IP Library Granted Patent US 8,992,170
Granted Patent B2
US 8,992,170 · App. 13/307,281 · Granted Mar 31, 2015

Wind turbine, method of control of a wind turbine and air-conditioning system

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Quick Facts
Patent No.
US 8,992,170
App. No.
13/307,281
Granted
Mar 31, 2015
Kind
B2
Abstract

A wind turbine having an air-conditioning system is provided. The air-conditioning system controls the climatization of the interior of the nacelle of the wind turbine. The air conditioning system includes at least one air inlet for ventilating the interior with air intake from outside of the wind turbine. The air-conditioning system also includes a heater for heating the air intake.

Claims (34)

1. A method of control of a wind turbine having a nacelle, comprising:

controlling a climatization of an interior of the nacelle via an air-conditioning system, by:

ventilating the interior with air intake from outside of the wind turbine via one or more air inlet systems of the air-conditioning system,

heating the air intake via one or more heaters of the air conditioning system, and

measuring, via a temperature sensor arrangement in the air-conditioning system, at least one of an air temperature inside the nacelle, a temperature of a generator of the wind turbine, and a temperature of the outside ambient air of the wind turbine,

wherein the nacelle comprises a canopy enclosing the interior of the nacelle and wherein at least one of the one or more air inlet systems is comprised in the canopy,

controlling the amount of conveyed air to the one or more heaters depending on the measured temperature in order to control the air temperature inside the nacelle and/or the temperature of a generator of the wind turbine,

wherein the air-conditioning system comprises a heater bypass system configured to reduce the amount of conveyed air to the one or more heaters.

2. A wind turbine, comprising:

a nacelle; and

an air-conditioning system for controlling a climatization of an interior of the nacelle,

wherein the air-conditioning system comprises one or more air inlet systems configured for ventilating the interior with air intake from outside of the wind turbine,

wherein the air-conditioning system comprises one or more heaters for heating the air intake,

wherein the air-conditioning system comprises a temperature sensor arrangement configured to measure at least one of an air temperature inside the nacelle, a temperature of a generator of the wind turbine, and a temperature of the outside ambient air of the wind turbine,

wherein the air-conditioning system comprises a controller connected to the temperature sensor arrangement,

wherein the air-conditioning system further comprises:

a heater bypass system configured to reduce the amount of conveyed air to the one or more heaters,

wherein the controller is configured to control the air temperature inside the nacelle and/or the temperature of a generator of the wind turbine by controlling the amount of conveyed air to the one or more heaters depending on the measured temperature.

3. A wind turbine according to claim 2 , wherein the bypass system comprises an actuator and a valve or baffle, wherein the actuator is connected to the valve or baffle for positioning the valve or baffle in at least two different positions, and whereby the controller is connected to the actuator to control the actuator.

4. A wind turbine, comprising:

a nacelle; and

an air-conditioning system for controlling a climatization of an interior of the nacelle,

wherein the air-conditioning system comprises one or more air inlet systems configured for ventilating the interior with air intake from outside of the wind turbine,

wherein the air-conditioning system comprises one or more heaters for heating the air intake,

wherein the nacelle comprises a canopy enclosing the interior of the nacelle and wherein at least one of the one or more air inlet systems is comprised in the canopy, and

wherein the air-conditioning system comprises a temperature sensor arrangement configured to measure at least one of an air temperature inside the nacelle, a temperature of a generator of the wind turbine, and a temperature of the outside ambient air of the wind turbine wherein heated air from the one or more heaters is led into a generator of the wind turbine.

5. The wind turbine according to claim 4 , wherein at least one of the one or more heaters comprises an electrical heater.

6. The wind turbine according to claim 4 , wherein at least one of the one or more heaters comprises a heat exchanger connected to a liquid cooling system of the wind turbine.

7. The wind turbine according to claim 6 , wherein the liquid cooling system is connected to a generator to transfer heat energy from the generator to the heat exchanger.

8. The wind turbine according to claim 4 , wherein at least one of the one or more air inlet systems comprise one or more fans configured to convey air intake into the interior.

9. The wind turbine according to claim 4 , wherein at least one of the one or more air inlet systems comprises one or more air filters realized to filter the air intake.

10. The wind turbine according to claim 4 , wherein at least one of the one or more air inlet systems are configured to create and to maintain an overpressure in the interior in respect to the outside of the interior.

11. The wind turbine according to claim 10 , wherein a one-way seal or one-way valve is provided realized to let air flow out of the nacelle.

12. The wind turbine according to claim 4 , wherein the air-conditioning system comprises a controller connected to the temperature sensor arrangement.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2019
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS GAMESA RENEWABLE ENERGY A/S
Reel/Frame 048003/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2011
From: STIESDAL, HENRIK
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 027301/0775 →