Patents by Inventor Peder Bay Enevoldsen

Peder Bay Enevoldsen has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220018336
    Abstract: Provided is a method for detecting the operative status of an aerodynamic device for influencing the airflow which flows from the leading edge of a rotor blade for a wind turbine to the trailing edge of the rotor blade, the aerodynamic device being movable by an actuator between a first protruded configuration and a second retracted configuration. The method includes the steps of measuring a temporal course of an operational value of the wind turbine, comparing the measured temporal course of the operational value with a desired temporal course of an operational value, and deriving an operative status of the aerodynamic device.
    Type: Application
    Filed: October 31, 2019
    Publication date: January 20, 2022
    Inventors: Per Egedal, Peder Bay Enevoldsen, Moritz Fiedel, Alejandro Gomez Gonzalez, Gustav Hoegh, Mikkel Aggersbjerg Kristensen
  • Publication number: 20220010771
    Abstract: Provided is a spoiler, in particular adaptable spoiler, for a wind turbine blade including: a main body including an airfoil shaped surface to be exposed to air flow; at least one stiffening element distinct from the main body and supporting the airfoil surface, wherein the stiffening element is in particular configured to enforce the shape of the airfoil surface during loading by wind during operation of the wind turbine.
    Type: Application
    Filed: December 6, 2019
    Publication date: January 13, 2022
    Inventors: Peder Bay Enevoldsen, Moritz Fiedel, Florian Girschig, Alejandro Gomez Gonzalez, Krister Just Kristensen, Mikkel Aggersbjerg Kristensen, Anders Michelsen, Henrik Neuschäfer Larsen
  • Publication number: 20210363969
    Abstract: Provided is an apparatus and method for cooperative controlling wind turbines of a wind farm, wherein the wind farm includes at least one pair of turbines aligned along a common axis approximately parallel to a current wind direction and having an upstream turbine and a downstream turbine. The method includes the steps of: a) providing a data driven model trained with a machine learning method and stored in a database, b) determining a decision parameter for controlling at least one of the upstream turbine and the downstream turbine by feeding the data driven model with the current power production of the upstream turbine which returns a prediction value indicating whether the downstream turbine will be affected by wake, and/or the temporal evolvement of the current power production of the upstream turbine; c) based on the decision parameter, determining control parameters for the upstream turbine and/or the downstream turbine.
    Type: Application
    Filed: January 16, 2019
    Publication date: November 25, 2021
    Inventors: Per Egedal, Peder Bay Enevoldsen, Alexander Hentschel, Markus Kaiser, Clemens Otte, Volkmar Sterzing, Steffen Udluft, Marc Christian Weber
  • Patent number: 11181093
    Abstract: A rotor blade for a wind turbine is provided. The rotor blade includes a pressure side, a suction side, a leading edge section with a leading edge, and a trailing edge section with a trailing edge. An airflow flows along the surface of the rotor blade from the leading edge section to the trailing edge section and builds up a boundary layer in close proximity to the surface of the rotor blade. The rotor blade includes a noise reduction device for reducing noise which is generated by interaction of the airflow and the rotor blade. The noise reduction device is located within the boundary layer of the rotor blade. The noise reduction device includes a cover and connection device for connecting the cover to the surface of the rotor blade. The cover spans at least over a part of the surface of the rotor blade.
    Type: Grant
    Filed: July 30, 2014
    Date of Patent: November 23, 2021
    Inventors: Michael J. Asheim, Kristoffer Ahrens Dickow, Peder Bay Enevoldsen, Alex Loeven, Valerio Lorenzoni, Stefan Oerlemans, Anders Smaerup Olsen, Bodo Richert, Manjinder J. Singh, Sigmund Wenningsted Torgard
  • Patent number: 11125215
    Abstract: Provided is a system for determining a soiling state of a wind turbine rotor blade. The system includes a pressure sensor adapted to measure a plurality of pressure values corresponding to a plurality of different heights above a trailing edge region of the wind turbine rotor blade, and a processing unit in communication with the pressure sensor and adapted to determine the soiling state of the wind turbine rotor blade by estimating an air flow velocity distribution above the trailing edge region of the wind turbine rotor blade based on the plurality of pressure values. Furthermore, a corresponding method of determining a soiling state of a wind turbine rotor blade is described.
    Type: Grant
    Filed: December 8, 2017
    Date of Patent: September 21, 2021
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Peder Bay Enevoldsen, Peter Fuglsang, Alejandro Gomez Gonzalez, Jesper Monrad Laursen
  • Patent number: 11078885
    Abstract: A rotor blade for a wind turbine is provided. The rotor blade includes an aerodynamic device for influencing the airflow flowing from the leading-edge section of the rotor blade to the trailing edge section of the rotor blade. The aerodynamic device is mounted at a surface of the rotor blade and includes a pneumatic or hydraulic actuator, such as a hose a cavity, of which the volume depends on the pressure of a fluid being present inside the pneumatic or hydraulic actuator. The rotor blade further includes a control unit for controlling the pressure of the fluid in the hose or the cavity of the aerodynamic device.
    Type: Grant
    Filed: April 10, 2017
    Date of Patent: August 3, 2021
    Inventors: Busra Akay, Peder Bay Enevoldsen, Alejandro Gomez Gonzalez, Jesper Monrad Laursen, Alex Loeven, Frank Scheurich
  • Patent number: 10968887
    Abstract: Provided is a trailing edge assembly of a wind turbine rotor blade, which includes a mounting portion; a flap portion flexibly connected to the mounting portion so that a flap angle subtended between the mounting portion and the flap portion can be altered; a volume adjustable chamber arranged between the mounting portion and the flap portion and realised to alter its volume between a minimum volume associated with a minimum flap angle and a maximum volume associated with a maximum flap angle; and at least one tube to face into an airflow passing over the airfoil region of the rotor blade, and an inner orifice arranged to face into the interior of the volume adjustable chamber such that an airflow between the outer orifice and the inner orifice alters the volume of the volume adjustable chamber. Embodiments of the invention further describe a wind turbine rotor blade.
    Type: Grant
    Filed: January 28, 2019
    Date of Patent: April 6, 2021
    Inventors: Busra Akay, Peder Bay Enevoldsen, Alejandro Gomez Gonzalez
  • Publication number: 20210048003
    Abstract: It is described a method for determining a characteristic of air flow close to a surface of a rotating blade of a wind turbine, the method including: measuring at least one value of the temperature of air close to the surface of the blade; and deriving the characteristic of the air flow based on the temperature value.
    Type: Application
    Filed: October 6, 2017
    Publication date: February 18, 2021
    Inventors: Per Egedal, Peder Bay Enevoldsen, Moritz Fiedel, Alejandro Gomez Gonzalez
  • Patent number: 10823153
    Abstract: A rotor blade uses hot-air, for example exhaust from a generator positioned inside a nacelle of a wind turbine, for de-icing and/or anti-icing. The rotor blade has an airfoil section and a cavity enclosed therein. A flow path inside the cavity, for flow of the hot-air, extends from a root section towards a tip section. Exhaust holes, fluidly connected with the flow path, at an outer surface of the airfoil section emit the hot-air from the airfoil section. The rotor blade includes a cover plate positioned at the outer surface of the airfoil section and masking the exhaust holes, thereby creating an external flow space between the exhaust holes and the cover plate's inner surface. The cover plate guides the hot-air over the outer surface of the airfoil section after the hot-air exits, via the exhaust holes, the airfoil section and before the hot-air escapes the rotor blade.
    Type: Grant
    Filed: September 11, 2018
    Date of Patent: November 3, 2020
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Peder Bay Enevoldsen, Lennart Froelund
  • Publication number: 20200166429
    Abstract: Provided is a method for determining at least one characteristic of a boundary layer a wind turbine rotor blade, including capturing at least one movement of at least one flexible element of at least one sensor being attached to or being part of a surface of the rotor blade, determining the at least one characteristic of the boundary layer based on the at least one captured movement of the at least one flexible element. Further, a sensor device, a wind turbine and a device as well as a computer program product and a computer readable medium are suggested for performing the method.
    Type: Application
    Filed: April 23, 2018
    Publication date: May 28, 2020
    Inventors: Per Egedal, Peder Bay Enevoldsen, Moritz Fiedel, Alejandro Gomez Gonzalez
  • Patent number: 10598149
    Abstract: A rotor blade of a wind turbine including at least one vortex generator is provided. The vortex generator is attached to the surface of the rotor blade and is located at least partially within the boundary layer of the airflow flowing across the rotor blade. The vortex generator is exposed to a stagnation pressure, which is caused by the fraction of the airflow passing over the vortex generator and of which the magnitude depends on the velocity of the fraction of the airflow passing over the vortex generator. The vortex generator is arranged and prepared to change its configuration depending on the magnitude of the stagnation pressure acting on the vortex generator. Furthermore, an aspect relates to a wind turbine for generating electricity with at least one such rotor blade.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: March 24, 2020
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Busra Akay, Peder Bay Enevoldsen
  • Patent number: 10570881
    Abstract: Provided is a method of controlling a rotational speed of a rotor of a wind turbine having a rotor with blades connected thereon, at least one blade including a blade profile changing equipment, the method including: changing the blade profile dependent on a rotational speed deviation of an actual rotational speed of the rotor or the generator rotor from a reference rotational speed.
    Type: Grant
    Filed: August 23, 2017
    Date of Patent: February 25, 2020
    Assignee: Siemens Gamesa Renewable Energy A/S
    Inventors: Per Egedal, Peder Bay Enevoldsen, Claus Vad
  • Publication number: 20200056586
    Abstract: Provided is a method for adjusting a pitch angle of a rotor blade connected to a rotor of a wind turbine, the method includes: pitching the rotor blade towards a target blade pitch angle, the manner of pitching depending on a load on a pitch bearing and/or an azimuthal position of the rotor.
    Type: Application
    Filed: November 27, 2017
    Publication date: February 20, 2020
    Inventors: Julian Ehlers, Michael Hind, Drew Eisenberg, Alejandro Gomez Gonzalez, Peder Bay Enevoldsen, Lasse Gilling
  • Publication number: 20200011292
    Abstract: A rotor blade of a wind turbine including an aerodynamic device which can be actuated pneumatically by the use of a pressure supply system is provided. The pressure supply system includes a pressurized air supply system, a pressurized air transmission system with pressure lines for transmitting the supplied pressurized air from the pressurized air supply system to the aerodynamic device, at least one pneumatic actuator for activating the aerodynamic device, and a safety system to protect the rotor blade from damages caused by overpressure in the pressurized air transmission system and/or the actuator. The safety system includes means for discharging pressurized air from the pressurized air transmission system and/or the actuator. Also provided is a wind turbine for generating electricity including at least one such rotor blade.
    Type: Application
    Filed: November 27, 2017
    Publication date: January 9, 2020
    Inventors: BUSRA AKAY, PEDER BAY ENEVOLDSEN, ALEJANDRO GOMEZ GONZALEZ, BODO RICHERT
  • Publication number: 20200011290
    Abstract: A wind turbine with a rotor blade, wherein the rotor blade includes a pneumatically activatable aerodynamic device and the wind turbine includes a pressure supply system for controlling the activatable aerodynamic device is provided. The pressure supply system includes a pressurized air supply system, a pressurized air transmission system with pressure lines for transmitting the supplied pressurized air from the pressurized air supply system to the aerodynamic device, and at least one pneumatic actuator for activating the aerodynamic device.
    Type: Application
    Filed: November 28, 2017
    Publication date: January 9, 2020
    Inventors: BUSRA AKAY, PEDER BAY ENEVOLDSEN, ALEJANDRO GOMEZ GONZALEZ, BODO RICHERT
  • Publication number: 20200002939
    Abstract: An arrangement to reduce vortex induced vibrations in a building structure is provided. A building structure is disclosed, including an outer surface, whereby a vortex generator is connected to the outer surface of the building structure. The vortex generator is prepared and arranged in a way to generate vortices in an airstream passing by the outer surface.
    Type: Application
    Filed: November 28, 2017
    Publication date: January 2, 2020
    Inventors: Peder Bay Enevoldsen, Alejandro Gomez Gonzalez, Alex Loeven, Cornelis Jan Stam
  • Publication number: 20190376487
    Abstract: Provided is a method of manufacturing wind turbine rotor blades, wherein each rotor blade includes an inboard section and an outboard section, and wherein an inboard blade section including a root end and a transition region is manufactured using a first casting process; and an outboard blade section including an airfoil region is manufactured using a second casting process, which second casting process is different from the first casting process. The invention further describes a wind turbine rotor blade manufactured using such a method.
    Type: Application
    Filed: June 5, 2019
    Publication date: December 12, 2019
    Inventors: PEDER BAY ENEVOLDSEN, Steffen Frydendal Poulsen
  • Patent number: 10502187
    Abstract: A rotor blade with a leading edge and a trailing edge, wherein the rotor blade is designed and configured for being exposed to a fluid flowing substantially from the leading edge to the trailing edge) of the rotor blade, the rotor blade includes at least one sensor for detecting flow characteristics of the fluid, and the rotor blade further includes at least one actuator for producing an anti-noise signal. The sensor and the actuator are both arranged at the surface of the rotor blade, and the actuator is arranged and prepared such that flow-induced edge noise of the rotor blade, which is generated by the fluid, is at least partly cancelled out by the anti-noise signal. The disclosure furthermore relates to a wind turbine including at least one such rotor blade.
    Type: Grant
    Filed: May 4, 2017
    Date of Patent: December 10, 2019
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Peder Bay Enevoldsen, Stefan Oerlemans, Bodo Richert, Bo Birkemose
  • Publication number: 20190368470
    Abstract: Provided is a system for determining a soiling state of a wind turbine rotor blade. The system includes a pressure sensor adapted to measure a plurality of pressure values corresponding to a plurality of different heights above a trailing edge region of the wind turbine rotor blade, and a processing unit in communication with the pressure sensor and adapted to determine the soiling state of the wind turbine rotor blade by estimating an air flow velocity distribution above the trailing edge region of the wind turbine rotor blade based on the plurality of pressure values. Furthermore, a corresponding method of determining a soiling state of a wind turbine rotor blade is described.
    Type: Application
    Filed: December 8, 2017
    Publication date: December 5, 2019
    Inventors: Peder Bay Enevoldsen, Peter Fuglsang, Alejandro Gomez Gonzalez, Jesper Monrad Laursen
  • Patent number: D906964
    Type: Grant
    Filed: November 13, 2017
    Date of Patent: January 5, 2021
    Assignee: SIEMENS GAMESA RENEWABLE ENERGY A/S
    Inventors: Michael J. Asheim, Peder Bay Enevoldsen, Oriol Ferret Gasch