A VORTEX GENERATOR DEVICE FOR A WIND TURBINE BLADE
20190211800 ยท 2019-07-11
Inventors
- Jesper MADSEN (Gesten, DK)
- Jesper H?EG (Kolding, DK)
- Kim Ansholm RASMUSSEN (Kolding, DK)
- Danny Kedochim (Kolding, DK)
Cpc classification
F03D1/0633
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/3062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D1/06495
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D1/0675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/122
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 vortex generator device for a wind turbine blade, and a wind turbine blade is disclosed, the vortex generator device comprising a base with an inner side and an outer side, and a first fin protruding from the outer side and extending along a first fin axis, wherein the vortex generator device is a single-fin vortex generator device, and the base has a first edge part and a second edge part, the first edge part and the second edge part forming a primary angle in the range from 5 degrees to 60 degrees.
Claims
1. A vortex generator device for a wind turbine blade, the vortex generator device comprising: a base with an inner side and an outer side; and a first fin protruding from the outer side and extending along a first fin axis, wherein the vortex generator device is a single-fin vortex generator device, and the base has a first edge part and a second edge part, the first edge part and the second edge part being straight, the first edge part and the second edge part forming a primary angle in the range from 5 degrees to 60 degrees, and the base having a first leading corner edge part between the first edge part and the second edge part, the first leading corner edge part being curved.
2. Vortex generator device according to claim 1, wherein the base has a third edge part forming a first secondary angle with the first edge part, wherein the first secondary angle is in the range from 45 degrees to 120 degrees.
3. Vortex generator device according to claim 2, wherein the third edge part forms a second secondary angle with the second edge part, wherein the second secondary angle is in the range from 45 degrees to 120 degrees.
4. Vortex generator device according to claim 1, wherein the inner side of the base is concave.
5. Vortex generator device according to claim 1, wherein a first primary fin angle between the first edge part and the first fin axis is in the range from 5 degrees to 30 degrees.
6. Vortex generator device according to claim 1, wherein a first secondary fin angle between the second edge part and the first fin axis is in the range from 5 degrees to 30 degrees.
7. Vortex generator device according to claim 1, wherein the base has a straight fourth edge part.
8. Vortex generator device according to claim 1, wherein a fin length of the first fin is at least 0.5 times the length of the base in the direction of the first fin axis.
9. Vortex generator device according to claim 1, wherein the vortex generator device comprises an adhesive material on the inner side of the base, the adhesive material comprising an adhesive tape, such as a double adhesive tape, which is covered by a peel-off layer.
10. Vortex generator device according to claim 9, wherein the adhesive material has one or more slits for reducing air bubble formation between the base and the wind turbine blade.
11. Vortex generator device according to claim 9, wherein the adhesive material is V-shaped, E-shaped, U-shaped or trident-shaped.
12. Vortex generator device according to claim 9, wherein the adhesive material comprises a first part and a second part, wherein the first part and the second part are separated by a channel or at least a channel section of the channel.
13. Vortex generator device according to claim 1 wherein the inner side of the base is provided with a first recess, wherein the first recess is V-shaped, E-shaped, U-shaped or trident-shaped.
14. A vortex generator device for a wind turbine blade, the vortex generator device comprising: a base with an inner side and an outer side; a first fin protruding from the outer side and extending along a first fin axis, the first fin having a first primary end and a first secondary end, the first fin having a first primary fin height at the first primary end and a first secondary fin height at the first secondary end, the first primary fin height being smaller than the first secondary fin height; and a second fin protruding from the outer side and extending along a second fin axis, the second fin having a second primary end and a second secondary end with a primary distance between the first primary end of the first fin and the second primary end of the second fin, and a secondary distance between the first secondary end of the first fin and the second secondary end of the second fin, wherein the primary distance is larger than the secondary distance.
15. A wind turbine blade comprising a plurality of vortex generator devices according to claim 1, wherein the plurality of vortex generator devices is mounted on a surface of the wind turbine blade.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] The invention is explained in detail below with reference to one or more examples shown in the drawings, in which
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[0047] The airfoil region 34 (also called the profiled region) has an ideal or almost ideal blade shape with respect to generating lift, whereas the root region 30 due to structural considerations typically has a substantially circular or elliptical cross-section, which for instance makes it easier and safer to mount the blade 10 to the hub. The diameter (or the chord) of the root region 30 is typically constant along the entire root area 30. The transition region 32 has a transitional profile gradually changing from the circular or elliptical shape of the root region 30 to the airfoil profile of the airfoil region 34. The chord length of the transition region 32 typically increases substantially linearly with increasing distance r from the hub.
[0048] The airfoil region 34 has an airfoil profile with a chord extending between the leading edge 18 and the trailing edge 20 of the blade 10. In the airfoil region 34, the width of the chord decreases with increasing distance r from the hub.
[0049] It should be noted that the chords of different sections of the blade normally do not lie in a common plane, since the blade may be twisted and/or curved (i.e. pre-bent), thus providing the chord plane with a correspondingly twisted and/or curved course, this most often being the case in order to compensate for the local velocity of the blade being dependent on the radius from the hub.
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[0051] Airfoil profiles are often characterised by the following parameters: the chord length c, the maximum camber f, the position dr of the maximum camber f, the maximum airfoil thickness t, which is the largest diameter of the inscribed circles along the median camber line 62, the position dr of the maximum thickness t, and a nose radius (not shown).
[0052] These parameters are typically defined as ratios to the chord length c. Thus, a local relative blade thickness t/c is given as the ratio between the local maximum thickness t and the local chord length c. Further, the position d.sub.p of the maximum pressure side camber may be used as a design parameter, and of course also the position of the maximum suction side camber.
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[0054] The edge of the base comprises one or more corner edge parts, a corner edge part connecting two straight or substantially straight edge parts. The one or more corner edge parts comprises a first leading corner edge part 84 between the first edge part 76 and the fourth edge part 82, a first trailing corner edge part 86 between the first edge part 76 and the third edge part 80, a second leading corner edge part 88 between the second edge part 78 and the fourth edge part 82, and a second trailing corner edge part 90 between the second edge part 78 and the third edge part 80. The vortex generator device 70 has a single first fin 92, also called vane, which protrude from the outer side 74 of the base 71.
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[0063] The second fin 156 has a second primary fin height at the second primary end 158 and a second secondary fin height at the second secondary end 160. The second primary fin height is smaller than the second secondary fin height, such as less than half the second secondary fin height.
LIST OF REFERENCES
[0064] 2 wind turbine [0065] 4 tower [0066] 6 nacelle [0067] 8 hub [0068] 10, 10A wind turbine blade [0069] 14 blade tip [0070] 16 blade root [0071] 18 leading edge [0072] 20 trailing edge [0073] 30 root region [0074] 32 transition region [0075] 34 airfoil region [0076] 50 airfoil profile [0077] 52 pressure side [0078] 54 suction side [0079] 56 leading edge [0080] 58 trailing edge [0081] 60 chord [0082] 62 camber line [0083] 70, 70A, 70B, 70C vortex generator device [0084] 71 base [0085] 72 inner side [0086] 74 outer side [0087] 76 first edge part [0088] 78 second edge part [0089] 80 third edge part [0090] 82 fourth edge part [0091] 84 first leading corner edge part [0092] 86 first trailing corner edge part [0093] 88 second leading corner edge part [0094] 90 second trailing corner edge part [0095] 92 first fin [0096] 94 first primary end [0097] 96 first secondary end [0098] 100, 100A, 100B, 100C adhesive material [0099] 102 first slit [0100] 104 first part of adhesive material [0101] 106 second part of adhesive material [0102] 108 third part of adhesive material [0103] 110 first channel section [0104] 112 second channel section [0105] 114 third channel section [0106] 116 channel node [0107] 118 channel [0108] 120 second slit [0109] 150 vortex generator device [0110] 152 first primary end [0111] 154 first secondary end [0112] 156 second fin [0113] 158 second primary end [0114] 160 second secondary end [0115] 162 primary distance [0116] 164 secondary distance [0117] X1 first fin axis [0118] X2 second fin axis [0119] V1 primary angle [0120] W1 first primary fin angle between the first edge part and the first fin axis X1 [0121] W2 first secondary fin angle between the second edge part and the first fin axis X1 [0122] L1 length of first edge part [0123] L2 length of second edge part [0124] L3 length of third edge part [0125] L4 length of fourth edge part [0126] Lfin length of first fin [0127] R1 radius of curvature for first leading corner edge part 84 [0128] R2 radius of curvature for first trailing corner edge part 86 [0129] R3 radius of curvature for second leading corner edge part 88 [0130] R4 radius of curvature for second trailing corner edge part 90