The present invention is a rotatory aerogenerator, especially relates to an aerogenerator utilizing the flapping and folding activities of the windward blade to drive the axial rod to rotate rapidly. It operates more efficiently and achieves the applying effects of weight reducing, cost saving, and easy maintenance.
Among the existing aerogenerator, there is a “Aerogenerator” with the Republic of China Patent No. M540187U, which has the effect of reducing weight, improving efficiency, saving cost, and being easy to maintain.
However, the blade of the aerogenerator is a horizontal design, which results in a huge volume of the aerogenerator. It is not easy to use multiple aerogenerators to generate electricity power in serial or in parallel.
In view of this, the inventor of the present invention has devoted to researching and designing the system to provide an aerogenerator which similarly use the flapping and folding activities of the windward blade to drive the axial rod to rotate rapidly. But, in more compact size to achieve the effect of saving space, that is the inventive motivation of the present invention.
The main purpose of the present invention is to provide an aerogenerator that can be conveniently used in serial or in parallel for the user, and its volume is more compact to achieve the effect of saving space.
To achieve above purpose, the present invention is a rotatory aerogenerator, which comprises: an axial rod; at least one first windward blade circularly set at one outside end of the axial rod; wherein the windward blade is equally arranged radially; at least one blade assembly; wherein each blade assembly component comprises: a first rod piece, a second windward blade and a second rod piece; wherein one side of the windward blade is connected with the first rod piece and the other side of the second windward blade is connected with the second rod piece; wherein the first windward blade is pivotally connected with the first rod piece and the second rod piece for the flapping and folding activities of the second windward blade; and a supporting frame which top end is axially connected with the axial rod, so that the axial rod can rotate horizontally in the supporting frame.
In this way, the wind power is received more efficiently. And, the rotatory aerogenerator of the present invention is an upright design, so that it can be conveniently used in serial or in parallel and the user can use it in parallel by utilizing the same axial rod to achieve the effects of saving space and saving cost.
The rotatory aerogenerator of the present invention as described above, one end of the axial rod is connected with a brake controller for providing the control to stop the rotation of the axial rod. And, the other end of the axial rod is connected with a power output unit. When the axial rod rotates, the power output unit is used to provide the power energy or the power for electricity generation.
The rotatory aerogenerator of the present invention as described above, wherein the material of the second windward blade is selected from anyone of the canvas, plastic and metal material.
The following descriptions are exemplary embodiments only, and are not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following detailed description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described without departing from the scope of the invention as set forth in the appended claims.
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In this way, the wind power is received more efficiently. And, the rotatory aerogenerator of the present invention is an upright design, so that the user can place it side by side or utilizing the axial rod 10 to stack the rotatory aerogenerator of the present invention up and down. This means that the upright design of the rotatory aerogenerator of the present invention can be convenient for the user to use by the serial or parallel way, so as to achieve the effects of saving space and saving cost.
As described above, one end of the axial rod 10 is connected with a brake controller 101 for providing the control to stop the rotation of the axial rod 10. The other end of the axial rod 10 is connected with a power output unit 102. When the axial rod 10 rotates, the power output unit 102 is used to provide the power energy. Therefore, the rotatory aerogenerator of the present invention can achieve the effect of electricity generation by outputting the rotation power of the axial rod 10 through the power output unit 102.
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