MOORING UNIT FOR MOORING A SHIP
20170197688 ยท 2017-07-13
Inventors
- Nezhat Al Zuhairy (Dordrecht, NL)
- Gerardus Antonius Jozef Mampaeij (Dordrecht, NL)
- Johan Marlon Boerleider (Dordrecht, NL)
Cpc classification
B63B2021/501
PERFORMING OPERATIONS; TRANSPORTING
B63B21/54
PERFORMING OPERATIONS; TRANSPORTING
International classification
B63B21/50
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Mooring unit for mooring a ship comprising a base, an arm mounted on the base, and a hook supported by the arm for connecting a mooring line of the ship, wherein the arm is movable between a retracted position and an extended position, and wherein the unit comprises an actuating device for moving the arm from the extended position to the retracted position, wherein the arm is mounted on a first part of the base and wherein the first part of the base is rotatably mounted on a second part of the base that is rotationally fixed, to enable rotation of the first part of the base around a vertical axis perpendicular to the horizon.
Claims
1. A mooring unit for mooring a ship comprising a base, an arm mounted on the base, and a hook supported by the arm for connecting a mooring line of the ship, wherein the arm is movable between a retracted position and an extended position, and wherein the unit comprises an actuating device for moving the arm from the extended position to the retracted position, wherein the arm is mounted on a first part of the base and wherein the first part of the base is rotatably mounted on a second part of the base that is rotationally fixed, to enable rotation of the first part of the base around a vertical axis perpendicular to the horizon.
2. The mooring unit according to claim 1, wherein the arm is mounted to the base with an intermediate rod, wherein one extremity of the rod connects to the base and an opposite extremity of the rod connects to the arm at a hinge distant from the hook, wherein the hinge is positioned on the arm between the hook and a position where the actuating device connects to the arm.
3. The mooring unit according to claim 1, wherein the unit comprises a control system to enable that the arm moves from the retracted position towards the extended position when a force applied on the hook away from the base exceeds a pre-established first threshold value.
4. The mooring unit according to claim 1, wherein the unit comprises a control system to arrange that the arm moves towards the retracted position when a force applied on the hook away from the base falls below a pre-established second threshold value.
5. The mooring unit according to claim 1, wherein the unit comprises an arm balancing element that acts as a spring to support the arm in moving towards the retracted position.
6. The mooring unit according to claim 1, wherein the actuating device is one selected from the group consisting of a hydraulic cylinder, a mechanical spring, a rotatable screw powered by an electric motor, a pneumatic cylinder, a mechanical energy dissipater, and any combination thereof.
7. The mooring unit according to claim 1, wherein the actuating device is selected as a device capable to release potential energy to an energy storage device or accumulator.
8. The mooring unit according to claim 7, wherein the energy storage device or accumulator is a hydraulic cylinder.
9. The mooring unit according to claim 1, wherein between the actuating device and the accumulator an energy dissipation element is provided to absorb at least a part of the energy received from the actuating device when the arm moves from the retracted position towards the extended position.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0018] The accompanying drawings, which are incorporated into and form a part of the specification, illustrate one or more embodiments of the present invention and, together with the description, serve to explain the principles of the invention. The drawings are only for the purpose of illustrating one or more embodiments of the invention and are not to be construed as limiting the invention. In the drawings:
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024] According to a first aspect of the invention the arm is mounted on a first part of the base, which first part of the base is rotatably mounted on a second part of the base that is rotationally fixed to enable rotation of the first part of the base around a vertical axis perpendicular to the horizon. This enables that the arm of the mooring unit can better follow back-and-forth movement of a moored ship without tensions increasing in the mooring line. Due to all degrees of freedom of the mooring unit, the unit will at all times be inline with the mooring line (load). Accordingly movement of the hook is dependent on and initiated by the tension in the mooring line and the varying directional forces acting on it.
[0025] According to a second aspect of the invention which can be applied independent from the first aspect or in combination therewith, the arm is mounted to the base with an intermediate rod, wherein one extremity of the rod connects to the base and an opposite extremity of the rod connects to the arm at a hinge distant from the hook, wherein the hinge is positioned on the arm between the hook and a position where the actuating device connects to the arm. This provides that the footprint of the mooring unit of the invention is restricted due to the feature that the construction of the invention results in conversion of horizontal motion into vertical motion. Accordingly the space that the mooring unit of the invention requires is limited since the horizontal motion of the arm between the retracted and the extended position corresponds with a vertical motion as embodied in the variable height of the mooring unit that depends on the movement of the arm. Another advantage is that this particular geometry supports the mooring unit's change of stiffness due to the fact that as the hook extends the ratio changes between the actuating device and the force arm, which results in a higher resistance provided to the hook load. In other words: movement of the arm from the retracted to the extended position causes that the arm's stiffness as measured at the hook of the mooring unit increases. This means that with greater excursions of the arm, the moored ship will be subjected to increased resistance. The mooring unit of the invention is suitably equipped to act on mooring forces having a time period of 6 seconds and higher. The mooring unit preferably comprises a control system to enable that the arm moves from the retracted position towards the extended position when a force applied on the hook away from the base exceeds a pre-established first threshold value.
[0026] The control system may include sensors for measuring a mooring load, hydraulic and pneumatic pressures in the mooring unit, temperature and parameters relating to the arm of the mooring unit.
[0027] The first threshold value is preferably between a pre-established minimum and a pre-established maximum value to prevent damage resulting from excessive forces to mooring ropes or lines and to the mooring unit itself.
[0028] If on the other hand the forces acting on the mooring unit are or have become low enough, the arm can be moved back from the extended position to the retracted position. Accordingly the mooring unit comprises an actuating device for moving the arm from the extended position to the retracted position. To this end it is preferable that the control system is arranged such that the arm, powered by the actuating device, moves towards the retracted position when a force applied on the hook away from the base falls below a pre-established second threshold value. Indeed, when forces generated by a moored ship's motion that act on the mooring unit fall below the pre-established second threshold, this is an indication that the mooring lines are tending to be slacking and that the arm has room to move back towards the retracted position to tightly secure the ship. It is then preferable that the mooring unit comprises an arm balancing element that acts as a spring to support the arm in moving back towards the retracted position.
[0029] Suitably the actuating device is one selected from the group comprising a hydraulic cylinder, a mechanical spring, a rotatable screw powered by an electric motor, a pneumatic cylinder, a mechanical energy dissipater, and any combination thereof.
[0030] Preferably, the actuating device is selected as a device capable to release potential energy to an energy storage device or accumulator, preferably a hydraulic cylinder. The energy which is stored in the energy storage device or accumulator upon movement of the arm from the retracted position towards the extended position can thus, at a later instance, be used to move the arm back from the extended position towards the retracted position when the forces acting upon the mooring unit have fallen below the pre-defined second threshold. This storage and re-use of energy allows the mooring unit to function essentially without any provision of energy from external sources.
[0031] An important feature of the mooring unit of the invention is that between the actuating device and the accumulator an energy dissipation element is provided to absorb at least a part of the energy received from the actuating device when the armsubject to the motions of the moored shipmoves from the retracted position towards the extended position. Since the arm undergoes frequent movements due to the movements of the moored ship, the amount of energy available at the output of the actuating device is too high to be stored in the accumulator if this latter device has restricted dimensions. It is therefore required that the surplus of energy is dissipated.
[0032] The invention will hereinafter be further elucidated with reference to the drawing of an exemplary embodiment of a mooring unit according to the invention that is not limiting as to the appended claims.
[0033] Whenever in the figures the same reference numerals are applied, these numerals refer to the same parts.
[0034]
[0035] The arm 3 is mounted on the first part 2 of the base 2 and said first part 2 of the base 2 is rotatably mounted on the second part 2 of the base 2 which is rotationally fixed, which enables rotation of the first part 2 of the base 2 around a vertical axis perpendicular to the horizon, and makes possible that the mooring unit is aligned with the variable orientation of the mooring line that depends on the motions of the moored ship.
[0036] The arm is further movable between a retracted position (
[0037] The mooring unit 1 comprises an actuating device, for instance a hydraulic cylinder 5 which accumulates energy when the arm 3 moves from the retracted position shown in
[0038] Between the actuating device 5 and the accumulator 10 an energy dissipation element 11 is provided to absorb at least a part of the energy received from the actuating device 5 when the arm 3, subject to the forces of the moored ship, moves from the retracted position towards the extended position.
[0039] It is possible that the actuating device is not a hydraulic cylinder, but a mechanical spring, a rotatable screw powered by an electric motor, a pneumatic cylinder, a mechanical energy dissipater, or any combination thereof.
[0040] To accommodate the intended operation of the mooring unit 1 as just described, the unit 1 comprises a control system 6 (the operation of which is schematically shown in
[0041] Turning back to
[0042] Although the invention has been discussed in the foregoing with reference to an exemplary embodiment of the mooring unit of the invention, the invention is not restricted to this particular embodiment which can be varied in many ways without departing from the invention. The discussed exemplary embodiment shall therefore not be used to construe the appended claims strictly in accordance therewith. On the contrary the embodiment is merely intended to explain the wording of the appended claims without intent to limit the claims to this exemplary embodiment. The scope of protection of the invention shall therefore be construed in accordance with the appended claims only, wherein a possible ambiguity in the wording of the claims shall be resolved using this exemplary embodiment.
NOMENCLATURE
[0043] 1. Mooring unit [0044] 2. Base, first part 2, second part 2 [0045] 3. Arm [0046] 4. Hook [0047] 5. Actuating device [0048] 6. Control system [0049] 7. Rod [0050] 8. Hinge [0051] 9. Position connecting the actuating device 5 to the arm 3 [0052] 10. Accumulator [0053] 11. Energy dissipation element [0054] 12. Arm balancing element [0055] 13. Hook balancing element