A MULTIPLE ROTOR RAIL PULLEY SYSTEM
20230010831 · 2023-01-12
Inventors
Cpc classification
F05D2230/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/95
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B66C19/00
PERFORMING OPERATIONS; TRANSPORTING
F03D1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2230/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E10/727
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F03D1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B66C19/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A multiple rotor (MR) wind turbine comprising a tower (21) extending in an upwards direction, a load carrying structure (22) extending in an outwards direction and being fixed to the tower, and an energy generating unit (54) fixed to the load carrying structure, wherein the outwards direction is transverse to the upwards direction, the wind turbine further comprising a hoisting line (53) for communication of objects (52) to and from the energy generating unit (54), the hoisting line being windable from an attachment point (55) of the load carrying structure or from the energy generating unit. To allow positioning of hosted objects near the tower, or at selectable distance from the tower, the hoisting line extends from the attachment point via a suspension point (56) to a lifting point (57) where the object (52) can be attached, and the suspension point (56) is movable outside the load carrying structure.
Claims
1. A multiple rotor wind turbine comprising a tower extending in an upwards direction, a load carrying structure extending in an outwards direction and being carried by the tower, and an energy generating unit carried by the load carrying structure, wherein the outwards direction is transverse to the upwards direction, the wind turbine further comprising a hoisting line for transport of objects to and from the energy generating unit, the hoisting line being windable from an attachment point of the load carrying structure or from the energy generating unit, the hoisting line extending from the attachment point via a suspension point to a lifting point where the object can be attached, where the suspension point is movable outside the load carrying structure.
2. The multiple rotor wind turbine according to claim 1, wherein the suspension point is movable along a track.
3. The multiple rotor wind turbine according to claim 2, wherein the track holds the suspension point via a first vehicle guided by the track.
4. The multiple rotor wind turbine according to claim 3, wherein the first vehicle and the suspension point are connected by a cable.
5. The multiple rotor wind turbine according to claim 1, comprising a winding structure located inside a nacelle of the energy generating unit.
6. The multiple rotor wind turbine according to claim 1, wherein movement between the hoisting line and the suspension point can be prevented or limited.
7. The multiple rotor wind turbine according to claim 1, wherein movement between the suspension point and the load carrying structure can be prevented.
8. The multiple rotor wind turbine according to claim 1, comprising a hatch opening into an inner space in the energy generating unit, and a continuous path for the hoisting line from the hatch to the load carrying structure.
9. The multiple rotor wind turbine according to claim 8, wherein the continuous path is provided by a rail-section holding the suspension point.
10. The multiple rotor wind turbine according to claim 9, wherein the rail-section forms an extension of the track and holds the suspension point via the first vehicle.
11. The multiple rotor wind turbine according to claim 9, wherein the rail-section is separate from the track and holds the suspension point via a second vehicle guided by the rail-section.
12. The multiple rotor wind turbine according to claim 11, wherein the second vehicle and the suspension point are connected by a cable.
13. The multiple rotor wind turbine according to claim 1, comprising a second hoisting line being windable from a second attachment point at the tower, wherein the second hoisting line is arranged to move the suspension point along the load carrying structure.
14. The multiple rotor wind turbine according to claim 3, wherein the second hoisting line moves the suspension point by moving the first vehicle.
15. The multiple rotor wind turbine according to claim 13, wherein the second hoisting line is winded by a winch located in the energy generating unit.
16. A method of handling a wind turbine object in a wind turbine comprising a tower extending in an upwards direction, a load carrying structure fixed to the tower and extending in an outwards direction transverse to the upwards direction, and an energy generating unit fixed to the load carrying structure, the method comprising: providing a hoisting line being windable from an attachment point of the load carrying structure or of the energy generating unit and extending from the attachment point to a lifting point, providing a suspension point which is movable along an outer surface of the load carrying structure, suspending the hoisting line in the suspension point, the suspension point being between the attachment point and the lifting point; and moving the suspension point along the outer surface while winding out the hoisting line from the attachment point.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The invention will now be described in further detail with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE DRAWINGS
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[0037] The load carrying structures extend in opposite outwards directions away from the tower 21.
[0038] Each load carrying structure 22 supports an energy generating unit 23, and each energy generating unit 23 comprises a nacelle 24 and a rotor 25 carrying three wind turbine blades 26, sweeping an area.
[0039] The load carrying structures 22 are attached to the tower 21 via a yaw arrangement, allowing the entire pair of load carrying structures to perform yawing movements with respect to the tower 21 in order to direct the rotors 25 into the incoming wind.
[0040] When the multirotor wind turbine 20 is operational, the energy generating units 23 are placed symmetrically around the tower 21 so that the multirotor wind turbine is balanced.
[0041] For maintenance and service, the MR turbine comprises a hoist by which objects 27 can be hoisted from ground to the nacelle by the hoisting line 28.
[0042] The illustrated MR wind turbine is an off-shore wind turbine, and since the energy generating unit 23 is not directly over the tower top, logistics becomes more complicated, and the hoisted objects does not, by virtue of gravity alone, arrive at the tower base platform 29.
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[0046] The suspension point 56 is, in this embodiment, constituted by a pulley, and it is movable outside the load carrying structure along a track 58. For this purpose, it is attached to a vehicle 59.
[0047] There are two distinct phases in the hoisting operation:
[0048] Phase 1: From point A to point B, c.f.
[0049] Phase 2: From point B to point C, or vice-versa. Here the vehicle is locked such that the vehicle does not move relative to track. The pulley is free, meaning that the hoisting line can move relative to the pulley. If both were free, the vehicle would slide towards point A, and the object would be lowered vertically below the energy generating unit 54, i.e. landing on the water.
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