The present invention relates to a method for reducing the noise emission of a wind turbine rotor blade and a wind turbine rotor blade.
In order to reduce the noise emission of a wind turbine rotor blade during operation of the rotor blade, an attachment part, e.g., a trailing edge comb (serration), can be fastened or adhesively bonded to a trailing edge of a rotor blade.
One or more embodiments of the present invention is directed to reducing the noise emission of a wind turbine rotor blade during operation.
Thus provided is a method for reducing the noise emission of a wind turbine rotor blade during operation of the rotor blade. The rotor blade has a rotor blade root, a rotor blade tip, a leading edge, a trailing edge, a suction side, and a pressure side. An attachment part or attachment element can be provided in the area of the pressure side, and in particular in the area of the trailing edge. For example, at least one trailing edge comb with a plurality of teeth can be provided on the trailing edge. Further present is a first transition between the suction side and the attachment part, as well as a second transition between the pressure side and the attachment part. The transition between the pressure side and the attachment part is filled with a leveling compound. The attachment part can be configured as a trailing edge comb.
According to an aspect of the present invention, a spatula is applied against a surface of the pressure side, and covers the pressure-side (second) transition, and in particular a step on the pressure-side (second) transition. The point on a pressure side of the attachment part (e.g., of the trailing edge comb) against which the free end of the spatula abuts is marked, and describes the area up to which the leveling compound is to be applied. As a consequence, the leveling compound can be provided in such a way that the surface of the pressure side can be lengthened without a transition or step.
According to an aspect of the present invention, a first adhesive tape can be provided at the transition between the suction side and the attachment part (e.g., a trailing edge comb). A second adhesive tape can further be provided on the surface of the pressure side adjacent to the transition. A third adhesive tape can be provided in the area of the marking. A leveling compound can be applied between the second and third adhesive tape.
According to another aspect, a leveling material can be provided in the form of an adhesive bead in the area of the transition, for example. The material can then be distributed by means of a spatula. All adhesive tapes can subsequently be removed, thereby resulting in a rotor blade that has a transition between a pressure side and an attachment part (e.g., a trailing edge comb), which has been leveled by a leveling material, so that a lengthened surface of the pressure side is provided in the area of the leveling material.
The pressure-side (second) transition can be present in the form of an edge, step, sink, recess, or cutout. The pressure-side (second) transition can be leveled by applying the leveling compound. Such a transition can have a negative effect within a frequency range starting at 800 Hz. As a result, the approved sound level can be exceeded.
According to an aspect of the invention, the attachment part can consist of a trailing edge comb, brushes, flat panels, porous flat panels, curved panels, curved serrations or the like.
According to an aspect of the present invention, a wind turbine rotor blade is provided with a leading edge, a trailing edge, a suction side, a pressure side, and an attachment part at least partially on the pressure side. A pressure-side transition between the pressure side and the attachment part is present, and leveled by applying a leveling compound.
According to an aspect of the present invention, a recess or a protrusion is provided in the area of the pressure-side transition, and the leveling compound is applied in the area of the pressure-side transition and in the area of the recess or the step.
Additional configurations of the invention are the subject of the subclaims.
Advantages and exemplary embodiments of the invention will be described in more detail below with reference to the drawing.
The rotor blade 200 has a rotor blade root 210, a rotor blade tip 220, a rotor blade leading edge 230, a rotor blade trailing edge 240, a suction side 250 and a pressure side 260. The trailing edge 240 can be provided at least partially with an attachment part 300, e.g., a trailing edge comb 300 with a plurality of teeth 320.
The attachment part 300 can also be provided not on the trailing edge 240, but rather at least partially on the pressure side 260.
While examining a rotor blade according to the invention, it was found that the pressure-side (second) transition on the pressure side has an unexpectedly negative effect on the noise emission of the rotor blade during operation. Until now, it had been assumed that only such a transition on the suction side had a negative effect on noise emission.
According to an aspect of the invention, the pressure side 200 has a surface 261, which can essentially be straight in the area of the trailing edge 240. A regression or a step 262 can be provided in the area of the second transition 242, and must be leveled by a leveling compound 400.
According to an aspect of the invention, a leveling compound is provided in the area of the second transition between the pressure side and trailing edge comb, so as to level the second transition. This leads to a significant reduction in the noise emissions produced during operation of the rotor blade.
The second transition 242 can optionally have a regression or a recess 262 with a step 263 and a length 264.
As visible on
As evident on
As shown on
The final result is then visible on
The second transition 242 has been leveled by the leveling compound.
According to an aspect of the invention, the attachment part 300 can consist of a trailing edge comb, brushes, flat plates, porous flat plates, curved plates, curved serrations or the like. The decisive factor here is that a recess (as on
According to an aspect of the present invention, a leveling compound 400 is used to process the aerodynamically unfavorable transition, so as to obtain an aerodynamically more favorable transition.
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The various embodiments described above can be combined to provide further embodiments. These and other changes can be made to the embodiments in light of the above-detailed description. In general, in the following claims, the terms used should not be construed to limit the claims to the specific embodiments disclosed in the specification and the claims, but should be construed to include all possible embodiments along with the full scope of equivalents to which such claims are entitled. Accordingly, the claims are not limited by the disclosure.
Number | Date | Country | Kind |
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22153587.5 | Jan 2022 | EP | regional |