JP3152090U - Ventilation fan wind power generator - Google Patents

Ventilation fan wind power generator Download PDF

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JP3152090U
JP3152090U JP2009002930U JP2009002930U JP3152090U JP 3152090 U JP3152090 U JP 3152090U JP 2009002930 U JP2009002930 U JP 2009002930U JP 2009002930 U JP2009002930 U JP 2009002930U JP 3152090 U JP3152090 U JP 3152090U
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wind power
ventilation fan
generator
outer cover
motor
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森巍 邱
森巍 邱
信弘 今村
信弘 今村
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上特技材有限公司
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

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Abstract

【課題】換気扇の風力発電装置の構造を提供する。【解決手段】換気扇1、風力発電ユニット2を含み、前記換気扇は外カバー10を含み、前記外カバーの一端は進気口100を有し、前記外カバーの別端は排風口109を有し、前記外カバーの内部にモーター11を設け、前記モーターは複数のスタンドで前記外カバー内に固定され、該モーターはコントロールユニットを電気接続し、該モーターに駆動軸を設け、該駆動軸に複数の換気フィン12を設置する。該換気扇の排風口に設ける風力発電ユニットには排風管20が含まれ、該排風管の一端は接続端であり、別端は空気排出口209であり、前記排風管内部に発電機を設け、該発電機は複数の固定台で前記排風管内に固定し、発電機に回転軸を具有し、該回転軸に複数の風動フィン22を設け、該風力発電ユニットは別に導線を設けて、電気設備と接続する。【選択図】図2A structure of a wind power generator for a ventilation fan is provided. An exhaust fan includes a wind power generation unit, the exhaust fan includes an outer cover, one end of the outer cover has an air inlet 100, and another end of the outer cover has an air exhaust port 109. A motor 11 is provided inside the outer cover, the motor is fixed in the outer cover by a plurality of stands, the motor electrically connects a control unit, a drive shaft is provided on the motor, and a plurality of motors are provided on the drive shaft. Ventilation fins 12 are installed. The wind power generation unit provided at the exhaust outlet of the ventilation fan includes an exhaust pipe 20, one end of the exhaust pipe is a connection end, and the other end is an air outlet 209, and a generator is provided inside the exhaust pipe. The generator is fixed in the exhaust pipe with a plurality of fixing bases, the generator has a rotating shaft, the rotating shaft is provided with a plurality of wind fins 22, and the wind power generation unit has a separate conductor. Provide and connect with electrical equipment. [Selection] Figure 2

Description

本考案は発電装置の構造に関し、特に換気扇の風を風力の源とする風力発電装置の構造に関する。   The present invention relates to a structure of a power generation apparatus, and more particularly to a structure of a wind power generation apparatus that uses a wind from a ventilation fan as a wind power source.

日増しにエネルギー危機と環境汚染が拡大しているため、世界各国で新しいエネルギーの代替案を模索研究している。今までの石油に代わって、太陽エネルギーや風力に水力など、尽きることのない、環境を汚染しない永劫不滅なエネルギーを作り出し、次世代の人々に供給することを期待している。   With the ever-increasing energy crisis and environmental pollution, the world is exploring new energy alternatives. Instead of oil, it is hoped that solar energy, wind power, hydropower, etc. will produce endless and immortal energy that will not pollute the environment and supply it to the next generation.

一般的な風力発電機は戸外に設置し、自然に発生する風が発電機にあるフィンを動かすことで風力が生まれ、クリーンで汚染のないエネルギーが作られる。しかし、従来の風力発電機は季節や気候に影響されたり、風向きが変わったり、風の強さが均一ではない状況が生じるため、風力発電機は風力の強さや風向きの変化により、頻繁に調整をする必要が生じ、風力が変わることで、電力も安定しない。 Common wind generators are installed outdoors, and naturally generated wind moves the fins in the generator to produce wind power, which produces clean and pollution-free energy. However, conventional wind power generators are affected by the season and climate, wind direction changes, and wind strength is not uniform, so wind generators are frequently adjusted due to changes in wind strength and wind direction. The power needs to be reduced and the power is not stable due to the change in wind power.

また、一般的な建築物や工場の建物は、室内の風通しを維持するため、或いは室内の熱気と汚れた空気を排出するために、屋上や工場建築物の外に換気設備を設置して作動することで、室内の空気を清々しいものにする。しかし、従来の換気設備が電力を消耗して発生する風力は、換気調整する機能のみしかなく、排出した風力は排出後戸外に流れ、適切な応用がなされていないのは資源の無駄となるため、上述の技術を更に改善する必要があった。   Also, general buildings and factory buildings are operated by installing ventilation equipment outside the rooftop or factory buildings to maintain indoor ventilation or to discharge indoor hot air and dirty air. By doing so, the air in the room is refreshed. However, the wind power generated by the conventional ventilation equipment consuming electric power has only the function of adjusting the ventilation, and the discharged wind power flows outside after the discharge, and the reason why it is not applied properly is a waste of resources. There was a need to further improve the above technique.

特開2004−144308号公報JP 2004-144308 A

前記従来技術の欠点を解決するため、本考案は環境に優しく、エネルギーを節約でき、換気扇が排出する風力を発電源とする風力発電装置を提供することを主な課題とする。   In order to solve the disadvantages of the prior art, it is a main object of the present invention to provide a wind power generator that is environmentally friendly, can save energy, and uses wind power discharged from a ventilation fan as a power generation source.

前記課題を解決するために、本考案は換気扇の風力発電装置の構造を提供する。換気扇の具体的な内容は、外カバー、外カバーの一端は進気口、別端は排風口、外カバーの内部にモーターを設け、該モーターは複数のスタンドで外カバー内に固定する。該モーターはコントロールユニットを電気接続し、該コントロールユニットでモーターの作動及び回転速をコントロールする。該モーターに駆動軸を設け、該駆動軸に複数の換気フィンを設置し、駆動軸は該フィンの回転を駆動することで、換気効果が生まれる。上述換気扇の排風口に複数設ける風力発電ユニットに含まれるのは、排風管、該排風管の一端は接続端、別端は空気排出口である。排風管内部に発電機を設け、該発電機は複数の固定台で上述排風管内に固定する。発電機に回転軸を具有し、該回転軸に複数の風動フィンを設け、該風動フィンは風力を受けると、回転軸を駆動することで、該回転をエネルギーに変える。風力発電ユニットは別に導線を設けることで、電力設備を電気接続することができる(例えば:変圧器或いは蓄電池のうちの一つ。)   In order to solve the above-mentioned problems, the present invention provides a structure of a wind turbine generator for a ventilation fan. The specific contents of the ventilation fan are as follows: an outer cover, one end of the outer cover is an air inlet, the other end is an air outlet, and a motor is provided inside the outer cover, and the motor is fixed in the outer cover by a plurality of stands. The motor electrically connects a control unit, and the control unit controls the operation and rotational speed of the motor. The motor is provided with a drive shaft, and a plurality of ventilation fins are installed on the drive shaft. The drive shaft drives the rotation of the fins, thereby producing a ventilation effect. A plurality of wind power generation units provided at the exhaust outlet of the ventilation fan include an exhaust pipe, one end of the exhaust pipe is a connection end, and the other end is an air exhaust outlet. A generator is provided inside the exhaust pipe, and the generator is fixed in the exhaust pipe with a plurality of fixing bases. The generator has a rotation shaft, and a plurality of wind fins are provided on the rotation shaft. When the wind fins receive wind force, the rotation shaft is driven to convert the rotation into energy. The wind power generation unit can be electrically connected to the power facility by providing a separate conductor (for example: one of a transformer or a storage battery).

本考案の設計により、具体的な効果は下記の通り:
一、 換気扇の風力は自然の風のように、気候によって変わることがなく、安定且つ持続性を具有する。
二、 現有の換気扇に被せるだけで、構造が軽く、組み立てしやすい。一般の発電装置のコストよりも低い上、スペースをさほど取らない。
三、 換気扇で排出する風力を風力発電に運用し、現有のエネルギーを十分に有効利用するため、エネルギー節約且つ環境保護となる。
The specific effects of the design of the present invention are as follows:
1. The wind power of a ventilation fan is stable and sustainable, not changing with the climate, like natural wind.
2. The structure is light and easy to assemble by simply covering the existing ventilation fan. It is lower than the cost of a general power generator and does not take up much space.
3. To save energy and protect the environment by using the wind power discharged from the ventilator for wind power generation and fully utilizing the existing energy.

本考案の立体分解外観図である。It is a three-dimensional exploded external view of the present invention. 本考案の断面構造図である。It is a sectional structure figure of the present invention. 本考案の断面動作状態図である。It is a section operation state figure of the present invention. 本考案の第2実施例の断面構造図である。FIG. 3 is a cross-sectional structure diagram of a second embodiment of the present invention.

本考案による換気扇の風力発電の構造を明確に示すために図に沿って詳細な説明を行う。   In order to clearly show the structure of the wind power generation of the ventilation fan according to the present invention, a detailed description will be given with reference to the drawings.

図1、図2に示すのは、本考案の換気扇風力発電装置であり、それに含まれるのは換気扇1、外カバー10、外カバーの該一端は進気口100、別端は排風口109、該外カバー10の内部にモーター11を設け、モーター11は複数のスタンドで外カバー10内に固定する。該モーター11はコントロールユニット19を電気接続し、該コントロールユニット19でモーター11の作動及び回転速をコントロールする。該モーター11に駆動軸110を設け、該駆動軸110に複数の換気フィン12を設置し、駆動軸110は該フィン12の回転を駆動することで、換気効果が生まれる。上述換気扇1の排風口109に複数設ける風力発電ユニット2に含まれるのは、排風管20、該排風管の一端は接続端200、別端は空気排出口209である。排風管20内部に発電機21を設け、該発電機21は複数の固定台201で上述排風管20内に固定する。発電機21に回転軸201を具有し、該回転軸201に複数の風動フィン22を設け、該風動フィン22は風力を受けると、回転軸201を駆動することで、該回転をエネルギーに変える。風力発電ユニット2は別に導線9を設け、導線9が変圧器(図に未掲載)或いは蓄電池(図に未掲載)と電気接続することができる。換気フィン12及び風動フィン22の材質はグラスファイバーとする。   FIG. 1 and FIG. 2 show a ventilation fan wind power generator of the present invention, which includes a ventilation fan 1, an outer cover 10, one end of the outer cover at the air inlet 100, and the other end at the air outlet 109, A motor 11 is provided inside the outer cover 10, and the motor 11 is fixed in the outer cover 10 by a plurality of stands. The motor 11 is electrically connected to a control unit 19, and the control unit 19 controls the operation and rotational speed of the motor 11. The motor 11 is provided with a drive shaft 110, and a plurality of ventilation fins 12 are installed on the drive shaft 110. The drive shaft 110 drives the rotation of the fins 12, thereby producing a ventilation effect. A plurality of wind power generation units 2 provided in the exhaust outlet 109 of the ventilation fan 1 includes an exhaust pipe 20, one end of the exhaust pipe is a connection end 200, and the other end is an air exhaust opening 209. A generator 21 is provided in the exhaust pipe 20, and the generator 21 is fixed in the exhaust pipe 20 by a plurality of fixing bases 201. The generator 21 has a rotating shaft 201, and the rotating shaft 201 is provided with a plurality of wind fins 22. When the wind fins 22 receive wind force, the rotating shaft 201 is driven to generate the rotation as energy. Change. The wind power generation unit 2 is provided with a separate conductor 9, and the conductor 9 can be electrically connected to a transformer (not shown in the figure) or a storage battery (not shown in the figure). The material of the ventilation fin 12 and the wind fin 22 is glass fiber.

図1及び図3に示すように、換気扇1はコントロールユニット19により起動した後、モーター11は回転を開始し、駆動軸110及び換気フィン12を連動して気流を撹乱して換気効果が生まれる。排出される風力は、排風口109より順に接続口200及び排風管20を通って風動フィン22に流れ、空気排出口209より排出する。風動フィン22が風力で回転を始めると、発電機21の回転軸210を連動するため、発電機21は回転をエネルギーに変換する。発電機21で生じる電気エネルギーは導線9を通じて電力設備(図に未掲載、例えば変圧器或いは蓄電池)に伝えてから、更に電力を電気製品(図に未掲載、電灯、扇風機など)に使用する。   As shown in FIGS. 1 and 3, after the ventilation fan 1 is activated by the control unit 19, the motor 11 starts to rotate, and the airflow is disturbed by interlocking the drive shaft 110 and the ventilation fins 12 to produce a ventilation effect. The discharged wind force sequentially flows from the exhaust port 109 through the connection port 200 and the exhaust tube 20 to the wind fin 22 and is discharged from the air exhaust port 209. When the wind fin 22 starts rotating with wind power, the generator 21 converts the rotation into energy because the rotating shaft 210 of the generator 21 is interlocked. The electric energy generated by the generator 21 is transmitted to the electric power equipment (not shown in the figure, for example, a transformer or a storage battery) through the conductor 9, and the electric power is further used for electric products (not shown in the figure, electric light, electric fan, etc.).

図4に示すように、本考案の風力発電ユニット2は直列回路の形状で換気扇1の排風口109に設けることで、換気扇1が排出した風力を十分に利用することができる。生じる電気エネルギーも単一の風力発電ユニット2よりも多くなる。   As shown in FIG. 4, the wind power generation unit 2 of the present invention is provided in the exhaust outlet 109 of the ventilation fan 1 in the form of a series circuit, so that the wind power discharged by the ventilation fan 1 can be fully utilized. The resulting electrical energy is also greater than that of a single wind power generation unit 2.

本考案の換気扇の風力発電装置は、現有の換気扇に被せる形状であるため、構造が軽く、組み立てしやすい上、一般の発電装置のコストよりも安く、スペースをさほど占用しない。また、換気扇の風力は自然の風力と異なって一定であるため、最良の安定性および持続性を具有する。人力で換気扇の風力或いは風向きを操作コントロールすることもできるなど、更に使いやすくなった。   Since the wind power generator of the ventilator of the present invention has a shape that covers the existing ventilator, the structure is light and easy to assemble, is cheaper than the cost of a general power generator, and does not occupy much space. In addition, the wind power of the ventilation fan is constant unlike the natural wind power, so it has the best stability and sustainability. It has become easier to use, with the ability to manually control the wind force or direction of the ventilation fan.

以上の実施例による本考案の詳細な説明は本考案の範囲を制限するものではない。本技術に熟知する者が、本考案の範囲内にて行う変更や調整を行っても、本考案の重要な意義は失われず、本考案の範囲に含まれる。 The detailed description of the present invention according to the above embodiments does not limit the scope of the present invention. Even if a person familiar with the present technology makes changes or adjustments within the scope of the present invention, the important significance of the present invention is not lost and is included in the scope of the present invention.

1. 換気扇
10 外カバー
19 コントロールユニット
100 進気口
101 スタンド
109 排風口
11モーター
110 駆動軸
12 換気フィン
2 風力発電ユニット
20 排風管
201 固定台
209 空気排出口
21 発電機
210 回転軸
22 風動フィン
9 導線
1. Ventilation fan
10 Outer cover
19 Control unit
100
101 stand
109 Ventilation outlet
11 motor
110 Drive shaft
12 Ventilation fins
2 Wind power generation unit
20 Exhaust pipe
201 fixed base
209 Air outlet
21 Generator
210 Rotation axis
22 Wind fins
9 conductor

Claims (4)

換気扇、風力発電ユニットを含み、
前記換気扇は外カバーを含み、前記外カバーの一端は進気口を有し、前記外カバーの別端は排風口を有し、
前記外カバーの内部にモーターを設け、前記モーターは複数のスタンドで前記外カバー内に固定され、該モーターはコントロールユニットを電気接続し、該モーターに駆動軸を設け、該駆動軸に複数の換気フィンを設置し、
該換気扇の排風口に設ける風力発電ユニットには排風管が含まれ、該排風管の一端は接続端であり、別端は空気排出口であり、
前記排風管内部に発電機を設け、該発電機は複数の固定台で前記排風管内に固定し、発電機に回転軸を具有し、該回転軸に複数の風動フィンを設け、該風力発電ユニットは別に導線を設け、導線が電気設備と電気接続することを特徴とする換気扇の風力発電装置。
Including ventilation fan, wind power generation unit,
The ventilation fan includes an outer cover, one end of the outer cover has an air inlet, and the other end of the outer cover has an air outlet.
A motor is provided inside the outer cover, the motor is fixed in the outer cover by a plurality of stands, the motor electrically connects a control unit, a drive shaft is provided on the motor, and a plurality of ventilations are provided on the drive shaft. Install fins,
The wind power generation unit provided at the exhaust outlet of the ventilation fan includes an exhaust pipe, one end of the exhaust pipe is a connection end, and the other end is an air exhaust outlet.
A generator is provided inside the exhaust pipe, the generator is fixed in the exhaust pipe with a plurality of fixing bases, the generator has a rotating shaft, a plurality of wind fins are provided on the rotating shaft, A wind power generator for a ventilation fan, wherein the wind power generation unit is provided with a separate conductor, and the conductor is electrically connected to the electrical equipment.
前記電力設備は変圧器であることを特徴とする請求項1記載の換気扇の風力発電装置。   2. The wind power generator for a ventilation fan according to claim 1, wherein the power facility is a transformer. 前記電力設備は蓄電池であることを特徴とする請求項1記載の換気扇の風力発電装置。   2. The wind power generator for a ventilation fan according to claim 1, wherein the power facility is a storage battery. 前記風力発電ユニットを直列回路の形状で上述の換気扇の排風口に設置することを特徴とする請求項1記載の換気扇の風力発電装置。   2. The wind power generator for a ventilation fan according to claim 1, wherein the wind power generation unit is installed in the exhaust port of the ventilation fan in the form of a series circuit.
JP2009002930U 2009-05-07 2009-05-07 Ventilation fan wind power generator Expired - Fee Related JP3152090U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011038483A (en) * 2009-08-13 2011-02-24 Zhengci Huang Structure of wind power generator generating electricity by using artificial wind power
KR101252662B1 (en) * 2011-04-14 2013-04-09 최선윤 Passivity control Wind-power Generation Device
JP2016050491A (en) * 2014-08-29 2016-04-11 株式会社鶴見製作所 Water flow generating device having power generating function and water flow generating system having power generating function
JP2019183750A (en) * 2018-04-11 2019-10-24 株式会社フナボリ Wind generator system for exhaust fan

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011038483A (en) * 2009-08-13 2011-02-24 Zhengci Huang Structure of wind power generator generating electricity by using artificial wind power
KR101252662B1 (en) * 2011-04-14 2013-04-09 최선윤 Passivity control Wind-power Generation Device
JP2016050491A (en) * 2014-08-29 2016-04-11 株式会社鶴見製作所 Water flow generating device having power generating function and water flow generating system having power generating function
JP2019183750A (en) * 2018-04-11 2019-10-24 株式会社フナボリ Wind generator system for exhaust fan

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