Patents by Inventor Wojciech Giengiel

Wojciech Giengiel 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: 20240102442
    Abstract: A generator for a wind power installation for generating electrical energy from kinetic energy comprises an outer peripheral surface portion, the outer peripheral surface portion having: an incident-flow surface portion against which wind flows in an incident-flow direction in the installed state of the generator, the incident-flow surface portion extending along an axial direction and orthogonally thereto along a peripheral direction, and a cooling surface portion, designed for cooling the generator and disposed downstream of the incident-flow surface portion in the installed state in the incident-flow direction, the cooling surface portion extending along an axial direction and orthogonally thereto along a peripheral direction, wherein one or more vortex generators for passive cooling of the generator are arranged in a region of the outer peripheral surface portion, in particular in a region of the incident-flow surface portion and/or in a region of the cooling surface portion.
    Type: Application
    Filed: September 25, 2023
    Publication date: March 28, 2024
    Inventors: Hussam Daboul, Wojciech Giengiel, Matthias Arnold
  • Publication number: 20240097537
    Abstract: The disclosure relates to a generator segment of a segmented generator, in particular of a permanently excited segmented rotary generator, of a wind turbine, comprising a rotor segment of a rotor, and a stator segment of a stator, wherein the rotor segment and the stator segment in an operation position are disposed so as to be mutually spaced apart in a radial direction by an air gap, and are disposed so as to be mutually spaced apart in an axial direction by an axial spacing; wherein the rotor segment and the stator segment are able to be disposed and/or displaced relative to one another along a rotation axis by the axial spacing, between an operation position and a transport position that is different from the operation position.
    Type: Application
    Filed: December 17, 2021
    Publication date: March 21, 2024
    Inventors: Manuel Feith, Wojciech Giengiel, Stephan Jöckel, Alexander Philipp, Sebastian Bauer, Lars Fischer, Wilko Gudewer, Andreas Recktenwald
  • Publication number: 20240097528
    Abstract: A stator segment of a stator of a generator for a wind turbine has at least one stator laminated core which has at least two stator lamination stacks, wherein adjacent stator lamination stacks of the at least two stator lamination stacks are in each case spaced parallel to one another in an axial direction and forming in each case one stator cooling duct with a stator cooling duct width through which a cooling medium can be guided, in particular in a radial direction. A rotor segment of a rotor for a wind turbine has two or a plurality of magnet units are disposed spaced apart from one another in an axial direction, wherein the magnet units disposed adjacently in the axial direction define a circumferential gap with a gap width for feeding and distributing a cooling medium.
    Type: Application
    Filed: December 17, 2021
    Publication date: March 21, 2024
    Inventors: Michael Müller, Wilko Gudewer, Andreas Recktenwald, Tobias Muik, Stephan Jöckel, Manuel Feith, Wojciech Giengiel
  • Publication number: 20240097529
    Abstract: A stator laminated core for receiving at least one coil unit of a stator segment of a stator of a generator, in particular a segmented stator of a segmented generator, for a wind turbine, comprises at least one stator lamination stack with two or more lamination stack units which are disposed spaced apart from one another in a circumferential direction and have a plurality of first stator lamination elements which are disposed next to one another, in particular stacked, in an axial direction; wherein the at least one stator lamination stack comprises at least one second stator lamination element, preferably two second stator lamination elements, which is different from the first stator lamination element and in each case connects adjacent lamination stack units of the two or more lamination stack units to one another.
    Type: Application
    Filed: December 17, 2021
    Publication date: March 21, 2024
    Inventors: Manuel Feith, Wojciech Giengiel, Stephan Jöckel, Andreas Recktenwald, Tobias Muik, Charan Karapanahalli
  • Publication number: 20240097515
    Abstract: A rotor segment of a segmented generator, in particular of a permanently excited segmented rotary generator, of a wind turbine, comprises a magnet carrier segment with a rotor circumferential face, in particular a rotor external circumferential face, which in a circumferential direction extends between a first and second separation interface by way of a segment length; the rotor circumferential face having a first separation interface portion having a first length proceeding from the first separation interface in the circumferential direction toward the second separation interface; and a second separation interface portion having a second length proceeding from the second separation interface in the circumferential direction toward the first separation interface; and a connection portion having a third length extending between the first and second separation interface; wherein in each case a reinforcement device for reinforcing the magnet carrier segment is disposed on the rotor circumferential face in the re
    Type: Application
    Filed: December 17, 2021
    Publication date: March 21, 2024
    Inventors: Manuel Feith, Wojciech Giengiel, Stephan Jöckel, Andreas Sattler, Lars Fischer, Alexander Philipp
  • Patent number: 11873799
    Abstract: Air cooling device for the air cooling of a generator of a wind power installation by means of wind, comprising a cooling unit of the generator with a cooling unit outer surface, the wind flowing onto said cooling unit outer surface for the air cooling of the generator during the operation of the wind power installation, wherein an air deflector is arranged on the cooling unit outer surface of the cooling unit and has a first air deflection unit which extends outwardly at an acute angle starting from the cooling unit outer surface and forms with the cooling unit a converging first air deflection channel, which is configured in an operating state of the wind power installation to deflect the wind for the air cooling in the direction of the cooling unit.
    Type: Grant
    Filed: March 18, 2022
    Date of Patent: January 16, 2024
    Assignee: Wobben Properties GmbH
    Inventors: Hussam Daboul, Wojciech Giengiel, Jochen Stemberg
  • Publication number: 20230093800
    Abstract: The present invention relates to a control unit for a converter, preferably of a power converter of a wind power installation, in particular of an active rectifier of a power converter of a wind power installation, comprising: a primary control module for specifying a setpoint value for the converter; a first secondary control module for controlling the converter, in particular a first converter module of the converter, which second secondary control module is configured to produce a first control signal according to the setpoint value; a second secondary control module for controlling the converter, in particular a second converter module of the converter, which converter module is connected in parallel with the first converter module, which second secondary control module is configured to produce a second control signal according to the first control signal.
    Type: Application
    Filed: September 27, 2022
    Publication date: March 30, 2023
    Inventors: Wojciech Giengiel, Johannes Warsinski
  • Patent number: 11480152
    Abstract: A rotor arresting device, a wind turbine and a method for arresting and/or rotating a rotor. The rotor arresting device comprises a rotor, a rotational assembly, and a static assembly fixed in position, comprising a toothed disk, which can be arranged on the rotational assembly, having a plurality of arresting recesses arranged along a circumference, wherein two adjacent arresting recesses form a tooth, a first arresting module having at least one first arresting element, a second arresting module having at least one second arresting element, wherein the first and the second arresting module can be arranged on the static assembly, wherein the first and the second arresting element are arranged and designed to engage in arresting recesses of the toothed disk, wherein the spacing of the first arresting element from the second arresting element in the circumferential direction of the toothed disk is a non-integral multiple of a tooth tip spacing of the toothed disk.
    Type: Grant
    Filed: November 27, 2017
    Date of Patent: October 25, 2022
    Assignee: Wobben Properties GmbH
    Inventors: Wojciech Giengiel, Jochen Röer
  • Publication number: 20220307483
    Abstract: Air cooling device for the air cooling of a generator of a wind power installation by means of wind, comprising a cooling unit of the generator with a cooling unit outer surface, the wind flowing onto said cooling unit outer surface for the air cooling of the generator during the operation of the wind power installation, wherein an air deflector is arranged on the cooling unit outer surface of the cooling unit and has a first air deflection unit which extends outwardly at an acute angle starting from the cooling unit outer surface and forms with the cooling unit a converging first air deflection channel, which is configured in an operating state of the wind power installation to deflect the wind for the air cooling in the direction of the cooling unit.
    Type: Application
    Filed: March 18, 2022
    Publication date: September 29, 2022
    Inventors: Hussam Daboul, Wojciech Giengiel, Jochen Stemberg
  • Publication number: 20220224265
    Abstract: Provided is a method for heating a generator of a wind power installation during or before starting the installation. The generator is a permanent magnet synchronous generator configured to generate a stator current comprising at least one three-phase current. The installation is configured as a gearless installation and is connected to an electrical supply network for feeding electrical power into the network. The installation comprises a converter, connected to the generator, to control the generator to feed electrical power into the network. The method comprises rotating the rotor with a low rotational speed below a first limit and operating the converter such that the generator generates the stator current and electrical power, and no electrical power is fed into the electrical supply network. At least one portion of the stator current substantially circulates through the generator and the converter to consume power in generator windings to heat the generator.
    Type: Application
    Filed: January 10, 2022
    Publication date: July 14, 2022
    Inventors: Stephan Jöckel, Christian Heyen, Tobias Muik, Wojciech Giengiel, Stefan Gertjegerdes, Menko Bakker, Harri Vihriälä
  • Patent number: 11353004
    Abstract: A method and a wind turbine are provided. The wind turbine includes a gearless generator that is a synchronous generator and includes a stator and a generator rotor. The wind turbine includes a generator filter with modifiable filter properties that is coupled to the stator and configured to filter a stator current. The wind turbine includes a filter controller configured to control the generator filter.
    Type: Grant
    Filed: June 7, 2018
    Date of Patent: June 7, 2022
    Assignee: Wobben Properties GmbH
    Inventors: Alfred Beekmann, Wojciech Giengiel, Simon Schrobsdorff
  • Patent number: 11156209
    Abstract: A generator rotor for a wind power plant, wherein the generator rotor has at least one dividing plane for dividing the generator rotor into at least two segments. The dividing planes extend in the generator rotor along asymmetrical section lines of the generator rotor. A generator stator for a wind power plant, a generator of a wind power plant, and a wind power plant and a method for transporting a generator.
    Type: Grant
    Filed: August 24, 2018
    Date of Patent: October 26, 2021
    Assignee: Wobben Properties GmbH
    Inventors: Jan Carsten Ziems, Wojciech Giengiel, Mats Volles, Michael Freese, Wilko Gudewer, Jan-Phillip Köhler
  • Patent number: 11035343
    Abstract: A wind power installation with a tower, an aerodynamic rotor, wherein the aerodynamic rotor can be operated with a variable rotor speed and has a number of rotor blades respectively with an adjustable rotor blade angle, a generator for generating an electrical output power, wherein for operating the wind power installation an operating characteristic, which indicates a relationship between the rotor speed and the output power, is specified and a controller, which sets the output power in a way corresponding to the operating characteristic in dependence on the rotor speed, is provided, wherein selectable as the operating characteristic is a reduced-tonality operating characteristic, which is designed such that an excitation of a system resonance of the wind power installation is reduced as compared with an optimum-power operating characteristic, without however excluding a speed that excites this system resonance.
    Type: Grant
    Filed: October 25, 2017
    Date of Patent: June 15, 2021
    Assignee: Wobben Properties GmbH
    Inventors: Ralf Messing, Wojciech Giengiel, Sven Seeberg
  • Patent number: 10961986
    Abstract: A method for controlling a gearless wind turbine, wherein the wind turbine comprises a generator having a stator and a rotor and an air gap therebetween which has an air gap thickness, wherein the generator is designed as an internal rotor, with the stator as an outer part and the rotor as an inner part, or the generator is designed as an external rotor, with the rotor as an outer part and the stator as an inner part, said method comprising the following steps: detecting a temperature of the outer part as an outer part temperature, detecting a temperature of the inner part as an inner part temperature, calculating a temperature difference as the difference between the outer part temperature and the inner part temperature, and controlling the generator according to the temperature difference such that a reduction in the air gap thickness by thermal expansion of the generator is counteracted.
    Type: Grant
    Filed: April 5, 2018
    Date of Patent: March 30, 2021
    Assignee: Wobben Properties GmbH
    Inventors: Ulf Schaper, Kai Enskonatus, Wojciech Giengiel
  • Publication number: 20200182222
    Abstract: A generator rotor for a wind power plant, wherein the generator rotor has at least one dividing plane for dividing the generator rotor into at least two segments. The dividing planes extend in the generator rotor along asymmetrical section lines of the generator rotor. A generator stator for a wind power plant, a generator of a wind power plant, and a wind power plant and a method for transporting a generator.
    Type: Application
    Filed: August 24, 2018
    Publication date: June 11, 2020
    Inventors: Jan Carsten ZIEMS, Wojciech GIENGIEL, Mats VOLLES, Michael FREESE, Wilko GUDEWER, Jan-Phillip KÖHLER
  • Publication number: 20200149514
    Abstract: A method for controlling a gearless wind turbine, wherein the wind turbine comprises a generator having a stator and a rotor and an air gap therebetween which has an air gap thickness, wherein the generator is designed as an internal rotor, with the stator as an outer part and the rotor as an inner part, or the generator is designed as an external rotor, with the rotor as an outer part and the stator as an inner part, said method comprising the following steps: detecting a temperature of the outer part as an outer part temperature, detecting a temperature of the inner part as an inner part temperature, calculating a temperature difference as the difference between the outer part temperature and the inner part temperature, and controlling the generator according to the temperature difference such that a reduction in the air gap thickness by thermal expansion of the generator is counteracted.
    Type: Application
    Filed: April 5, 2018
    Publication date: May 14, 2020
    Inventors: Ulf SCHAPER, Kai ENSKONATUS, Wojciech GIENGIEL
  • Publication number: 20200124023
    Abstract: A method and a wind turbine are provided. The wind turbine includes a gearless generator that is a synchronous generator and includes a stator and a generator rotor. The wind turbine includes a generator filter with modifiable filter properties that is coupled to the stator and configured to filter a stator current. The wind turbine includes a filter controller configured to control the generator filter.
    Type: Application
    Filed: June 7, 2018
    Publication date: April 23, 2020
    Inventors: Alfred Beekmann, Wojciech Giengiel, Simon Schrobsdorff
  • Publication number: 20200088163
    Abstract: A rotor arresting device, to a wind turbine and to a method for arresting and/or rotating a rotor. The rotor arresting device comprises a rotor, a rotational assembly, and a static assembly fixed in position, comprising a toothed disk, which can be arranged on the rotational assembly, having a plurality of arresting recesses arranged along a circumference, wherein two adjacent arresting recesses form a tooth, a first arresting module having at least one first arresting element, a second arresting module having at least one second arresting element, wherein the first and the second arresting module can be arranged on the static assembly, wherein the first and the second arresting element are arranged and designed to engage in arresting recesses of the toothed disk, wherein the spacing of the first arresting element from the second arresting element in the circumferential direction of the toothed disk is a non-integral multiple of a tooth tip spacing of the toothed disk.
    Type: Application
    Filed: November 27, 2017
    Publication date: March 19, 2020
    Applicant: Wobben Properties GmbH
    Inventors: Wojciech GIENGIEL, Jochen RÖER
  • Publication number: 20200063713
    Abstract: A wind power installation with a tower, an aerodynamic rotor, wherein the aerodynamic rotor can be operated with a variable rotor speed and has a number of rotor blades respectively with an adjustable rotor blade angle, a generator for generating an electrical output power, wherein for operating the wind power installation an operating characteristic, which indicates a relationship between the rotor speed and the output power, is specified and a controller, which sets the output power in a way corresponding to the operating characteristic in dependence on the rotor speed, is provided, wherein selectable as the operating characteristic is a reduced-tonality operating characteristic, which is designed such that an excitation of a system resonance of the wind power installation is reduced as compared with an optimum-power operating characteristic, without however excluding a speed that excites this system resonance.
    Type: Application
    Filed: October 25, 2017
    Publication date: February 27, 2020
    Inventors: Ralf MESSING, Wojciech GIENGIEL, Sven SEEBERG
  • Publication number: 20180097411
    Abstract: A synchronous generator and a pole pack for a rotor of a synchronous generator of a wind power plant are disclosed The pole pack has a plurality of pole pack laminations, where each pole pack lamination includes a pole shank region and a pole head region. The pole head region projects laterally beyond the pole shank region and has a side which faces the pole shank region and a side which faces away from the pole shank region. A contour of the pole head region is ellipsoidal at least on the side which faces away from the pole shank region.
    Type: Application
    Filed: March 11, 2016
    Publication date: April 5, 2018
    Inventor: Wojciech GIENGIEL