1. Field of Invention
The present invention relates to a wind turbine generating system, and more particularly, relates to a kind of high efficiency wind turbine generating system that is capable of maximally utilizing wind power from all directions and converting wind energy trapped by the wind turbine into electricity in an environmental manner.
2. Description of Related Arts
Electricity is traditionally generated through the burning of fossil fuel. The burning of such fuel releases greenhouse gases into the atmosphere that contributes to the global climate change and affects our environment. While generating electricity by wind energy (a kind of renewable energy) can avoid the above problem and offer a proven alternative to the burning of fossil fuel. In addition, as compared with nuclear, hydraulic, thermal power generating system, the wind turbine generating system is very economical in terms of the construction cost and occupied space.
Wind energy is rich and never to an end in the world. In theory, converting 1% of the wind energy into electricity can meet the energy requirements of all people in the world. However, there is no omni-directional wind turbine disclosed within the art for maximally catching wind power from all directions. In other words, a conventional wind turbine generator is in extreme low efficiency.
Commonly, a wind turbine is provided onto a windmill, which is applied as a synchronous generator and power is generated as the windmill is rotated by wind energy. Unfortunately, when the wind blows against such conventional windmill, the blades of the windmill would have caught only less than 30% of the wind energy□while the remaining 70% of the wind energy would escape from the gaps between blades of the windmill. What makes things worse is that the wind trapped by the blades would not always exert forces on the blades in single direction. Most of the time, the caught wind energy would generate turbulent impact on the blades. In case of two opposite forces push against with each other, the wind energy would be offset on the blades. Therefore, only a small portion of the caught wind energy would be used for electricity generation. Therefore, low efficiency is one of fatal drawbacks of a conventional wind turbine system.
In order to overcome the above problem, considerable efforts have been devoted for improving the conventional wind turbine unit. It is witnessed that main shaft of the windmill had been raised, the blades of the windmill have been enlarged to catch more wind, and the power of the generator have been increased. However, such methods only resulted to expensive and bulky windmills.
Theoretically, when wind speed reaches 14 m/s, the wind turbine would be substantially energized to generate electricity. However, higher wind speed would also increase the risk of the windmill. To prevent the windmill from being collapsed by strong wind, most of the windmill blades had been wrapped around, or the wind turbines had been equipped with side windings. Or even conservatively, the size of the blades had been significantly reduced. What is worse, to protect wild birds or the like, some countries or regions merely prohibit using conventional windmills in certain season.
Therefore, a new wind turbine system, which is high efficient, energy saving, capable of maximally utilizing wind energy, and saving wild birds would be definitely welcome within the art.
A primary object of the invention is to provide a wind turbine system, which is capable of maximally trapping wind power, and efficiently converting trapped wind energy into electricity in an environmental manner.
Another object of the invention is to provide a wind turbine system, which is safe in structure for not only withstanding strong wind, but also for generating electricity with high efficiency.
Another object of the present invention is to provide a wind turbine system, which comprises an omni-directional wind-catching unit for optimally trapping wind power from all directions, and meanwhile guiding trapped wind directly onto the wind turbine so as to smooth out the airflow on the turbine. In other words, no matter the wind blow from which direction, the wind-catching unit of the present invention would effectively catch the wind and convert the wind into electricity.
Another object of the present invention is to provide a wind turbine system, which inherently possesses all features of conventional wind turbines but eliminates unnecessary supplemental equipments of conventional wind turbines, such as side windings and overall wrappings.
Another object of the present invention is to provide a wind turbine system, which is covered by a protective net for protecting wild birds so as to maintain Ecosystem Balance, whereas such protective net would not affect the normal function of the wind turbine.
Another object of the present invention is to provide a wind turbine system, wherein such wind turbine system is arranged in series to generate electricity without occupying extra spaces and complicated installation procedures.
Another object of the present invention is to provide a wind turbine system, wherein no complicated equipments, parts or expensive labor would be required to achieve the above mentioned objects.
Accordingly, in order to accomplish the above objects, the present invention provides a wind turbine generating system, which comprises:
an upright shaft;
a wind turbine generator having a generator body mounted onto the upright shaft, and a plurality of turbine blades radially expanded from the generator body, wherein the plurality of turbine blades are driven to rotate with respect to the generator body to generate electricity; and
a wind-catching unit mounted onto the upright shaft for sheltering the wind turbine, wherein the wind-catching unit comprises a plurality of wind suction channels completely covering four sides and arranged in a side by side manner, wherein each of the wind suction channels has a wind inlet for sucking wind from outside, a wind outlet towards the turbine blades of the wind turbine, and a gradually reduced cavity communicating the wind inlet and wind outlet so as to generate a turbulent pressure between the wind inlet and wind outlet in such a manner that when wind from a direction is caught by respective wind suction channel, the caught wind will be compressed through the gradually reduced cavity so as to effectively blow out from the wind outlet to rotate the generator body with respect to the shaft to generate electricity.
Each of the wind suction channels is horn shaped with an eccentric angle so as to enable each of the wind outlets is longitudinally provided adjacent to the wind generator blades, and the wind inlet is outwardly and radially extended from the wind outlet with an eccentric angle.
The wind turbine generating system comprises a bird-preventing helmet for protecting birds from being sucked into the wind inlet of the wind-catching unit, and a storage battery electrically connected with the wind turbine generator for storing electricity.
In addition, a plurality of the wind turbine systems can be combined in a vertical group manner or in a horizontal group manner to generate electricity without occupying extra spaces and complicated installation procedures.
Referring to
Like conventional wind turbines, whenever the airflow is impacting onto the turbine blades 22, the turbine blades 22 would be driven into rotation with respect to the upright shaft 10 for electricity generation.
Referring to
According to the preferred embodiment of the present invention, the wind-catching unit 30 is provided for maximally catching wind from all directions. The wind-catching unit 30 comprises four wind suction channels 32 respectively oriented towards four directions, i.e. east, south, west, and north direction, wherein each of the wind suction channels is horn shaped with an eccentric angle so as to enable each of the wind outlets 322 to be longitudinally provided adjacent to the wind generator blades 22, and the wind inlet 321 is outwardly and radially extended from the wind outlet 322 with an eccentric angle. As a result, when wind is blow out through the gradually reduced wind suction channel 32, a compressed wind pressure will impact onto the circumferential blade edges area of the generator body 21 instead of the central portion of the generator body 21. The wind turbine generator 20 will be effectively driven to rotate.
Therefore, no matter the wind blows from east, west, north, south, or any other directions within 360°, such as from east or south direction, at least one wind suction channel would catch the wind to certain extent. After the caught wind flowing along the eccentric-angled and gradually reduced suction channel 32, the wind blow out from the wind outlet 322 would be compressed into strengthened wind, which is twice the power. The wind-catching unit 30 of the present invention not only increases the wind speed V, but also increases the wind blow area A and the air density ρ. According to the follow function:
W=½ρV3A
It is clearly understood that if one of the wind blow area, air density, and wind speed is increased, the wind energy will be increased as well. That is, as long as the wind speed is twice times it was, the power of the wind turbine unit will be increased to a four-fold extent.
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It is noted that the catcher head 33 is made of enhanced nylon, fiber glass fastened around the wind suction channel 32 by a plurality of screws 300. Meanwhile, the wind turbine generator 20 is manufactured in compliance with the rated power, and has a generator tail 211.
In addition, an upper tie panel 213 and a bottom tie panel 215 made of steel or aluminum alloy are used to hold the wind turbine generator 20, and a plurality of rivet holes 214 formed on the wind-driven generator 20 for accommodating the rivets. The wind-driven generator 20 is fastened to the generator holder 60 by a plurality of set screws 210 made of steel or aluminum alloy inserted into the generator tail 211. The turbine blades 22 of the wind turbine generator 20 are made of plastic, stainless steels, or lighting carbon fiber. Moreover, there are connection components 220 provided to further fasten the generator 20 to the center of the generator holder 60 and the wind turbine unit further comprises a plurality of assembled bolts 26 made of high intensity steel or stainless steel adapted for joining with another wind turbine unit.
Because of the eccentric guiding structure of the wind suction channel 32, the caught wind can exerts forces on a given part of the turbine blades 22, i.e. the outer edge of the turbine blades 22. In other words, the outer edge of such turbine blades 22 would be under high pressure of wind power. On the other hand, the rest part of the turbine blades 22 can avoid suffering a force exerted by the caught wind. Therefore, no opposite forces would be exerted onto the turbine blades 22 at the same time. The turbine blades 22 would only rotate in either counterclockwise or clockwise manner. For example, the wind blows from the direction of A, after passing through the wind inlet 321, the wind blows into the wind-driven generator 20 through the wind suction channel 32, at the very moment the turbine blades 22 will be driven to rotate to produce electrical energy. If the wind comes from a diagonal direction between D and C, after driving the turbine blades 22, the wind is released outside from the wind suction channel 32 in A and B directions, at that time, the air density and wind speed at the wind outlet 322 are greatly increased.
For example, the natural wind has a speed of 3.5 m/s, the wind speed at the wind-suction channels 32 also will be 3.5 m/s, and the air density is only 50 W/m2. But if a wind-catching unit 30 is provided with the wind turbine unit, the natural wind after being caught by the wind inlet 321, flows along the reduced cavity 323 to the wind outlet 322, and finally reaches the turbine blades 22. Depending on these eccentric structures, the wind speed at wind-suction channels 32 becomes about two times what it was, while the air density is increased to 400 W/m2. Therefore, the output power of the wind turbine unit becomes about 9 times what it was.
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After the preferred embodiments are listed, one skilled in art should understand that any change or improvement without departure from the spirit and principle is still in the scope of the present invention.
Number | Date | Country | Kind |
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200610147422.7 | Dec 2006 | CN | national |
200710040799.7 | May 2007 | CN | national |