专利摘要:
The invention (horizontal axis wind turbine) is intended to turn wind into a rotating motion. The rotating movement can if desired be converted by means of a generator or dynamo into electric current, drive a machine mechanically, or be used in another way. The invention is a wind turbine whose axis is placed horizontally, such that this axis is in the longitudinal direction of the wind. However, the rotor blades (blades) are mounted on their rotor or shaft in such a way that they are not perpendicular or at a certain angle to the wind direction, with the result that the wind pushes the rotor leaves away in a circular motion, but parallel to the wind direction the wind leaves the rotor blades, which are designed in such a way that they largely have an aircraft wing-like cross-section, using rotates lifting power in a circular motion. All rotor blades must be mounted on the rotor or shaft in such a way that the rotor blades convert the lift force perpendicular to the wind direction in the same direction to the rotational movement of the wind turbine. Because the rotor blades have an airplane wing-like shape, which in its simplest form has a convex and a flat or concave side, the rotor or shaft of the turbine always rotates in the same direction regardless of whether the wind comes from the front or behind, as long as the but in the longitudinal direction of the wind. The invention could also function in a flowing fluid.
公开号:NL1043062A
申请号:NL1043062
申请日:2018-10-31
公开日:2019-05-22
发明作者:Kömcü Tancel
申请人:Tancel Koemcue;
IPC主号:
专利说明:

Wind turbine
The invention (horizontal axis wind turbine) is intended to turn wind into a rotating motion.
The rotating movement can if desired be converted by means of a generator or dynamo into electric current, drive a machine mechanically, or be used in another way.
The invention is a wind turbine whose axis is placed horizontally, such that this axis is in the longitudinal direction of the wind.
However, the rotor blades (blades) are mounted on their rotor or shaft in such a way that they are not perpendicular or at a certain angle to the wind direction, with the result that the wind pushes the rotor leaves away in a circular motion, but parallel to the wind direction whereby the wind passing by means the rotor blades, which are designed in such a way that they largely have an airplane-like cross-sectional shape, by means of rotates lifting power in a circular motion.
All rotor blades must be mounted on the rotor or shaft in such a way that the rotor blades convert the lift force perpendicular to the wind direction in the same direction to the rotational movement of the wind turbine.
Because the rotor blades have an airplane wing-like shape, which in its simplest form has a convex and a flat or concave side, the rotor or shaft of the turbine always rotates in the same direction regardless of whether the wind comes from the front or behind, as long as but in the longitudinal direction of the wind.
If desired, the rotor blades can be adjusted in such a way that they are not parallel, but at a certain angle to the wind direction, so that the passing wind propels the rotor blades around, as happens with a conventional wind turbine.
Brief description of the drawing: (FIG. 1) a = Motor shaft b = Rotor blade c = Wind direction d = Wind turbine direction (lift)
权利要求:
Claims (8)
[1]
1. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly on the rotor, which are (more or less) perpendicular to this axis and also with their wing shape parallel to the wind passing by, and all with their convex side of the wing are arranged in such a way that all rotor blades cause the passing wind to turn in the same direction by means of a lift, the rotating movement can be converted into electrical energy by means of a dynamo .
[2]
2. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly on the rotor, which are (more or less) perpendicular to this axis and also with their wing shape parallel to the passing wind, and all with their convex side of the wing are arranged in such a way that all rotor blades cause the passing wind to turn in the same direction by means of lift, the rotating movement by means of a mechanical PTO shaft, string, chain, etc. can be used to drive a machine or device in a mechanical way.
[3]
3. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly to the rotor, which are (more or less) perpendicular to this axis and also parallel to their more convex aircraft wing shape with the flowing wind, and all with their convex side of the wing are arranged such that all rotor blades cause the passing wind to turn in the same direction by means of lift, the rotating force of the shaft or turbine is increased and the rotation speed reduced.
[4]
4. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly on the rotor, which are (more or less) perpendicular to this axis and also with their flatter aircraft wing shape parallel to the wind passing by, and all with their convex side of the wing are arranged such that all rotor blades cause the passing wind to turn in the same direction by means of lift, the rotating force of the shaft or turbine is reduced and the rotation speed increases.
[5]
5. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly to the rotor, which are (more or less) perpendicular to this axis and also with the aircraft wing shape parallel to the passing wind, and all with their convex side of the wing are arranged in such a way that all rotor blades cause the passing wind to turn in the same direction by means of a lift, the rotor blades turn in the same direction, or the wind from "forwards" or from "behind" (as long as the wind flows parallel to the axis).
[6]
6. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly on the rotor, which are (more or less) perpendicular to this axis and also with their wing shape parallel to the passing wind, and all with their convex side of the wing are arranged in such a way that all rotor blades cause the passing wind to turn in the same direction by means of lift, the air resistance of the rotor blades is lower than with conventionally shaped rotor blades, whereby there are fewer (annoying) air swirls around the wind turbine during rotation.
[7]
7. The wind turbine converts wind into a rotating movement, characterized in that the rotor blades mounted directly on the rotor, which are (more or less) perpendicular to this axis and also with their wing shape parallel to the passing wind, and all with their convex side of the wing are arranged in such a way that all rotor blades cause the passing wind to turn in the same direction by means of a lift, the lower wind resistance of the rotor blades makes the wind turbine produce less ambient noise and vibrations compared to conventional wind turbines.
[8]
8. The wind turbine converts flowing liquids into a rotating movement, characterized in that the rotor blades mounted directly to the rotor, which blades are (more or less) perpendicular to the side from this axis and also parallel to their aircraft wing shape the liquid flowing along are all arranged with their convex side of the wing in such a way that all rotor blades cause the passing liquid to turn in the same direction by means of a lift, the wind turbine (immersed in a liquid flowing past) also as a water turbine or liquid turbine can be used.
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同族专利:
公开号 | 公开日
NL1042620B1|2019-05-13|
NL1043062B1|2019-06-03|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

法律状态:
优先权:
申请号 | 申请日 | 专利标题
NL1042620A|NL1042620B1|2017-11-02|2017-11-02|Wind turbine|
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