JP2012246824A - Linear power generator and method for non-polluting power generation utilizing inertial kinetic energy - Google Patents

Linear power generator and method for non-polluting power generation utilizing inertial kinetic energy Download PDF

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JP2012246824A
JP2012246824A JP2011118765A JP2011118765A JP2012246824A JP 2012246824 A JP2012246824 A JP 2012246824A JP 2011118765 A JP2011118765 A JP 2011118765A JP 2011118765 A JP2011118765 A JP 2011118765A JP 2012246824 A JP2012246824 A JP 2012246824A
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power generation
power
pendulum
generator
linear
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Akimori Taniguchi
口 昭 守 谷
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Abstract

PROBLEM TO BE SOLVED: To provide power generated without pollution by utilizing an inertial motion phenomenon existing around ourselves.SOLUTION: An inertial motion phenomenon of a pendulum is utilized; this moving action as reciprocating motion is converted into moving energy of a sliding linear power generation element; and electromotive force generated in a surrounding coil is collected to power generation. Further, inertial motion of the pendulum is converted into inverted rotary motion, and an electric generation phenomenon due to reciprocating motion of a power generation element of an inverted linear power generator is utilized and collected to generate power.

Description

本発明はリニアー発電機と慣性運動エネルギーを活用する無公害発電方法に関するものである。   The present invention relates to a pollution-free power generation method using a linear generator and inertial kinetic energy.

従来の発電は水力、火力、原子力、風力、地熱等各種有るが、いずれも回転運動による発電方式で僅かに近年、太陽光発電が登場したか、夜間発電は不可能である。   There are various types of conventional power generation such as hydropower, thermal power, nuclear power, wind power, geothermal, etc., all of which are power generation systems based on rotational motion, and solar power generation has recently appeared or nighttime power generation is impossible.

水力発電は大型ダムを構築する場合、莫大な土木工事が必要であり、水没地区の補償等も生じ、完成までの期間が長期に及ぶ。   Hydropower generation requires a huge amount of civil engineering work when constructing a large dam, and compensation for submerged areas occurs, resulting in a long period of time for completion.

火力発電は化石燃料を燃焼するため二酸化炭素の排出を免れない。石炭、油田、天然ガスのどれも無限ではなく、いずれ枯渇する事は明確で有る。   Thermal power generation burns fossil fuels, so it is inevitable to emit carbon dioxide. Coal, oil fields, and natural gas are all infinite and will eventually be exhausted.

バイオマス発電は火力発電の―種であるが、バイオ燃料も森林破壊や食料、飼料等との競合になり、世界的に考慮すれば人類や家畜、その他の動物、植物に多大の負担を与る。   Biomass power generation is a seed of thermal power generation, but biofuels also compete with forest destruction, food, feed, etc., and if it is considered globally, it places a great burden on humans, livestock, other animals and plants .

原子力発電は燃料ウランはプルトニュウムに変換され、再利用可能との事であるそうだが地震、津波等の想定外の天災により大事故が発生すれば、制御不能となり放射能が広範囲に長期間にわたり諸々の大被害を及ぼす。   In nuclear power generation, fuel uranium is converted into plutonium, and it can be reused, but if a major accident occurs due to an unexpected natural disaster such as an earthquake or tsunami, it will become uncontrollable and the radioactivity will be varied over a long period of time. Cause serious damage.

風力発電は風力が一定せず安定発電が不可能であり又、大型風車の近隣では低周波障害等が発生する場合がある。また大型になると落雷が多くなると伝え聞く。   Wind power generation is not possible because the wind power is not constant and stable power generation is not possible, and low-frequency interference may occur in the vicinity of a large windmill. In addition, we hear that lightning will increase as the size increases.

海上風力発電は海中建柱方式と、台船または浮揚台型に分別されるが、我国ではいずれ
も漁業権、航路権等により最適風況地点での設置は困難であり、余り発展展開が困難です
Offshore wind power generation is divided into submersible pillars and trolleys or floats. However, in Japan, it is difficult to install at optimal wind conditions due to fishery rights, route rights, etc., and development development is difficult. is

地熱発電は最適地の殆どが国立公園や温泉地等に抵触し容易に適地を獲得する事が困難で有り。主として東北と九州に設されている様で有るか、あまり発展が見込み薄い感じ。   In geothermal power generation, most of the optimal areas conflict with national parks and hot springs, and it is difficult to acquire suitable areas easily. It seems that it is set up mainly in Tohoku and Kyushu, or the development is not expected.

太陽光発電は近年急速に拡張されつつあり、二酸化炭素の発生も無く、無公害との事で有るか、広大な面積を必要とし、夜間は発電不能で有る。   Photovoltaic power generation has been expanding rapidly in recent years, has no carbon dioxide, is pollution-free, requires a large area, and cannot generate electricity at night.

海水面の上下作用を活用した浮休式波力発電装畫としては、空気の圧縮を行い、これによリタービンーを回転させる方式のもの等が 研究中で、未だ実用化されていない。   As a floating-type wave power generator utilizing the up-and-down action of the sea surface, a method of compressing air and rotating a re-turbine by this is under research and has not been put into practical use.

潮流発電や波浪発電等も話題になるも、未だ実用化されて商用営業された施設は公開されていなく、研究段階の繰り返しの様である。   Although tidal power generation and wave power generation become a hot topic, facilities that have been put into practical use and commercialized are still not open to the public, and it seems that the research stage is repeated.

日本国内の各種発電設備は上記の各項目に記載した如く、いずれも諸々の問題点が有り完全なものでは無い。   As described in the above items, all the power generation facilities in Japan have various problems and are not complete.

各種火力発電はいずれも二酸化炭素を発生を皆無にするは不可能、全燃料は有限です。   All types of thermal power generation cannot produce carbon dioxide, and the total fuel is finite.

原子力発電は立地条件が大量の冷却水を必要とする為、海岸に設置せざるを得ない、又現存の原子力発電所は殆どが、地震断層帯の上、若しくはその近隣地上に立地して居る。
その為、地震、津波専の大規模な天然災害か発生する恐れは今後も皆無とは言えぬ。
Since nuclear power generation requires a large amount of cooling water, it must be installed on the coast, and most existing nuclear power plants are located on or near the seismic fault zone. .
For this reason, there is no fear that a large-scale natural disaster such as an earthquake or tsunami will occur.

太陽光発電以外の発電は全て、水力、火力、原子力、風力等により発生するエネルギーにより、回転式発電機を回転させて電力を得る方式である。   Power generation other than solar power generation is a system in which electric power is obtained by rotating a rotary generator with energy generated by hydropower, thermal power, nuclear power, wind power, and the like.

従来の回転型発電機は複雑な構造上、鉄芯にに巻付けたコイルが不可欠で、その鉄芯が鉄芯損の発生源となっている、又、此の鉄芯に磁力線が近接する事象が、コキングトルクの原因であり、負荷エネルギ−の増加要因である。   A conventional rotary generator has a complicated structure, and a coil wound around an iron core is indispensable. The iron core is a source of iron core loss, and magnetic lines of force are close to this iron core. An event is a cause of coking torque and an increase factor of load energy.

深考すれば、コイルに対し磁力線が交差移動する現象が起電力を生ぜしめるので、其の原理が保持可能ならば、鉄芯損を生じさせる鉄芯を排除した起電装置が可能となる。   If considered deeply, the phenomenon in which the lines of magnetic force cross and move with respect to the coil generates an electromotive force. Therefore, if the principle can be maintained, an electromotive device that eliminates the iron core that causes the iron core loss becomes possible.

上述の条件を検討すれば我国の発電資源は、自然の運動エネルギーを活用する事こそ唯―の方法である。   Considering the above conditions, the only way for our power generation resources is to use natural kinetic energy.

従来の各種回転式発電装置とは異なり、振子形状の発電台上に複数のスライド式リニアー発電機を積載し、この台板が前後に振子運動をする事により、台板上のリニアー発電機の発電子が往復運動する。この動作により周辺の発電コイルに起電現象が生ずる、此の電気を集約し、電力として活用する発電方法で、エネルギー原価は只のゼロ円でしかも無限のエネルギーです。   Unlike conventional rotary power generators, a plurality of sliding linear generators are mounted on a pendulum-shaped power generator, and this base plate performs a pendulum motion back and forth, so that the linear generator on the base plate The emitted electrons reciprocate. This operation generates an electromotive phenomenon in the surrounding power generation coils. This power generation method collects this electricity and uses it as electric power. The energy cost is zero yen, and the energy is infinite.

回転軸に複数列取付けられた反転式リニアー発電機が反転運動を繰返す事により、各発電素子が、往復運動する時、発電子コイルに起電現象が生ずる、此の電気を集約し電力として活用する発電方法。 When the reversing linear generators mounted in multiple rows on the rotating shaft repeat the reversing motion, when each power generating element reciprocates, an electromotive phenomenon occurs in the generator coil. This electricity is collected and used as power. Power generation method.

前述の発電装畫上部に太陽光発電シートを積載し、全体としての発電効率を高める様にした、合成発電装置。 A synthetic power generation device that has a photovoltaic power generation sheet mounted on the top of the above-mentioned power generation device to increase the overall power generation efficiency.

上記の発電方式は無限の可能性を有する画期的な新しい未来志向の発電方式であり、世界のエネルギー問題は素より、二酸化炭素による公害問題、あるいはバイオマス発電に関する自然破壊の防止、食料問嫌解決と、多方面にわたりー挙解決の糸口と成るものと思考します。 The above power generation method is a revolutionary new future-oriented power generation method with unlimited possibilities, and the world's energy problem is not only natural, but also pollution problems caused by carbon dioxide, prevention of natural destruction related to biomass power generation, food aversion I think that it will be a clue to the solution and the various solutions.

上記の各発電方式の発電装倫は大変単純な構造で"日何なる低開発地域でも、設置、保守、修理等が簡単に実施可能です。 Each of the above power generation systems has a very simple structure and can be easily installed, maintained and repaired in any low-developed area.

図1は振子型リニアー発電装置を示す正面図1 is a front view showing a pendulum type linear power generator. 図2は振子型リニアー発電装置を示す側面図2 is a side view showing a pendulum type linear power generator. 図3は反転型リニアー発電装置を示す側面図FIG. 3 is a side view showing an inverted linear power generator. 図4は発電系統図Figure 4 is a power system diagram

1.リニアー発電機
2.トランス
3.整流器
4.バッテリー
5.送電制御器
6.インバーター
7.交直変換システム(2〜6)
8.振り子型発電台板
9.振子型発電台板支持具
10.振子型発電台支持回転軸
11.振子回転軸
12.軸受ベアリング
13.ベアリング固定金具
14.振子型発電装置支持フレ−ム
15.反発スプリング
16.起動用ロ−プ
17.ロ−プバランス
18.ロ−プ滑車
19.反転型フライホイル取付フレ−ム
20.反転型フライホイル兼用プ−リドラム
21.伝導ベルト
22.反転型リニア−発電機取付円盤兼プ−リドラム
23.反転型リニア−発電機回転軸
24.反転型リニア−発電機据付台
25.反転型リニア−発電機振子
1. Linear generator
2. Trance
3. rectifier
4). battery
5. Power transmission controller
6). inverter
7). AC-DC conversion system (2-6)
8). Pendulum type power base plate
9. Pendulum power base plate support
10. 10. Pendulum power generator support rotating shaft Pendulum rotation axis 12. Bearing bearing 13. Bearing fixing bracket 14. 15. Pendulum power generator support frame Rebound spring 16. Start-up loop 17. Rope balance 18. Rope pulley 19. Inverted flywheel mounting frame 20. 21. Inverted flywheel combined pulley Conductive belt 22. Inverted linear generator generator disk and pulley drum 23. Inverted linear-generator rotating shaft 24. Inverted linear generator base 25. Inverted linear generator pendulum

Claims (3)

振子形状の発電台板にスライド式のリニアー発電機を複数積載し、この台板が前後に振子慣性運動をする事により、台板上のリニアー発電機の発電素子か、往復運動をする。
此の動作により、周囲の発電コイルに起電現象が生ずる。この電気を集約し電力として活用する発電方法。
A plurality of sliding linear generators are loaded on a pendulum-shaped power base plate, and the base plate performs a pendulum inertial movement back and forth, thereby reciprocating the power generator element of the linear generator on the base plate.
This operation causes an electromotive phenomenon in the surrounding power generation coil. A power generation method that aggregates this electricity and uses it as power.
構造体上部に取付けられ軸受けに支持される回転軸に、固定された円形リブが回転軸より吊下られた振子の往復慣性運動により、反回転する作用を活用し、基部に設置された
反転式リニア−発電機が半回転の往復運動をする。此の動作により反転式リニァ−発電機の発電素子も往復運動を行い起電現象が発生する、此の作用を活用集約し電力とする発電方法。
A reversing type installed at the base, utilizing the counter-rotating action of a pendulum with a fixed circular rib suspended from the rotating shaft on the rotating shaft attached to the top of the structure and supported by the bearing The linear generator reciprocates half a turn. By this operation, the power generation element of the reversible linear generator also reciprocates to generate an electromotive phenomenon.
上記1、2の発電装置上部に太陽光発電シートを積載し、全体としての発電効率を高める様にした、合成発電装置。
A synthetic power generation apparatus in which a photovoltaic power generation sheet is loaded on the above power generation apparatuses 1 and 2 so as to increase the overall power generation efficiency.
JP2011118765A 2011-05-27 2011-05-27 Linear power generator and method for non-polluting power generation utilizing inertial kinetic energy Withdrawn JP2012246824A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20150088619A (en) * 2014-01-24 2015-08-03 이병성 Generating system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20150088619A (en) * 2014-01-24 2015-08-03 이병성 Generating system
KR101630730B1 (en) 2014-01-24 2016-06-17 이병성 Generating system

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