ADJUSTMENT UNIT FOR ADJUSTING BY AZIMUTH AND/OR FOR ADJUSTING ANGLE OF ATTACK OF WIND-DRIVEN POWER PLANT, CORRESPONDING ADJUSTMENT APPARATUS WITH SUCH ADJUSTMENT UNIT, WIND-DRIVEN POWER PLANT, METHOD OF ADJUSTING ROTOR BLADE, METHOD OF TRACKING WIND DIRECTION, AS WELL AS USE OF ADJUSTMENT UNIT Russian patent published in 2020 - IPC F03D7/02 F03D80/00 F16H1/32 F16H25/02 

Abstract RU 2732083 C1

FIELD: physics.

SUBSTANCE: present invention relates to control unit (202, 302) for azimuth adjustment and/or to adjust angle of attack of wind power plant (100), control device, device (200) for adjusting the angle of attack, device (300) for azimuth adjustment, wind-driven power plant, as well as methods of adjusting the rotor blade and tracking the wind direction, as well as using an adjustment unit and/or adjustment device. Said adjusting unit (202, 302) for azimuth adjustment and/or to adjust angle of attack of wind-driven power plant (100) comprises drive assembly (230, 240, 250, 260, 330) mounted on first ring-shaped flange (215, 311) with eccentric shaft (340), installed on the perimeter of the second annular flange, installed with possibility of rotation relative to the first annular flange, first engagement member (380), wherein a circumferential surface of the first engagement member accommodates a plurality of concave and convex first cam portions (382, 482), and second element (272, 274, 350, 360, 450, 460) of engagement with circumferential surface (452) and corresponding first cam sections, concave and convex second cam sections (454).

EFFECT: broader functional capabilities.

19 cl, 10 dwg

Similar patents RU2732083C1

Title Year Author Number
ROTOR BLADE OF WIND-DRIVEN POWER PLANT AND WIND-DRIVEN POWER PLANTS WITH SUCH ROTARY BLADE 2017
  • Knoop, Frank
  • Gudewer, Wilko
  • Hoffmann, Alexander
  • Mtauweg, Samer
RU2716950C1
WIND-DRIVEN POWER PLANT 2017
  • Mtauweg, Samer
RU2710456C1
NACELLE OF WIND POWER PLANT 2012
  • Reer Jokhen
  • Zartorius Florian
RU2596414C2
GENERATOR ROTOR FOR A GENERATOR OF A WIND-DRIVEN POWER PLANT OR A HYDROELECTRIC POWER PLANT, AS WELL AS A GENERATOR, A WIND-DRIVEN POWER PLANT AND A HYDROELECTRIC POWER PLANT WITH SUCH A GENERATOR 2017
  • Boettcher, Bernd
RU2711117C1
WIND TURBINES AND METHOD FOR WIND TURBINE OPERATION 2013
  • Shtoltenjokhannes Yurgen
  • Bolen Tomas
  • Kharms Kharro
  • Brenner Albrekht
  • Shlyuter Rajner
RU2617529C2
WIND-DRIVEN POWER PLANT 2012
  • Brenner Al'Brekht
  • Knoop Frank
  • Ubben Mattias
RU2560642C2
SECTION OF STEEL TOWER OF WIND-DRIVEN POWER PLANT FOR TOWER OF WIND-DRIVEN POWER PLANT AND METHOD OF PRODUCTION THEREOF 2018
  • Kersten, Roy
  • Lange, Ronald
  • Randel, Britta
RU2741354C1
LIFTING MECHANISM FOR LIFTING COMPONENT OF WIND-DRIVEN POWER PLANT AND METHOD OF MOUNTING COMPONENTS OF WIND-DRIVEN POWER PLANT 2017
  • Meyer, Wolfgang
  • Luelker, Frank
  • Beeckmann, Sascha
RU2699157C1
WIND-DRIVEN POWER PLANT TOWER BASE SECTION 2012
  • Koordes Tomas
RU2611086C2
ROTARY BLADE FOR A WIND POWER PLANT AND WIND POWER PLANT 2019
  • Messing, Ralf
  • Stemberg, Jochen
RU2766498C1

RU 2 732 083 C1

Authors

Gudewer, Wilko

Jepsen, Torsten

Dates

2020-09-11Published

2018-02-26Filed