1. Field of the Invention
The present invention relates to a wind turbine, and more particularly to an adjustable wind turbine generating arrangement or device or mechanism for allowing the wind turbine device to be easily driven or actuated or operated at the beginning or with the lower head wind and for allowing the wind turbine to be driven or actuated or operated to generate a relatively greater electric power when heading a greater head wind.
2. Description of the Prior Art
Typical wind turbines comprise a nacelle pivotally or rotatably supported on top of a tower, and one or more rotator blades pivotally or rotatably attached or mounted or secured onto the tower and connected or coupled to the motor or the generator for rotating or driving or actuating the motor or generator to generate an electric energy or power.
For example, U.S. Patent No. 6,703,718 to Calley et al. discloses one of the typical wind turbines comprising a permanent magnet alternator that uses a boost mode controller to improve performance at low and high wind speeds, and to allow the permanent magnet alternator to be slowed so that the wind turbine can be stall controlled.
However, a complicated structure or arrangement and a number of electric parts or elements are required to be provided to control and to improve the performance of the permanent magnet alternator of the typical wind turbines at low and high wind speeds, normally, the rotors of the typical wind turbines may not be moved or adjusted axially.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages of the conventional gale protections for the wind turbines.
The primary objective of the present invention is to provide an adjustable wind turbine generating arrangement or device or mechanism arranged for allowing the wind turbine device to be easily driven or actuated or operated at the beginning or with the lower head wind and for allowing the wind turbine to be driven or actuated or operated to generate a relatively greater electric power when heading a greater head wind.
In accordance with one aspect of the invention, there is provided a wind turbine comprising a nacelle including a chamber formed therein, a coil disposed in the chamber of the nacelle and including a compartment formed therein and defined by an inner peripheral surface, a spindle rotatably received and engaged in the chamber of the nacelle and including a first end extendible out of the nacelle, and including a second end, the spindle being slidable relative to the nacelle, a rotator blade device mounted onto the first end of the spindle for rotating the spindle relative to the coil to generate an electric energy, a rotor attached to the spindle and rotated in concert with the spindle, and movable relative to the coil, and a spring biasing member for biasing and moving the rotor to move relative to the coil, and to move the rotator blade device away from the nacelle, and the rotator blade device is movable toward the nacelle with a head wind, and the rotor is movable relative to the coil to adjust a torque between the coil and the rotor when the spindle and the rotor are moved axially relative to the coil and the nacelle, and the rotator blade device being movable away from the nacelle with the spring biasing member when no head wind is directed toward the rotator blade device for allowing the wind turbine device to be easily driven at the beginning or with the lower head wind.
The spindle is rotatably received and engaged in the chamber of the nacelle with at least one joint or journal bearing. The spring biasing member is engaged with the joint or journal bearing for biasing and moving the rotor and the spindle to move relative to the coil.
The inner peripheral surface of the coil is an inclined inner peripheral surface, and the coil includes a relatively greater inner diameter at a first end thereof and a relatively smaller inner diameter at a second end thereof for receiving the spindle.
The rotor includes a first end having a relatively greater outer diameter, and a second end having a relatively smaller outer diameter for forming an inclined outer peripheral surface which includes an inclination equal to that of the inclined inner peripheral surface of the coil for allowing the outer peripheral surface of the rotor to be moved and adjusted toward and away from the inner peripheral surface of the coil.
Further objectives and advantages of the present invention will become apparent from a careful reading of the detailed description provided hereinbelow, with appropriate reference to the accompanying drawings.
Referring to the drawings, and initially to
The wind turbine 1 further includes one or more rotator blades or a rotator blade device 50 attached or mounted or secured onto the nacelle 10 and/or connected or coupled to the spindle 30 of the motor or electric generator or generating arrangement or mechanism or device 2 for rotating or driving or actuating the spindle 30 relative to the coil 20 of the motor or generator or generating arrangement or mechanism or device 2 to generate an electric energy or power. The above-described structure or configuration including the nacelle 10, and the rotator blade device 50 is typical and will not be described in further details.
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The wind turbine 1 further includes a magnet or magnetic member or rotor 33 attached or mounted or secured on the spindle 30 and rotated in concert with the spindle 30, and movable relative to the coil 20, and includes a cone or frustum-shaped structure having a relatively greater outer diameter at one or first end 34 thereof and a relatively smaller outer diameter at the other or second end 35 thereof for forming or defining a tiled or inclined outer peripheral surface 36 which includes a tilt or inclination similar or equal to that of the tiled or inclined inner peripheral surface 22 of the coil 20, for allowing the outer peripheral surface 36 of the rotor 33 to be moved or adjusted toward or away from the inner peripheral surface 22 of the coil 20, and/or for allowing the rotor 33 to move relative to the coil 20 and to adjust the force or the torque between the coil 20 and the rotor 33 when the spindle 30 and the rotor 33 are moved axially relative to the coil 20 and the nacelle 10 (
A spring biasing member 37 is disposed or engaged in the chamber 12 of the nacelle 10 and engaged between the nacelle 10 and one of the joints or journal bearings 14 and/or the spindle 30 and/or the rotor 33 for forcing or biasing the rotor 33 toward the one or first end 23 of the coil 20 (
In operation, as shown in
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Accordingly, the wind turbine in accordance with the present invention includes adjustable wind turbine generating arrangement or device or mechanism arranged for allowing the wind turbine device to be easily driven or actuated or operated at the beginning or with the lower head wind and for allowing the wind turbine to be driven or actuated or operated to generate a relatively greater electric power when heading a greater head wind.
Although this invention has been described with a certain degree of particularity, it is to be understood that the present disclosure has been made by way of example only and that numerous changes in the detailed construction and the combination and arrangement of parts may be resorted to without departing from the spirit and scope of the invention as hereinafter claimed.