PSP BLADES WITH DIHEDRAL ANGLES, COMPRISING A LONGITUDINAL DEPRESSION
20180045175 ยท 2018-02-15
Inventors
Cpc classification
F03D1/0633
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2250/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D7/0264
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2250/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
The invention relates to a novel rhomboidal wind turbine blade with a dihedral angle, as a supplement to another invention filed by the same applicant in 2013, said blade originally comprising four planar rhomboidal sides and a dihedral angle, and now including a longitudinal depression in the side forming the dihedral angle, from the center of the major axis of the blade, which traps more wind with a concave shape and directs same to the vertex of the angle, compressing the wind which rebounds from the vertex of the angle and powering the rotary movement with two sets of two blades per generator, as well as including an automatic safety system allowing the position of the blades to be changed in the event of high-speed winds by a computer system between a motor and a wind speed sensor, with the blades being coupled to the rotor with an angle that can be varied in response to high-speed winds.
Claims
1. PSP blades with dihedral angles with a longitudinal depression comprise: a longitudinal depression in the forming side of the dihedral angle of the rhomboidal blades, wherein said side to the major theoretical axis with an initial concave shape approximately equal to its minor axis or of thickness continuing with a planar shape until the dihedral angle vertex, depression collects greater wind pressure force directing it towards the vertex stopping the wind that bounces, and increasing the rotation speed of the set of blades, greater speed and power which increases the torsion force of the horizontal axis of the wind generator, which in turn increases its renewable power production; which likewise comprises ratios between the axis or rhomboidal diameters of the blades; procedure to immobilize the rotary movement of the blades in case wind speed is higher than its working range and connects the variable angle blades with the rotor system.
2. PSP blades with dihedral angles with longitudinal depression according to claim 1, wherein the proportions between thickness or minor axis of a blade with a dihedral angle and the width of the major axis along the whole length of the blade equal to of the half or 1/10.
3. PSP blades with dihedral angles with longitudinal depression according to claim 1, wherein comprises the automatic stopping of the rotational movement of the blades in high speed winds by the rotation of the blades at 90 from their working position by aligning their greater width with the wind due to the effect of digitalis anemometer, computer and gearbox on the market, that after the danger return the blades to 90 of the wind.
4. PSP blades with dihedral angles with longitudinal depression according to claim 1, wherein comprises the coupling or splice of the blades with the rotor system characterized by: a radial splice with the rotor capable of circular movement up to 90 from its working position in such a way that each blade change from its frontal position against the wind to capture its kinetic power to a parallel position to avoid being in cases of high speed winds that endanger the whole system or wind generator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS:
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DESCRIPTIVE MEMORY OF THE INVENTION
[0015] The new wind generator with PSP dihedral angle blades No. 2, whose only precedent has been mentioned in the state of art contains all the elements and basis of said invention in the patent application, which in the process of research with a prototype test has allowed us to perfect it by adding new properties and forms of design and construction of the blade with dihedral angles for the purpose of comparison attached is
[0016] The further aspect of the patent application is shown in
[0017] Personal laboratory tests with the installation of two sets of blades, one in the front section of the gondola and another in the rear section showed that: the rear set with blades having a frontal depression rotated faster than the front blades with equal planar sides in the original invention despite apparently receiving a directional impulse from kinetic power of weakened wind.
[0018] The ratio or relationship between the uniform geometry of the four-sided blade to the depth of the depression applied to said blade is equal to approximately of the thickness or dimension of the minor axis of the dihedral angle blade shown in
[0019]
[0020] As a wind generator must ensure its resistance to the destructive action of high-speed winds greater than its maximum wind speed range to work without risk of destruction. In the personal lab tests, it was proven to rotate both blades at 90 from its working position to align its greater side with said wind as shown in
[0021] The same is shown in
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[0023] Finally
[0024] Finally,