The present invention relates to harnessing renewable energies and in particular to wind power, proposing a blade for a wind generator made with configuration features making it particularly advantageous for harnessing the force of the wind as driving means to operate an electric generator.
There is an increasing number of technological developments aimed at making the use of renewable energies to generate energies for consumption, such as electric power and thermal power, cost-effective, highlighting in that sense studies which are being conducted in the field of wind power.
Capturing the force of the wind to convert it into electric power is performed conventionally by means of wind generators formed by one or more blade rotors which are actuated by the action of the wind, producing a rotational movement which is used to move the shaft of an electric generator.
Blade rotors of conventional wind generators use aerodynamically shaped large-sized blades such that when the wind impacts said blades it creates a cross slip flow on them, giving rise to a rotational direction component in the rotor in which they are equipped.
Said shape and arrangement of the blades of wind rotors require precise orientation of the blades depending on wind force and direction such that given the spontaneous and undetermined variability of said wind factors, constant wind rotor and blade orientation control is necessary, for which very complicated and costly functional installations are required.
According to the invention, a blade is proposed which has been provided with a structural shape having very advantageous features to capture the action of the wind, such that it allows very effectively harnessing wind force to actuate the operation of an electric generator with high production efficiency and a very simple installation.
This blade object of the invention is formed by a semicylindrical surface flattened at one end such that it defines a concavity which progressively widens from the flat end part, that flat end part forming a base for anchoring the blade in the application assembly.
The blade thus formed is fixed by the flat end hart on a support disc on which a set of at least three blades is incorporated in the same manner, distributed in a uniform circular manner, forming a wind rotor which can incorporated on an operating shaft of an electric generator.
Three or more blades can be arranged in each wind rotor, all with the concavity in the same direction, and one or more wind rotors can be incorporated in the shaft intended to be actuated, all arranged with the concavity of their blades oriented in the same direction, said shaft being able to he arranged coupled directly with respect to an electric generator or through a remote transmission.
A wind generator is thereby obtained in which the blades of the wind rotors allow capturing the wind through the concave part, generating a rotation force of the wind rotor which is much greater than that which the wind causes when it impacts the convex part of the blades, such that in the set of each wind rotor the wind produces a resulting rotation force in the direction in which the blades receive the wind through the concave part, giving rise to a rotation which can be used to operate an electric generator.
With concave blades of this type object of the invention, capturing the wind only requires the orientation of the wind rotors so that the blades are perpendicular to the wind, which can be determined by means of electronic control or autonomously by the action of the wind itself by means of a weathervane, such that the installation of the assembly is further simpler than that of conventional wind generators.
The object of the invention relates to a blade intended for capturing the action of the wind in wind rotors which actuate a rotational movement for operating an electric generator or similar applications.
According to
The body (1) of the blade therefore determines a concavity (3) which progressively widens from the flattened part (2), such that said flattened part (2) forms a base to fix the blade in the application assembly.
The blade thus formed is fixed by the flattened part (2) in a radial position on a support disc (4) to form, together with other blades fixed in the same support disc (4), a wind rotor (5) intended for rotating a shaft (6) and through it to actuate the operation of an electric generator (7), for which the concave configuration of the blades is very effective since when the wind impacts the concavity (3) of the blades the latter convert the wind force into a rotating force of the wind rotor (5) with great efficiency.
In the application arrangement each wind rotor (5) can be formed with three or more blades, the blades being arranged in a radial position and distributed uniformly with an angular separation between them on the support disc (4); whereas one or more wind rotors (5) can be incorporated on the shaft (6) to be operated.
In those conditions, an assembly of two wind rotors (5) can for example, as depicted in
In another form of application, as depicted in
As in
The mentioned arrangements are application assembly examples of the proposed concave blade, without these examples being limiting, since the blade object of the invention can be arranged in any other arrangement of wind rotors (5) incorporated on a shaft (6) which, directly or through a transmission, is coupled to an electric generator (7) to produce electric power.
With the mentioned configuration, the blade object of the invention can be made of a flexible material such that, as depicted in
As depicted in
This embodiment of the blade creates the same effect as the blade made of a flexible material, i.e., when the wind impacts from the front it causes the concavity (3) to open, whereas when the wind impacts from the rear the set of plates (16) closes.
For the correct operation in that blade opening and closing operation depending on the incidence of the wind from the front or rear, it is provided that the plates (16) are associated with a synchronism ratio with respect to one another in the rotating assembly, for example by means of a gear between pinions (not depicted) integral thereto, or any another form of synchronism capable of making said plates (16) rotate at the same time in the blade opening and closing movements.
This embodiment further allows applying the blade in rotors operated by the movement of water, such as waves or currents, in the same operating conditions as with rotors operated by the wind.
Number | Date | Country | Kind |
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P200902248 | Nov 2009 | ES | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/ES2010/000479 | 11/26/2010 | WO | 00 | 5/22/2012 |