F05B2260/205

Method and system for cooling a wind turbine gearbox oil heat-exchanger

A method and system are provided for cooling a heat-exchanger in a wind turbine that has an electric generator with a cooling air flow directed therethrough. Effluent cooling air flow from the electric generator is directed into an air ejector pump and acts as motive air through the air ejector pump. Cold air is drawn into the air ejector pump by the vacuum generated by the motive air moving through the air ejector pump. The heat exchanger is disposed in-line with the cold air flow so that the cold air is drawn through the heat-exchanger, removes heat from the fluid circulated through the heat-exchanger, and becomes heated air that is combined with the motive air and discharged from the nacelle.

AIR COOLING DEVICE, GENERATOR, AIR GUIDING DEVICE, WIND POWER INSTALLATION AND METHOD FOR PRODUCING A GENERATOR AND A WIND POWER INSTALLATION
20220307483 · 2022-09-29 ·

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.

Cooling heat exchanger for a wind turbine

Provided is a nacelle for a wind turbine extending along a longitudinal axis and including an outer surface and an heat exchanger on the outer surface, the heat exchanger including a plurality of fluid passages for a fluid to be cooled in the heat exchanger and a plurality of air passages for a cooling air flow in thermal contact with the fluid passages, the air passages extending between an inlet surface and an outlet surface of the heat exchanger. The inlet surface is inclined with respect to the longitudinal axis of an installation angle between 0° and 90°.

METHOD AND SYSTEM FOR COOLING A WIND TURBINE GEARBOX OIL HEAT-EXCHANGER
20220128041 · 2022-04-28 ·

A method and system are provided for cooling a heat-exchanger in a wind turbine that has an electric generator with a cooling air flow directed therethrough. Effluent cooling air flow from the electric generator is directed into an air ejector pump and acts as motive air through the air ejector pump. Cold air is drawn into the air ejector pump by the vacuum generated by the motive air moving through the air ejector pump. The heat exchanger is disposed in-line with the cold air flow so that the cold air is drawn through the heat-exchanger, removes heat from the fluid circulated through the heat-exchanger, and becomes heated air that is combined with the motive air and discharged from the nacelle.

Wind turbine nacelle with on-board fluid system

A wind turbine nacelle comprising a plurality of power generating components and a fluid system, wherein the nacelle includes a nacelle cover comprising a lower cover or ‘base’, a roof and side walls, thereby defining an interior space of the nacelle, wherein the fluid system includes a fluid tank that is integrated into the nacelle cover. The invention extends to a panel of a wind turbine nacelle cover, wherein the panel is configured to define at least apart of, or is coupled to, a fluid tank of a fluid system of the wind turbine.

A WIND TURBINE COOLING SYSTEM
20220290654 · 2022-09-15 ·

The present invention relates to a wind turbine cooling system configured to cool components of a wind turbine, the wind turbine having a nacelle, comprising a cooling medium configured to be circulated in a cooling circuit, the cooling circuit is fluidly connecting the components and a cooling device, the cooling device is arranged on an exterior face of the nacelle and is exposed to ambient conditions, such as wind flow and ambient air temperature outside the nacelle, the cooling medium is cooled in the cooling device by wind flow passing through the cooling device, the cooling medium is circulated from the cooling device to the components, wherein a first temperature altering section is fluidly connected with the cooling circuit upstream of the cooling device, the first temperature altering section being configured to heat the cooling medium before entering into the cooling device, and a second temperature altering section is fluidly connected with the cooling circuit downstream of the cooling device, the second temperature altering section being configured to cool the cooling medium after it has left the cooling device.

WIND TURBINE WASTE HEAT RECOVERY SYSTEM
20210123417 · 2021-04-29 ·

A waste heat recovery system of a wind turbine is provided. A wind turbine is disclosed, including an electrical installation to transform wind energy into electrical energy, whereby the electrical installation produces waste heat. The wind turbine includes a waste heat recovery system to transform at least a part of the waste heat into electrical energy.

WIND TURBINE NACELLE WITH ON-BOARD FLUID SYSTEM
20210108621 · 2021-04-15 ·

A wind turbine nacelle comprising a plurality of power generating components and a fluid system, wherein the nacelle includes a nacelle cover comprising a lower cover or ‘base’, a roof and side walls, thereby defining an interior space of the nacelle, wherein the fluid system includes a fluid tank that is integrated into the nacelle cover. The invention extends to a panel of a wind turbine nacelle cover, wherein the panel is configured to define at least apart of, or is coupled to, a fluid tank of a fluid system of the wind turbine.

Method of cooling a wind turbine
11867157 · 2024-01-09 · ·

A method of cooling a wind turbine. A cooling system is operated with a first setpoint temperature to cool the wind turbine over a first period. The method comprises measuring a temperature of the wind turbine over the first period to obtain temperature measurements; allocating each of the temperature measurements to a temperature range, wherein one or more of the temperature ranges are critical temperature ranges; and for each critical temperature range, comparing a parameter indicative of a number of the temperature measurements allocated to the critical temperature range with a threshold; selecting a second setpoint temperature on the basis of the comparison(s); and operating the cooling system with the second setpoint temperature over a second period. An equivalent method is also disclosed in which a power setting of the wind turbine is changed on the basis of the comparison(s).

CURVED HEAT EXCHANGER

A heat exchanger system is disclosed herein that extends between a first component and a second component. The heat exchanger system includes a hot flow path configured to convey hot fluid between the first component and the second component, a cool flow path configured to convey cool fluid, and a heat exchanger located between the first component and the second component along the hot flow path and the cool flow path. The heat exchanger includes at least one curve to accommodate the hot flow path and is configured to reduce the temperature of the hot fluid by allowing the transfer of thermal energy from the hot fluid to the cool fluid.