JP2011247254A - Channelizing type non-directional vertical wind force device - Google Patents

Channelizing type non-directional vertical wind force device Download PDF

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JP2011247254A
JP2011247254A JP2011110325A JP2011110325A JP2011247254A JP 2011247254 A JP2011247254 A JP 2011247254A JP 2011110325 A JP2011110325 A JP 2011110325A JP 2011110325 A JP2011110325 A JP 2011110325A JP 2011247254 A JP2011247254 A JP 2011247254A
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Ming-Cong Fang
明聰 方
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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
    • Y02E10/728Onshore wind turbines
    • 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
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

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Abstract

PROBLEM TO BE SOLVED: To provide a channelizing type non-directional vertical wind force device capable of achieving excellent power generation effect.SOLUTION: In the vertical fan wind force device capable of enhancing wind collection and channelizing characteristic, upright frame pillars 11, 12, 13, 14 are installed above a wind force generator 1, a vertical arc-shaped rotary fan including a plurality of arc-shaped blades 15 is installed in the center of the upright frame pillars 11, 12, 13, 14, inwardly inclined arc-shaped channelizing plates 111, 121, 131, 141 are installed on one inner edge of the upright frame pillars 11, 12, 13, 14. Thus, the wind force from every direction is channelized in a single direction, a fan of the wind force operating device is fixed to enable the operation on the single direction, and the operational efficiency is thus enhanced. During the execution, wind collecting plates are provided on outer edges of the upright frame pillars 11, 12, 13, 14 to increase the intake wind volume so that the fan of the wind force operating device can obtain larger operational torque.

Description

本発明は導流式無風向性垂直風力装置に関し、特に風力発電機に使用する風力運転装置で、構造体をより強化し、風力エネルギーをより高い効率で風力発電機の機械エネルギーに転換することができ、風力発電機上方には直立フレーム柱を設置し、直立フレーム柱中央には垂直式弧状回転ブレードを設置し、各直立フレーム柱の内の一つの内縁上には内側へと傾斜した弧状導流板を設置し、各直立フレーム柱外縁上には集風板を増設し、風向の制限がなく、導風と集風の効果を備えた垂直ファンの風力装置で、これにより風力発電効果を高めることができる導流式無風向性垂直風力装置に関する。   The present invention relates to a convection-type non-winding vertical wind power device, and more particularly, a wind power driving device used for a wind power generator, which further strengthens a structure and converts wind energy into mechanical energy of a wind power generator with higher efficiency. An upright frame column is installed above the wind power generator, a vertical arc-shaped rotating blade is installed in the center of the upright frame column, and an arc shape inclined inward on one inner edge of each upright frame column A wind-flow device with a vertical fan that has a wind guide plate and an additional wind collector plate on the outer edge of each upright frame column, with no restrictions on the wind direction, and has the effect of wind guide and wind collection. The present invention relates to a wind-driven non-winding vertical wind power device that can increase the wind speed.

人類は森林の破壊を続け、エネルギーを過度に開発し、あまりにも多くの二酸化炭素を排出している。
そのため、地球は今正に深刻な温室効果に直面しており、北極の融冰等有史以来の危機が迫っている。
しかも、その状況は悪化の一途を辿っているため、いかにして地球を守っていくかは、世界各国の環境保護団体、或いは地球の生態に関心を寄せる人々にとって、議論の焦点である。
Mankind continues to destroy forests, overdevelop energy, and emit too much carbon dioxide.
As a result, the Earth is now facing a serious greenhouse effect, and the crisis since ancient history such as Arctic ablation is imminent.
Moreover, since the situation is getting worse, how to protect the earth is the focus of debate for environmental protection organizations around the world or those who are interested in the ecology of the earth.

石炭或いは石油化学製品に代わって、太陽光、風力、地熱或いは潮の満ち引きなどの天然のエネルギーを、経済/実用的なエネルギーに転化すれば、環境保護効果が最も高い代替エネルギーとなる。
しかし、太陽光、地熱及び潮の満ち引きのエネルギー転換に必要な装置及び設備の製造コストは非常に高く、構造は複雑で、メンテナンスが容易でない等の原因があるため、そのコストパフォーマンスは低く、よって今のところ幅広い応用には至っていない。
Instead of coal or petrochemical products, converting natural energy such as solar, wind, geothermal or tide to economic / practical energy would be the most environmentally friendly alternative energy.
However, the manufacturing cost of equipment and facilities necessary for energy conversion of sunlight, geothermal energy and tide is very high, the structure is complicated, and there are causes such as easy maintenance, so its cost performance is low, Therefore, it has not reached wide application so far.

そんな中、風力を電力エネルギーに転換する方式は、設備コストが比較的低く、構造が簡単で、メンテナンスも比較的容易であるため、各国で利用が広がっている。
しかし、風力発電には、その最大の問題、風が安定しないという欠点がある。
すなわち、大気の地表上或いは海面上での、気流の持続性、時速、乱気流、瞬間的強風等条件が、風力発電性能を支配する主要素である。
つまり、風速が遅過ぎれば、従来の風力発電機のファンを回すことはできず、反対に風速が速過ぎる、或いは強過ぎる際には、高く聳える風力発電設備には、倒壊の危険が及ぶ。
Meanwhile, the method of converting wind power into electric energy is widely used in various countries because the equipment cost is relatively low, the structure is simple, and the maintenance is relatively easy.
However, wind power generation has the biggest problem: the wind is not stable.
In other words, conditions such as airflow sustainability, hourly speed, turbulence, and instantaneous strong wind on the surface of the atmosphere or on the sea surface are the main factors governing wind power generation performance.
In other words, if the wind speed is too slow, the fan of the conventional wind power generator cannot be turned. On the contrary, if the wind speed is too fast or too strong, the wind power generation equipment that can be raised is at risk of collapse.

そのため、従来の風力発電機の受風ファンは、安全に対する考慮から、受風ファンの各ブレード幅を狭く、形状を扁平にしている。
しかし、このような幅が狭いブレードは、流動する風を効果的に大量に受取り、発電機が必要とする動力に転換することができない。
すなわち、従来の風力発電機の風力装置にはなお、非常に大きな改善の余地がある。
本発明は、従来の風力装置の上記した欠点に鑑みてなされたものである。
Therefore, the wind receiving fan of a conventional wind power generator has a narrow blade width and a flat shape for safety reasons.
However, such a narrow blade cannot effectively receive a large amount of flowing wind and convert it into the power required by the generator.
That is, there is still much room for improvement in the conventional wind power generator of the wind power generator.
The present invention has been made in view of the above-described drawbacks of conventional wind power devices.

本発明が解決しようとする課題は、従来の風力発電機の風力装置に存在する問題を克服することができる導流式無風向性垂直風力装置を提供することである。   The problem to be solved by the present invention is to provide a convection-type non-winding vertical wind turbine capable of overcoming the problems existing in wind turbines of conventional wind power generators.

上記課題を解決するため、本発明は下記の導流式無風向性垂直風力装置を提供する。
導流式無風向性垂直風力装置は、風力発電機上に設置する風力運転装置に大幅な改変を加え、風力発電機上方には、直立フレーム柱を設置し、
該直立フレーム柱中央には、垂直式弧状回転ブレードを設置し、
該各直立フレーム柱の内の一つの内縁上には、内側へと傾斜した弧状導流板を設置し、これにより良好な効果を発揮する風力装置を提供し、
実施時には、該各直立フレーム柱外縁上に、集風板を増設し、これにより風向の制限をなくし、集風と導流特性を拡大し、こうしてファンの運転と風力発電の性能をより向上させることができる。
In order to solve the above-described problems, the present invention provides the following convection-type non-winding vertical wind power device.
The convection-type non-winding vertical wind turbine is a significant modification to the wind power generator installed on the wind power generator, and an upright frame column is installed above the wind power generator.
In the center of the upright frame pillar, a vertical arcuate rotating blade is installed,
On one inner edge of each of the upright frame pillars, an arcuate flow guide plate inclined inward is provided, thereby providing a wind power device that exhibits a good effect,
At the time of implementation, a wind collecting plate is added on the outer edge of each upright frame column, thereby eliminating the restriction of the wind direction, expanding the wind collecting and air conduction characteristics, and thus further improving the operation of the fan and the wind power generation. be able to.

本発明の導流式無風向性垂直風力装置は、風向の制限をなくし、集風と導流特性を拡大することができ、こうしてファンの運転と風力発電の性能をより向上させることができる。   The convection-type non-winding vertical wind power device of the present invention can eliminate the restriction of the wind direction and expand the wind collecting and convection characteristics, and thus can further improve the performance of the fan and the wind power generation.

本発明の立体図である。It is a three-dimensional view of the present invention. 本発明上フレーム体の分解立体図である。It is a three-dimensional exploded view of the frame body of the present invention. 本発明の俯瞰図である。It is an overhead view of the present invention. 本発明に集風板を増設した実施例の立体図である。It is a three-dimensional view of the Example which added the air collecting plate to this invention. 本発明の上フレーム体を分解し、集風板を増設した実施例の立体図である。It is the three-dimensional view of the Example which decomposed | disassembled the upper frame body of this invention and expanded the air collecting plate. 本発明に集風板を増設した実施例の俯瞰図である。It is a bird's-eye view of the Example which increased the air collecting plate in this invention.

以下に図面を参照しながら本発明を実施するための最良の形態について詳細に説明する。   The best mode for carrying out the present invention will be described in detail below with reference to the drawings.

図1、2に示すように、本発明導流式無風向性垂直風力装置は、風力発電機1上に設置する風力装置からなる。   As shown in FIGS. 1 and 2, the convection-type non-winding vertical wind turbine according to the present invention includes a wind turbine installed on a wind power generator 1.

該風力装置は、該風力発電機1上方に、数個の直立フレーム柱11、12、13、14を設置する。   In the wind power device, several upright frame pillars 11, 12, 13, and 14 are installed above the wind power generator 1.

該数個の直立フレーム柱11、12、13、14中央は、該風力発電機1主軸位置に対応し、複数の弧状ブレードにより組成する垂直式弧状回転ブレード15を設置する。   The center of the several upright frame pillars 11, 12, 13, 14 corresponds to the position of the main axis of the wind power generator 1, and a vertical arcuate rotating blade 15 composed of a plurality of arcuate blades is installed.

該各直立フレーム柱11、12、13、14の内の一つの内縁上には、内側へと傾斜した弧状導流板111、121、131、141を設置し、該直立フレーム柱11、12、13、14上方には、上フレーム強化体16を固定する。   On one inner edge of each of the upright frame columns 11, 12, 13, 14, arc-shaped flow guide plates 111, 121, 131, 141 inclined inward are installed, and the upright frame columns 11, 12, The upper frame reinforcement body 16 is fixed above 13 and 14.

該上フレーム強化体16は、不通気性密閉式フレーム体、或いは通気性開孔式フレーム体である。   The upper frame reinforcing body 16 is a non-breathable hermetic frame body or a breathable perforated frame body.

図3に示すように、本発明風力装置は、風がどんな方向から吹いてきても、該弧状導流板111、121、131、141及び該垂直式弧状回転ブレード15の弧状面作用により、該弧状回転ブレード15を押し、同一方向へと回転させることができる。   As shown in FIG. 3, the wind power device of the present invention has an arcuate surface action of the arcuate flow guide plates 111, 121, 131, 141 and the vertical arcuate rotating blade 15, no matter what direction the wind blows. The arcuate rotating blade 15 can be pushed and rotated in the same direction.

こうして、該風力発電機1主軸の運転を駆動し、しかもその拡大した垂直式弧状回転ブレード15の受風面により、気流の大部分の運動エネルギーは受け止められて運用される。   Thus, the operation of the main shaft of the wind power generator 1 is driven, and most of the kinetic energy of the airflow is received and operated by the wind receiving surface of the enlarged vertical arc-shaped rotating blade 15.

図4〜6に示すように、本発明の実施時には、該各直立フレーム柱11、12、13、14外縁上に、直立式集風板112、122、132、142を増設することができ、これにより入風口付近の気流は、効果的に集められ、導入される。   As shown in FIGS. 4 to 6, when carrying out the present invention, upright air collecting plates 112, 122, 132, 142 can be added on the outer edges of the upright frame columns 11, 12, 13, 14, As a result, the airflow near the air inlet is effectively collected and introduced.

こうして、該垂直式弧状回転ブレード15への推動を拡大することができるため、その集風機能は、該垂直式弧状回転ブレード15の運転を増進し、風力発電性能を向上させることができる。   Thus, since the thrust to the vertical arcuate rotating blade 15 can be expanded, the wind collecting function can enhance the operation of the vertical arcuate rotating blade 15 and improve the wind power generation performance.

上記の本発明名称と内容は、本発明技術内容の説明に用いたのみで、本発明を限定するものではない。本発明の精神に基づく等価応用或いは部品(構造)の転換、置換、数量の増減はすべて、本発明の保護範囲に含むものとする。   The above-mentioned names and contents of the present invention are only used for explaining the technical contents of the present invention, and do not limit the present invention. All equivalent applications or parts (structures) conversion, replacement and increase / decrease in quantity based on the spirit of the present invention shall be included in the protection scope of the present invention.

本発明は特許の要件である新規性を備え、従来の同類製品に比べ十分な進歩を有し、実用性が高く、社会のニーズに合致しており、産業上の利用価値は非常に大きい。   The present invention has the novelty that is a requirement of patents, has sufficiently advanced as compared with conventional similar products, has high practicality, meets the needs of society, and has a great industrial utility value.

1 風力発電機
11、12、13、14 直立フレーム柱
15 垂直式弧状回転ブレード
111、121、131、141 弧状導流板
16 上フレーム強化体
112、122、132、142 直立式集風板
DESCRIPTION OF SYMBOLS 1 Wind generator 11, 12, 13, 14 Upright frame pillar 15 Vertical type arc-shaped rotary blade 111, 121, 131, 141 Arc-shaped flow guide plate 16 Upper frame reinforcement body 112, 122, 132, 142 Upright type air collecting plate

Claims (3)

導流式無風向性垂直風力装置は、風力発電機上に設置する風力装置からなり、
該風力装置上方には、数個の直立フレーム柱を設置し、
該数個の直立フレーム柱中央には、該風力発電機主軸位置に対応し、複数の弧状ブレードを含む垂直式弧状回転ブレードを設置し、
該各直立フレーム柱の内の一つの内縁上には、内側へと傾斜した弧状導流板を設置し、
該直立フレーム柱上方には、上フレーム強化体を固定したことを特徴とする導流式無風向性垂直風力装置。
The convection-type non-winding vertical wind turbine consists of a wind turbine installed on a wind power generator,
Above the wind turbine, install several upright frame pillars,
In the center of the several upright frame columns, a vertical arcuate rotating blade including a plurality of arcuate blades corresponding to the wind power generator main shaft position is installed,
On one inner edge of each upright frame pillar, an arcuate flow guide plate inclined inward is installed,
A convection type non-winding vertical wind power device characterized in that an upper frame reinforcing body is fixed above the upright frame pillar.
前記上フレーム強化体は、不通気性密閉式フレーム体、或いは通気性開孔式フレーム体であることを特徴とする請求項1に記載の導流式無風向性垂直風力装置。   The convection-type non-winding vertical wind power device according to claim 1, wherein the upper frame reinforcing body is a non-breathable hermetic frame body or a breathable perforated frame body. 前記各直立フレーム柱は、実施時には、その外縁上に、直立式集風板を増設することができ、
これにより、該垂直式弧状回転ブレードの運転を増進し、風力発電性能を向上させることができることを特徴とする請求項1に記載の導流式無風向性垂直風力装置。
Each of the upright frame pillars can be provided with an upright wind collecting plate on the outer edge at the time of implementation.
Accordingly, the operation of the vertical arcuate rotary blade can be enhanced, and the wind power generation performance can be improved.
JP2011110325A 2010-05-24 2011-05-17 Channelizing type non-directional vertical wind force device Pending JP2011247254A (en)

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TW099116469A TW201142142A (en) 2010-05-24 2010-05-24 Deflection-type wind direction-independent upright wind power device

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5024975B1 (en) * 2012-01-18 2012-09-12 勝 鈴木 Wind direction control windmill device
CN105157262A (en) * 2015-08-04 2015-12-16 上海电力学院 Device for generating heat through wind power directly
JP2017008858A (en) * 2015-06-24 2017-01-12 英一 高原 Wind power generator

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56111284U (en) * 1980-01-29 1981-08-28
JPS5718776U (en) * 1980-07-03 1982-01-30
JP2002130110A (en) * 2000-10-30 2002-05-09 Wasaburo Murai Vertical shaft type wind power generating device
JP2005201229A (en) * 2004-01-14 2005-07-28 Yukio Hirata Straightening type wind mill
JP2007224870A (en) * 2006-02-27 2007-09-06 Japan Aircraft Mfg Co Ltd Vertical shaft wind power generation device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS56111284U (en) * 1980-01-29 1981-08-28
JPS5718776U (en) * 1980-07-03 1982-01-30
JP2002130110A (en) * 2000-10-30 2002-05-09 Wasaburo Murai Vertical shaft type wind power generating device
JP2005201229A (en) * 2004-01-14 2005-07-28 Yukio Hirata Straightening type wind mill
JP2007224870A (en) * 2006-02-27 2007-09-06 Japan Aircraft Mfg Co Ltd Vertical shaft wind power generation device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5024975B1 (en) * 2012-01-18 2012-09-12 勝 鈴木 Wind direction control windmill device
JP2017008858A (en) * 2015-06-24 2017-01-12 英一 高原 Wind power generator
CN105157262A (en) * 2015-08-04 2015-12-16 上海电力学院 Device for generating heat through wind power directly

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BRPI1107459A2 (en) 2013-07-23

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