Boat stabilization system
A boat stabilizer system includes a first gyro stabilizer configured to be arranged inside a hull, a first fin stabilizer including a fin configured to be arranged outside the hull and move relative the hull, and a power transmission interconnecting the first gyro stabilizer and the first fin stabilizer. The power transmission is arranged to transfer energy derived from precession torque of the first gyro stabilizer to the first fin stabilizer to actuate the fin.
1. A boat stabilizer system comprising:
a first gyro stabilizer configured to be arranged inside a hull;
a first fin stabilizer comprising a fin configured to be arranged outside the hull and move relative the hull; and
a power transmission interconnecting the first gyro stabilizer and the first fin stabilizer,
wherein the power transmission is arranged to transfer actuation energy, derived from precession torque of the first gyro stabilizer, to the first fin stabilizer to actuate the fin,
wherein the first gyro stabilizer comprises a precessing element and the first fin stabilizer comprises a movable element connected to the fin,
wherein the power transmission is arranged to transfer energy from the precessing element to the movable element,
wherein the precessing element is a precession shaft and the movable element is a drive shaft connected to the fin,
wherein the precessing element and the movable element are co-axial,
wherein the power transmission is a shaft integrating the precessing element and the movable element, and
wherein the drive shaft and the fin extend laterally from the hull.
2. The boat stabilizer system of claim 1 , wherein the power transmission has a fixed transmission ratio.
3. The boat stabilizer system of claim 2 , wherein the transmission ratio is 1:1.
4. The boat stabilizer system of claim 1 , comprising a rotational bearing fixable relative the hull, supporting a radial load of the shaft.
5. The boat stabilizer system of claim 1 , wherein a transmission ratio is different from 1:1 and the movable element is arranged to rotate with a different rotational speed than the precessing element.
6. The boat stabilizer system of claim 1 , wherein the power transmission has a variable transmission ratio.
7. The boat stabilizer system of claim 1 , wherein the power transmission comprises a power source arranged to convert rotational energy derived from precession torque of the first gyro stabilizer into a transferable energy.
8. The boat stabilizer system of claim 1 , wherein the power transmission comprises a fin stabilizer actuator arranged to rotate the movable element.
9. The boat stabilizer system of claim 8 , wherein the power transmission comprises a drive section arranged to transfer the transferrable energy from a power source to the fin stabilizer actuator.
10. The boat stabilizer system of claim 8 , wherein any of a power source, a drive section and the fin stabilizer actuator are mechanic, hydraulic, electric, or pneumatic.
11. The boat stabilizer system of claim 1 , comprising an external power source arranged to provide additional energy to the boat stabilizer system.
12. The boat stabilizer system of claim 11 , wherein the external power source is arranged to be connected to and provide energy to the power transmission.
13. The boat stabilizer system of claim 1 , further comprising a control system.
14. The boat stabilizer system of claim 13 , wherein the control system is configured to control a transmission ratio of the power transmission.