Wind generator blades and KITES
WWW.GEDAYC.COM
Dear Sir / Madam I am writing to introduce a new concept of wind turbines evolved from conventional models.
This is a new generation that has 60% more power than known models of 3 shaft.
It has a flat blade design with kites attached at their ends that increase significantly the area of scanning.
Its parts are:
A central axis of cone-shaped hole where they hosted the mechanisms of rotation of the blades from -45 º to 0 º and +45 º to capture more or less wind and optimize the rotation of the group. The system of rotation of the sails and kites mounted on a hydraulic and pneumatic system is taken silenblock eliminates vibrations and allows folding blades and comets conditions with strong gusts of wind which is achieved not suffer the group and removes the possibility of breakage and prolongs the life of the generator.
Some blades are blades as the helicopter flat throughout its length, ie are not like the screw propeller as conventional mills. The leading edge of the blade is much finer than the known helices with which the resistance to rotation is greatly eliminated.
Articulated arms with ball joints, on the back of the kite or the trailing edge and a pivot axis at the front of the kite or the leading edge, all located at the tip of the blades to hold the kite and giving them the possibility of hunting more or less wind depending on the orientation of them.
And kites with a specific design with a curved edge and a straight trailing edge, to capture all the wind as possible and to not touch the mast that holds the generator in the rotation. The materials should be used for both blades to the kites are made of glass and carbon fiber, balsa wood, Keble, epoxy, polyurethane and foam padding. The flexibility of the material of the kite enables the sides of the same in the trailing edge voltage yield to the kneecaps driven by the blades, so the kite also adopts a somewhat distorted in these ends of the trailing edge that help set the rotation.
IMPROVEMENTS OF THIS DESIGN
The size of the parts to assemble can be 1 / 3 smaller than current designs, but having the same surface and thus sweep the same power, it follows that we get to a size equal to a power greater than 60% 3 shaft design.
The lightness of the group is that the parties are much smaller and the ability to "fly" of comets that once their rotation exercise a lift of the whole car and will increase the speed gradually. So one thing affect the other and anger in direct proportion getting more speed and agility in the generator.
The cost of manufacturing, assembly, maintenance and transportation of the pieces of the new system are much lower Gedayc as parts are 1 / 3 smaller than current propeller also requires less installation effort and smaller cranes because everything is smaller . (In case of equal power generators to the existing 3-helix)
The visual impact is much smaller as the size is too.
The system design is Gedayc quieter as there is no end of propeller to cut the wind and generate more decibels.
The ability to fully abate the set from -45 º to 0 º and +45 º (minus 45 degrees, but zero degrees and 45 degrees) allows us to capture all the wind available, as well as leaving zero ability to raise the wind in storms or hurricane and the possibility to stop the set in a position to counter rotation to stop in case of breakage or emergency.
We have eliminated the problem of loss of lift at low speed because the blade has a very fine edge and help the kite in the rotation of the group.
To have a definitive model and thus know how materials behave and design we can not close to a specified number of blades and comets, that is, although the model presented is 4 blades and 4 comets, this number could vary depending on the measure Mill and energy you want to achieve, all giving priority design, lightness and strength of the assembly.
The possibility of putting a cable from the center axis of rotation to the midpoint of the leading edge of the kites is a solution if it poses a major design need, but do not think it necessary after the construction of optimized GEDAYC model.
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