Patent No.
US 11,332,223
App. No.
16/766,184
Granted
May 17, 2022
Kind
B2
Abstract

Waves introduce stresses in a floating object, such as a pontoon. The stresses can be introduced by multiple mechanisms, such as waves crashing onto the pontoon, an imbalance in buoyancy and weight load causing hogging and sagging Alternating movements and stresses may result in fatigue in the material. Multiple pontoons can be moored next to each other. When placed on a body of water with a higher wave intensity, such as open sea, the wave induced motions and stresses may cause failures in the pontoons or connections between individual pontoons. A network of pontoons is provided, interconnected with connection modules. The connection modules allow the network of pontoons to resist the loads and movements from the waves or to follow the shape of the, thus preventing failures in the connection modules and in the pontoons. The pontoons may be used to provide a mounting surface for photovoltaic panels.

Claims (57)

1. A connection module, arranged for connecting multiple pontoon modules, the connection module comprising:

at a first end, a first coupling module, arranged to connect the connection module at the first end to a receiving module of a first pontoon module;

at a second end, a second coupling module, arranged to couple the connection module at the second end with a receiving module of a second pontoon module; and

a connecting element, provided between the first end and the second end of the connection module;

wherein the connecting element is arranged to provide a connection between the first pontoon module and the second pontoon module and wherein the connecting element is arranged with at least one of the following specifics:

change in length under the influence of an external force on the connection module;

allow a rotation under the influence of an external torque between the first coupling module and the second coupling module; and

allow a bending under the influence of an external load or bending moment between the first coupling module and the second coupling module.

2. The connection module according to claim 1 , wherein the connecting element comprises a substantially resilient material, arranged to resiliently change in length under the influence of the external force, arranged to resiliently bend under the external bending moment, and arranged to resiliently rotate under and external torque.

3. The connection module according to claim 1 , wherein the connecting element comprises a substantially rigid material.

4. The connection module according to claim 1 , wherein the connecting element, in the longitudinal direction of the connecting element, comprises intermittently the substantially resilient material and the substantially rigid material.

5. The connection module according to claim 1 , comprising an elongate element having a first resilience and a first end element at a first end of the elongate element and a second end element at a second end of the elongate element opposite to the first end, the end elements having a second resilience being lower than the first resilience.

6. The connection module according to claim 5 , wherein the end elements comprise at least one of a plastic, organic polymer or elastomer.

7. The connection module according to claim 6 , not comprising mechanically hinged rigid parts.

8. The connection module according to claim 1 , comprising multiple elements arranged to hinge relative to one another.

9. The connection module according to claim 1 , wherein the connection module comprises a buffer, wherein the buffer is arranged to store at least part of the connecting element.

10. The connection module according to claim 1 , wherein the connection module is arranged to transport electrical energy.

11. The connection module according to claim 1 , wherein the connection module has an average density of less than 1028 kg·m −3 .

12. The connecting module according to claim 1 , wherein the connecting element is arranged to return to a pre-determined shape if no force, torque or bending moment is applied to the connecting element.

13. A pontoon module, arranged to provide a floating working surface, comprising:

a floating body, arranged to float on a water body; and

a receiving module, arranged to receive a coupling module of a connection module comprising:

at a first end, a first coupling module, arranged to connect the connection module at the first end to a receiving module of a first pontoon module;

at a second end, a second coupling module, arranged to couple the connection module at the second end with a receiving module of a second pontoon module; and

a connecting element, provided between the first end and the second end of the connection module;

wherein the connecting element is arranged to provide a connection between the first pontoon module and the second pontoon module and wherein the connecting element is arranged with at least one of the following specifics:

change in length under the influence of an external force on the connection module;

allow a rotation under the influence of an external torque between the first coupling module and the second coupling module; and

allow a bending under the influence of an external load or bending moment between the first coupling module and the second coupling module.

14. The pontoon module according to claim 13 , wherein the receiving module is provided at a bottom side of the floating body, wherein the bottom side is arranged to be situated under the waterline when the pontoon module is provided on the water body.

15. The pontoon module according to claim 13 , wherein the floating body comprises a hollow space and the receiving module is provided in the hollow space of the floating body.

16. The pontoon module according to claim 13 , wherein the receiving module is at least partly resilient and arranged with at least one of the following specifics:

change in length under the influence of an external force on the connection module;

allow a rotation under the influence of an external torque between the first coupling module and the second coupling module; and

allow a bending under the influence of an external load or bending moment between the first coupling module and the second coupling module;

wherein the resilience of the receiving module of the pontoon module is lower than the resilience of the connecting element.

17. A network of pontoon modules, comprising:

a first pontoon module arranged to provide a floating working surface, comprising:

a first floating body, arranged to float on a water body; and

a first receiving module, arranged to receive a coupling module of a connection module;

a second pontoon module provided adjacently to the first pontoon module, comprising:

a second floating body, arranged to float on the water body; and

a second receiving module, arranged to receive a coupling module of a connection module;

a first connection module connected to the first receiving module of the first pontoon module, and a second coupling module connected to the second receiving module of the second pontoon module, wherein the first connection module comprises:

at a first end, a first coupling module, arranged to connect the connection module at the first end to a receiving module of a first pontoon module;

at a second end, a second coupling module, arranged to couple the connection module at the second end with a receiving module of a second pontoon module; and

a connecting element, provided between the first end and the second end of the connection module;

wherein the connecting element is arranged to provide a connection between the first pontoon module and the second pontoon module and wherein the connecting element is arranged with at least one of the following specifics:

change in length under the influence of an external force on the connection module;

allow a rotation under the influence of an external torque between the first coupling module and the second coupling module; and

allow a bending under the influence of an external load or bending moment between the first coupling module and the second coupling module.

18. The network of pontoon modules according to claim 17 , wherein the pontoon modules comprise one or more photovoltaic installations.

19. The connection module according to claim 11 , wherein the connecting element is arranged to allow all of:

change in length under the influence of an external force on the connection module;

allow a rotation under the influence of an external torque between the first coupling module and the second coupling module; and

allow a bending under the influence of an external load or bending moment between the first coupling module and the second coupling module.

20. The connection module according to claim 11 , wherein the connection module has an average density of less than 1000 kg·m −3 .

Assignments (2)
CHANGE OF ADDRESS Recorded Feb 29, 2024
From: OCEANS OF ENERGY B.V.
To: OCEANS OF ENERGY B.V.
Reel/Frame 066836/0845 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2020
From: VAN HOEKEN, ALLARD PIETER
To: OCEANS OF ENERGY B.V.
Reel/Frame 053112/0303 →
Priority Claims (1)
NL 2019956 · Nov 22, 2017 · national
Continuity (1)
Related Publication 20200361578A1 · Nov 19, 2020
Cited By (1)
US 12,552,496