Technical Field
The present invention relates to a wind turbine and to a lightning protection unit for a wind turbine.
Description of the Related Art
When wind turbines are installed in open terrain, this, combined with their great overall height, inevitably involves the risk of lightning strike.
DE 44 36 197 C2 discloses a wind turbine having a lightning protection means. To enable lightning to be safely diverted, an aluminium ring, made of a conducting material, is provided in the region close to the root of the rotor blade. A lightning rod, disposed at a predefined distance from the metal rings, is provided on a stationary part of the nacelle. When lightning strikes, the lightning can overcome the spark gap between the ring and the lightning rod, and thus be diverted.
EP 1 561 030 B1 likewise discloses a lightning protection means for a wind turbine. In this case, likewise, a conducting ring is provided in the region close to the root of the rotor blade. A sliding contact connection is provided parallel to the spark gap.
DE 10 2009 017 824 A1 discloses a transmission device for transmitting electrostatic energy and lightning current between a rotor shaft and a non-rotating earthing device. The transmission device has a sliding-action contact device, an electrode for transmitting lightning current, and two rollers.
One or more embodiments of the present invention are directed to provide a wind turbine having an improved lightning protection means.
A wind turbine is provided, having a nacelle, and having a rotor that has at least two rotor blades. The rotor blades each have at least one metallic conductor, for conducting a lightning strike, and connected thereto, in the region of a rotor blade root, have a conducting ring. In addition, a lightning protection unit is fastened to the non-rotating part of the nacelle in such a manner that the lightning protection unit lies on the ring on the rotor blade. The lightning protection unit has two non-conducting rollers and a lightning rod, a free end of the lightning rod being separated from an outer end of the rollers by a distance that defines a spark gap. Thus, only the rollers of the lightning protection unit lie on the ring.
According to an aspect of the present invention, the lightning protection unit has a rocker unit that is fastened to a non-rotating part of the nacelle via a springing plate.
The invention likewise relates to a lightning protection unit for a wind turbine. The lightning protection unit has a springing plate that can be fastened at one end to a non-rotating part of the nacelle of the wind turbine. The lightning protection unit additionally has a rocker unit that is fastened to a second end of the spring plate. In addition, the lightning protection unit has two non-conducting rollers that are coupled to the rocker unit. Furthermore, the lightning protection unit has a lightning rod that is coupled to the rocker unit. A free end of the lightning rod is separated from the outer end of the rollers by a distance in such a manner that it defines a spark gap, such that only the rollers are in contact with a ring on the rotor blade.
The present invention relates to the concept of providing, instead of a lightning rod, a lightning protection means or unit that at any given time provides a defined distance between a conducting ring, in the region close to the root of the rotor blade, and a lightning diverter. This is achieved in that the lightning protection means has a rocker, having two rollers made of a non-conducting material, the rollers being in contact with the conducting ring in the region close to the root of the rotor blade. The distance of the lightning diverter and the rollers can thus be used to set a defined distance between the lightning diverter and the non-conducting ring on the rotor blade. Consequently, a defined distance between the conducting ring and a lightning rod (i.e., the width of the spark gap) can be provided even for rotor blades that are not round. The defined distance can be used to select a smaller spark gap.
According to an aspect of the present invention, the lightning protection means according to the invention can be retrofitted.
Further designs of the invention constitute subject-matter of the dependent claims.
Advantages and exemplary embodiments of the invention are explained in greater detail in the following with reference to the drawings.
The rollers 241 are preferably made of a non-conducting material such as, for example, plastic or Teflon. The width of the rollers 241 may be, for example, 20 cm.
Owing to the provision of the rocker unit 243, which can be pivoted in respect of the second end of the plate 244, it can be ensured that both rollers 241 lie on the ring 230 at any given time.
The lightning protection unit according to the invention, in particular the pivotable rocker unit, makes it possible to ensure a defined distance between the lightning rod 242 and the conducting ring 230, even if the ring 230 or the rotor blade 108 is not round.
Number | Date | Country | Kind |
---|---|---|---|
10 2013 208 792 | May 2013 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2014/059503 | 5/8/2014 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2014/184094 | 11/20/2014 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6407900 | Shirakawa et al. | Jun 2002 | B1 |
6932574 | Wobben | Aug 2005 | B2 |
20120039011 | Thiel et al. | Feb 2012 | A1 |
20130100570 | Lyngby | Apr 2013 | A1 |
20130181457 | Lyngby | Jul 2013 | A1 |
Number | Date | Country |
---|---|---|
44 36 197 | Sep 1998 | DE |
10 2004 022 299 | Dec 2005 | DE |
10 2009 017 824 | Oct 2010 | DE |
1 561 030 | Nov 2003 | EP |
1 788 241 | May 2007 | EP |
2000265938 | Sep 2000 | JP |
2003-532836 | Nov 2003 | JP |
37155 | Apr 2004 | RU |
2309290 | Oct 2007 | RU |
2325552 | May 2008 | RU |
200912131 | Mar 2009 | TW |
201018780 | May 2010 | TW |
Number | Date | Country | |
---|---|---|---|
20160084232 A1 | Mar 2016 | US |