Wind driven generator

F - Mech Eng,Light,Heat,Weapons – 03 – D

Patent

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Details

F03D 1/06 (2006.01) F03D 11/00 (2006.01)

Patent

CA 2735796

A first wind driven generator 10A according to an embodiment of the present invention includes: a rotor head 12 having wind turbine blades 11 attached thereto; a nacelle 14 that pivotally supports the rotor head 12; a tower that supports the nacelle 14; an opening portion 16 that is provided on a tip end of the rotor head 12 and introduces outside air; and a plurality of air-supply acceleration guides 17A that are provided on an outer circumference of the opening portion 16 of the rotor head 12 and collect the outside air in the opening portion 16. The outside air can be actively taken in the rotor head 12 from the opening portion 16 by causing the air-supply acceleration guides 17A to rotate to follow rotation of the rotor head 12. Inside of the rotor head 12 can be efficiently cooled without any need of new motive power because the outside air taken in the rotor head 12 can increase heat release from a surface of a rotor-head cast metal 22.

L'invention porte sur un premier générateur entraîné par le vent (10A) qui est pourvu d'une tête de rotor (12) sur laquelle sont montées des pales de roue éolienne (11), d'une nacelle (14) afin de porter de manière rotative la tête de rotor (12), d'un mât de support afin de porter la nacelle (14), d'une ouverture (16) formée dans l'extrémité antérieure de la tête de rotor (12) et prenant l'air extérieur, et de guides favorisant l'alimentation en air (17A) montés sur la périphérie extérieure de l'ouverture (16) dans la tête de rotor (12) et collectant de l'air extérieur dans l'ouverture (16). Les guides favorisant l'alimentation en air (17A) tournent avec la rotation de la tête de rotor (12) pour amener l'ouverture (16) à prendre positivement l'air extérieur dans la tête de rotor (12). L'air extérieur pris dans la tête de rotor (12) augmente la quantité de dissipation de chaleur de la surface de la pièce moulée de la tête de rotor (22) et, par conséquent, l'intérieur de la tête de rotor (12) peut être efficacement refroidi sans nécessiter d'énergie supplémentaire.

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