1. Field of the Invention
The present invention relates to a wind-power generating device, and in particular to a wind-power generating device with automatic adjustment to wind direction.
2. Description of Prior Art
With the rise of the concept of environmental protection, more attention has been paid to the technologies of generating electricity from natural resources. Thus, many countries aim to develop the technologies of generating electricity from the wind power.
Conventionally, a wind-power generating device includes a main body, a wind turbine, a post and a generator. The post is usually fixed on the ground, but it is not limited thereto. The post may be fixed to a roof of a house or a car. The top of the post is connected to the bottom of the main body. The generator is usually received inside the main body and provided with a spindle. The wind turbine is located in front of the main body and pivotally connected to the spindle. When the wind turbine is blown by wind to rotate, the rotation of the wind turbine drives the spindle to rotate accordingly, whereby the generator can generate electricity. This device further includes a power storage means such as a battery for storing the electricity generated by the generator.
Since the wind direction is changeable, the main body has to be pivotally connected to the post to make the main body to be rotatable with respect to the post. The rear of the main body has to be connected to a rudder. With this arrangement, the wind-power generating device can continuously generate electricity with automatic adjustment to wind direction.
However, in practice, the conventional wind-power generating device still has some drawbacks. The rudder located in back of the main body is usually connected to the main body by welding, which requires more material cost and production cost. Further, the structural strength of the welded portion between the rudder and the main body is insufficient.
Therefore, the present Inventor devotes himself to solve the above-mentioned problem.
The present invention is to provide a wind-power generating device with automatic adjustment to wind direction. With an outer curved surface being blown by wind, a wind-guiding shroud can rotate with automatic adjustment to the wind direction by the rotatable section. With this arrangement, the wind-power generating device can be automatically adjusted to the wind direction without consuming electricity in rotating the wind-power generating device, thereby increasing the power-generating efficiency of the wind-power generating device.
The present invention is to provide a wind-power generating device with automatic adjustment to wind direction, which includes a post, a wind-guiding shroud, and a generator assembly. The post has a fixed section and a rotatable section pivotally connected an upper portion of the fixed section. The wind-guiding shroud is fixed to the rotatable section. The interior of the wind-guiding shroud is formed with an accommodating space, and the exterior thereof is formed with an outer curved surface gradually expanding toward its rearward. The generator assembly is fixed in the accommodating space. The outer curved surface is blown by wind, so that the wind-guiding shroud can rotate with automatic adjustment to the wind direction by the rotatable section.
The present invention is to provide a wind-power generating device with automatic adjustment to wind direction, which includes a post, a wind-guiding shroud, and a generator assembly. The post has a fixed section and a rotatable section pivotally connected an upper portion of the fixed section. The wind-guiding shroud is fixed to the rotatable section. The interior of the wind-guiding shroud is formed with an accommodating space, and the exterior thereof is formed with an inclined surface gradually expanding toward its rearward. The generator assembly is fixed in the accommodating space. The inclined surface is blown by wind, so that the wind-guiding shroud can rotate with automatic adjustment to the wind direction by the rotatable section.
In comparison with prior art, the outer curved surface of the wind-guiding shroud and the eccentric arrangement of the wind-guiding shroud with respect to the post allow the wind-power generating device of the present invention for automatic adjustment to wind direction without consuming electricity in rotating the wind-power generating device. Since the wind-power generating device having the wind-guiding shroud is configured with automatic adjustment to wind direction, it is unnecessary to mount a rudder on this device, thereby reducing material cost and production process. Further, the inner curved surface of the wind-guiding shroud is configured to have a converged front end and a diverged rear end, so that the wind blowing into the wind-guiding shroud can be accelerated to increase the power-generating efficiency of the generator. The wind-guiding shroud is constituted of a plurality of wind-guiding pieces, which facilitates the maintenance and assembly of the wind-guiding shroud.
The detailed description and technical contents of the present invention will be described in more detail with reference to preferred embodiments thereof shown in the accompanying drawings. However, it should be understood that the drawings are illustrative only, but not used to limit the scope of the present invention.
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The post 10 has a fixed section 11, a rotatable section 12 pivotally connected to an upper portion of the fixed section 11, and a supporting arm 13 connected to the rotatable section 12. The supporting arm 13 is substantially perpendicular to the rotatable section 12. In the present embodiment, the top of the post 10 is substantially formed into an inverted āLā shape.
The wind-guiding shroud 20 is fixed to the rotatable section 12 and the supporting arm 13. The interior of the wind-guiding shroud 20 is formed with an accommodating space 211. The exterior of the wind-guiding shroud 20 is formed with an outer curved surface 212 gradually expanding toward its rearward. More specifically, the wind-guiding shroud 20 is constituted of a plurality of wind-guiding pieces 21. In the present embodiment, the number of the wind-guiding pieces 21 is three, but it is not limited thereto. Further, the outer curved surface 212 may be replaced by an inclined surface gradually expanding toward its rearward.
The interior of the wind-guiding shroud 21 is formed with an inner curved surface 214. The front end of the inner curved surface 214 is formed into a converged section 2141, while the rear end thereof is formed into a diverged section 2142 extending rearwards from the converged section 2141. Further, the outer wall of the wind-guiding piece 21 is fixed with a plurality of reinforcing ribs 213 for increasing the structural strength.
The generator assembly 30 is fixed in the accommodating space 211. The generator assembly 30 comprises a main body 31, a wind turbine 32 and a plurality of fixing rods 33. The outer surface of the main body 31 is provided with a plurality of heat-dissipating pieces 311. The front end of the main body 31 is pivotally connected to a spindle 312. The wind turbine 32 comprises a nose cover 321 fixed to the spindle 312 and a plurality of blades 322 connected to the nose cover 321. Each of the fixing rods 33 is a hollow rod with its both ends connected to the wind-guiding piece 21 and the main body 31 respectively, thereby fixing the main body 31 in the center of the accommodating space 211. The main body 31 is further electrically connected to a plurality of leads 50 for transmitting the electricity generated by the generator assembly 30. The leads 50 are connected to the bottom of the main body 31 and penetrate one fixing rod 33 to be connected with the supporting arm 13 of the post 10.
The outer curved surface 212 is blown by wind, so that the wind-guiding shroud 20 can rotate with automatic adjustment to the wind direction.
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Although the present invention has been described with reference to the foregoing preferred embodiments, it will be understood that the invention is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of the present invention. Thus, all such variations and equivalent modifications are also embraced within the scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
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098210202 | Jun 2009 | TW | national |