Wind turbine blade and methods for transporting, storing and installing wind turbine blades
10066598 · 2018-09-04
Assignee
Inventors
Cpc classification
Y10T29/49318
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
F05B2240/3062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D1/0675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D13/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D13/10
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
International classification
Abstract
A wind turbine blade having a blade surface comprising a pressure side and a suction side, comprising one or more flow disturbing devices for provoking air flow separation arranged on the suction side of the blade, wherein the flow disturbing device is removable.
Claims
1. A wind turbine blade having a blade surface comprising a pressure side and a suction side, comprising: a flow disturbing device arranged on an outer surface of the suction side of the wind turbine blade with a releasable adhesive applied between the flow disturbing device and the outer surface, the flow disturbing device comprising a first elongated member attached to the suction side of the wind turbine blade and extending along at least a portion of a span of the wind turbine blade and a second elongated member attached to a first end of the first elongated member and extending away from the suction side of the wind turbine blade at an acute angle to the first elongated member so as to induce air flow separation to reduce or cancel aerodynamic force exerted on the wind turbine blade during storage, transport, or hoisting of the wind turbine blade, wherein the releasable adhesive provides for the flow disturbing device to be removed from the wind turbine blade by pulling the flow disturbing device away from the wind turbine blade before functional operation of the wind turbine blade on a wind turbine, and an accessory removal device attached to the flow disturbing device, the accessory removal device extending away from the flow disturbing device and extending along the outer surface of the suction side of the wind turbine blade, the flow disturbing device can be pulled by the accessory removal device so as to remove the flow disturbing device from the wind turbine blade surface.
2. The wind turbine blade according to claim 1, wherein the accessory comprises a wire, chain, cord or rope.
3. The wind turbine blade according to claim 2, wherein the accessory further comprises a handle.
4. The wind turbine blade according to claim 1, wherein the flow disturbing device is made of a plastic material.
5. The wind turbine blade according to claim 1, wherein the flow disturbing device extends along 5%-40% of a total blade chord.
6. The wind turbine blade according to claim 1, wherein the flow disturbing device is arranged along at least 50% of a blade span.
7. The wind turbine blade according to claim 1, comprising two or more of the flow disturbing devices.
8. The wind turbine blade according to claim 1, wherein the flow disturbing device comprises two elongated strips forming an angle of less than 90 degrees with each other.
9. The wind turbine blade according to claim 1, wherein the flow disturbing device is made from a foam material.
10. The wind turbine blade according to claim 1, wherein the first end of the first elongated member is a spanwise trailing edge-side end of the first elongated member.
11. The wind turbine blade according to claim 1, wherein the second elongated member extends along the entire first end of the first elongated member.
12. The wind turbine blade according to claim 1, wherein the first and second elongated members form an L-shaped member.
13. A method for installing a wind turbine blade in a rotor of a wind turbine, the rotor having a hub, the method comprising: providing the wind turbine blade with at least one removable flow disturbing device arranged on an outer surface of a suction side of the wind turbine blade with a releasable adhesive, the flow disturbing device comprising a first elongated member that is attached to the suction side of the wind turbine blade and that extends along at least a portion of a span of the wind turbine blade and a second elongated member that is attached to a first end of the first elongated member and that extends away from the suction side of the wind turbine blade at an acute angle to the first elongated member so as to induce air flow separation to reduce or cancel aerodynamic force exerted on the wind turbine blade during storage, transport, or hoisting of the wind turbine blade; installing the wind turbine blade on the rotor including hoisting the wind turbine blade towards the rotor; and removing the flow disturbing device from the suction side of the wind turbine blade before starting operation of the wind turbine by pulling an accessory removal device, the accessory removal device being attached to the flow disturbing device, the accessory removal device extending away from the flow disturbing device and extending along the outer surface of the suction side of the wind turbine blade, wherein the releasable adhesive provides for removal of the flow disturbing device from the wind turbine blade by pulling on the accessory removal device.
14. The method according to claim 13, wherein hoisting the wind turbine blade towards the rotor comprises elevating the wind turbine blade in a substantially vertical direction.
15. A method for installing a wind turbine rotor, the rotor having a hub, the method comprising installing at least one wind turbine blade on the rotor in accordance with the method of claim 13; and further comprising lifting the rotor onto a wind turbine tower with the at least one wind turbine blade attached to the rotor.
16. The method according to claim 15, comprising lifting the rotor with two of the wind turbine blades onto the wind turbine tower, and further comprising: providing a third wind turbine blade with at least one the removable flow disturbing device arranged on the suction side of the third wind turbine blade; installing the third wind turbine blade to the rotor by elevating the third wind turbine blade in a substantially vertical manner; and removing the flow disturbing device from the suction side of the third wind turbine blade.
17. The method according to claim 16, wherein the rotor with two wind turbine blades is lifted together with a nacelle.
18. The method according to claim 15, comprising lifting the rotor onto the wind turbine tower with three wind turbine blades attached to the rotor.
19. A method of transporting a wind turbine blade comprising: providing the wind turbine blade with at least one removable flow disturbing device arranged on an outer surface of a suction side of the wind turbine blade with a releasable adhesive, the flow disturbing device comprising a first elongated member that is attached to the suction side of the wind turbine blade and that extends along at least a portion of a span of the wind turbine blade and a second elongated member that is attached to a first end of the first elongated member and that extends away from the suction side of the wind turbine blade at an acute angle to the first elongated member so as to induce air flow separation to reduce or cancel aerodynamic force exerted on the wind turbine blade during transport; attaching an accessory removal device to the flow disturbing device, the accessory removal device extends away from the flow disturbing device along the outer surface of the suction side of the wind turbine blade, wherein the releasable adhesive provides for removal of the flow disturbing device from the wind turbine blade by pulling on the accessory removal device; transporting the wind turbine blade; and using the accessory removal device to remove the flow disturbing device from the wind turbine blade.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Particular embodiments of the present invention will be described in the following by way of non-limiting examples, with reference to the appended drawings, in which:
(2)
(3)
(4)
DETAILED DESCRIPTION OF EMBODIMENTS
(5)
(6) The length of the flow disturbing device may be varied depending on e.g. the blade length, the aerodynamic profiles used, the aspect ratio of the blade and manufacturing aspects of the devices.
(7) In alternative embodiments, at least one flow disturbing device may be arranged in the area of 5% to 40% of the blade chord and along at least 50% of the blade span.
(8) The effect of the air flow separation provoked by the flow disturbing devices 11A and 11B may reduce the aerodynamic force exerted on the blade 10, and particularly of the lift of the blade. The cancellation of the aerodynamic force exerted on the blade 10 due to the air flow separation may allow an easier manipulation of the blade 10. The manipulation of the blade 10 may be related to the installation of the blade 10 in a wind turbine rotor which may comprise a hub and a plurality of blades.
(9) In order to achieve an easier manipulation when installing the blade 10, for the particular embodiment of
(10) In some embodiments, and instead of individually lifting the blades to attach them to the hub already on top of the tower, the wind turbine rotor may be lifted onto the wind turbine tower with at least one blade previously attached. In such case, the at least one blade already attached may comprise one or more removable flow disturbing devices for provoking air flow separation arranged on the suction side of the blade, e.g. lifting the wind turbine rotor with three blades onto the wind turbine tower. The blades that are subsequently hoisted towards the hub already located on top of the tower may similarly comprise flow disturbing devices.
(11) In some embodiments, the wind turbine rotor may be lifted with two blades already fitted, preferably in the so-called bunny ear configuration, onto the wind turbine tower and a third wind turbine blade with at least one removable flow disturbing device arranged on the suction side of the blade may be provided and installed to the wind turbine rotor by elevating said third blade in a substantially vertical manner.
(12) Once the third blade is installed, the flow disturbing device(s) may be removed from the suction side of the third blade. Optionally, also the other two blades may have similar flow disturbing devices attached to them, during lifting of the rotor with the one or two blades. The flow disturbing devices of all blades are to be removed, or otherwise made inoperative, before operation of the wind turbine.
(13) In some embodiments, the wind turbine rotor with two blades may be lifted together with the nacelle whereas, in some other embodiments, the nacelle may have been previously installed on top of the tower, so only the rotor with two blades is lifted at this stage.
(14) Furthermore, easy manipulation of the blade 10 may also be desired when transporting said blade 10 on a train, truck or boat, or when storing said blade 10 and thus, also for these purposes, at least one flow disturbing device may be arranged on the suction side of the blade 10 by attaching said at least one flow disturbing device by e.g. adhesives. The flow disturbing devices may also be useful for storage and transport purposes: the forces generated by the blade in presence of winds may be reduced, so that storage installations may be simplified.
(15)
(16)
(17) For example, an operator who stays away from the wind turbine blade may remove the flow disturbing device 20 from the suction side of the blade by pulling the wire 22 with the handle 23 when the flow disturbing device 20 is attached to the suction side of a blade. In this particular embodiment, the flow disturbing device 20 furthermore comprises an orifice 21 which avoids the displacement of the wire 22. The flow disturbing device 20 may be made of a plastic material as e.g. rubber, polyurethane, etc. and it may be attached to the suction side of the blade by adhesive means.
(18) In another example, instead of using two elongated strips forming an angle of between 45 and 90, a single strip that is arranged in a manner substantially perpendicular to the blade may be used. In further alternative examples, the flow disturbing device may have yet different shapes and sizes. For example, they may be of triangular or rectangular cross-section.
(19)
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(21) The air flow separation provoked by the flow disturbing devices 32 may reduce particularly the lift of the blade when subjected to winds. This reduction of aerodynamic forces may facilitate the manipulation, i.e. installation, transport, storage of the wind turbine blade.
(22) Although only a number of particular embodiments and examples of the invention have been disclosed herein, it will be understood by those skilled in the art that other alternative embodiments and/or uses of the invention and obvious modifications and equivalents thereof are possible. Furthermore, the present invention covers all possible combinations of the particular embodiments described. Thus, the scope of the present invention should not be limited by particular embodiments, but should be determined only by a fair reading of the claims that follow.