IP Library Granted Patent US 12,709,853
Granted Patent B2
US 12,709,853 · App. 18/407,203 · Granted Aug 18, 2026

Anchoring system for a hydrokinetic generator

Inventor: Lance D. McMullan (Seattle, WA)
Assignee: SITKANA, INC.
E02B9/08F03B13/10
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Quick Facts
Patent No.
US 12,709,853
App. No.
18/407,203
Granted
Aug 18, 2026
Kind
B2
Abstract

An anchoring system for a hydrokinetic generator system, the anchoring system including a slip ring attached to a buoy and coupleable to an output power line, a swivel joint on the buoy to rotate about a longitudinal axis, a rigid arm attachable to the hydrokinetic generator system and to the swivel joint to allow pivoting of the hydrokinetic generator system about the buoy, and electrical coupling of the onshore transmission cable to the slip ring to enable transmission of electrical energy from the hydrokinetic generator system to the output power line, through the slip ring, and out to the onshore transmission cable at all times, including during times the hydrokinetic generator system is repositioning about the buoy in response to a change in direction of the current of water.

Claims (33)

1 . An anchoring system for a hydrokinetic generator system that is structured to be anchored to a floor of a body of water that has a current of water flowing over the floor, the hydrokinetic generator system having an output power line to transmit generated electricity to an onshore transmission cable, the anchoring system comprising:

an anchor structured to rest on the floor of the body of water;

a buoy structured to float on the body of water;

an anchor line structured to be coupled to the buoy and to the anchor;

a swivel joint attached to the buoy and structured to rotate about a longitudinal axis;

a rigid arm structured to be attached to the hydrokinetic generator system and to the swivel joint to allow pivoting of the hydrokinetic generator system about the longitudinal axis of the swivel joint and hence repositioning of the hydrokinetic generator system about the buoy; and

a slip ring attached to the buoy and structured to connect to the output power line of the hydrokinetic generator to enable transmission of electrical energy from the hydrokinetic generator system to the output power line, through the slip ring, and out to the onshore transmission cable at all times, including during times the hydrokinetic generator system is repositioning about the buoy in response to a change in direction of the current of water.

2 . The anchoring system of claim 1 , further comprising:

a suspension line structured to be attached to the buoy;

a suspension weight structured to be attached to the suspension line; and

wherein the anchor line has a first end attached to the anchor and a second end coupled to one or both of the suspension weight and the suspension line.

3 . An anchoring system for use with an anchor and an anchor line attached to the anchor for tethering a buoy to a sea floor, the system comprising:

a suspension line structured to be attached to the buoy;

a suspension weight structured to be attached to the suspension line to tether the buoy to the sea floor and prevent entanglement with the anchor line;

a swivel joint attached to the buoy and structured to rotate about a longitudinal axis; and

a rigid arm structured to be attached to a hydrokinetic generator system and to the swivel joint to allow pivoting of the hydrokinetic generator system about the longitudinal axis of the swivel joint and hence repositioning of the hydrokinetic generator system about the buoy,

wherein the suspension line is directly coupled to a first end of the anchor line opposite the anchor.

4 . A power transmission buoy for use with an anchor and an anchor line to anchor a hydrokinetic generator system to a floor of a body of water that has a current of water flowing over the floor, the hydrokinetic generator system having an output power line to transmit generated electricity to an onshore transmission cable, the power transmission buoy comprising:

a buoy;

a swivel joint attached to the buoy and structured to rotate about a longitudinal axis;

a rigid arm structured to be attached to the hydrokinetic generator system and to the swivel joint to allow pivoting of the hydrokinetic generator system about the longitudinal axis of the swivel joint and hence repositioning of the hydrokinetic generator system about the buoy; and

a slip ring attached to the buoy and structured to connect to the output power line of the hydrokinetic generator to enable transmission of electrical energy from the hydrokinetic generator system to the output power line, through the slip ring, and out to the onshore transmission cable at all times, including during times the hydrokinetic generator system is repositioning about the buoy in response to a change in direction of the current of water.

5 . The power transmission buoy of claim 4 , further comprising:

a suspension line structured to be attached to the buoy;

a suspension weight structured to be attached to the suspension line; and

wherein the suspension line is structured to be attached to a first end of the anchor line.

6 . A power transmission buoy for use with an anchor and an anchor line to anchor a hydrokinetic generator system to a floor of a body of water that has a current of water flowing over the floor, the hydrokinetic generator system having an output power line to transmit generated electricity to an onshore transmission cable, the power transmission buoy comprising:

a buoy;

a swivel joint attached to the buoy and structured to rotate about a longitudinal axis;

a rigid arm structured to be attached to the hydrokinetic generator system and to the swivel joint to allow pivoting of the hydrokinetic generator system about the longitudinal axis of the swivel joint and hence repositioning of the hydrokinetic generator system about the buoy;

a suspension line structured to be attached to the buoy; and

a suspension weight structured to be attached to the suspension line,

wherein the suspension line is structured to be attached to a first end of the anchor line.