JPH0893628A - Elegant energy - Google Patents

Elegant energy

Info

Publication number
JPH0893628A
JPH0893628A JP5289698A JP28969893A JPH0893628A JP H0893628 A JPH0893628 A JP H0893628A JP 5289698 A JP5289698 A JP 5289698A JP 28969893 A JP28969893 A JP 28969893A JP H0893628 A JPH0893628 A JP H0893628A
Authority
JP
Japan
Prior art keywords
energy
injector
tank
compressed gas
working fluid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP5289698A
Other languages
Japanese (ja)
Inventor
Yukio Nishimura
幸男 西村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP5289698A priority Critical patent/JPH0893628A/en
Publication of JPH0893628A publication Critical patent/JPH0893628A/en
Pending legal-status Critical Current

Links

Classifications

    • 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

Abstract

PURPOSE: To obtain perpetual energy not causing pollution for the earth, which is a human dream. CONSTITUTION: This is a device in which a jet pump injector is installed on the tank of compressed and liquefied gas and a wind-mill is installed in the inhalation room of the injector and an inhalation pipe is removed and the injector is slightly deformed and huge energy holding the compressed gas is conveyed to the wind-mill and utilized to the other purpose after taking it out. In this device consisting of the compressed and liquefied gas, a tank, a deformed injector and the windmill, a generator, etc., are installed on the windmill and its energy is utilized to the other purpose. The injector is not operated when the pressure is not about 3kg/cm<2> or more.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】この装置は圧縮気体や圧縮液化気
体が保有する莫大なエネルギーを活用しジェットポンプ
インゼクタのジェット作用と排出機能を利用しインゼ
クタの吸水室に風車を取り付けた装置であり本来インゼ
クタの吸水管は不用でありしたがって給水も不用であり
水の代わりに風車にエネルギーを伝える永久装置である この装置のタンクの中の圧縮液化気体の圧力Pを10k
gr/cmとしてタンクの中で気化された圧縮気体1
の質量γaを12.9kgrとしてジェットポンプ
インゼクタのノズルから吹き出させ試算する時噴出す
る速さUaは このノズルの噴出口を5cmとする時1秒間に噴出さ
れる圧縮気体の量γa’は この5cmのノズルから1秒間噴出される時産み出さ
れる運動エネルギーkaは 気体は比重や液化される圧力によってそれぞれ異なるが
莫大なエネルギーを保有しているのである ではこの作動流体を再びタンクの中に排出させ戻すには
どれだけのエネルギーが必要か水圧を使って計算すると
圧力が同じ10kgr/cmの水の噴出する速さγw
同じ5cmのノズルから1秒間に噴出される水量γw
この5cmのノズルから1秒間噴出された時の運動エ
ネルギーkwは 2,190.5kgr重m/S以上の運動エネルギーに
登れば作動流体を再びタンクの中に排出し戻す事が出来
るたが実際には摩擦による損失や長期使用の摩耗による
損失が出て来るので ある9,690.3kgr重m/Sを再び作動流体をタ
ンクの である9,690.3kgr重m/Sを風車に伝えられ
莫大である
[Industrial application] This device is a device that uses the enormous energy of compressed gas and compressed liquefied gas to utilize the jet action and discharge function of the jet pump injector and installs a windmill in the water absorption chamber of the injector. The water pipe of the injector is unnecessary and therefore the water supply is also unnecessary, and it is a permanent device for transmitting energy to the wind turbine instead of water. The pressure P of the compressed liquefied gas in the tank of this device is 10k.
Compressed gas 1 vaporized in the tank as gr / cm 2
When the mass γa of m 3 is set to 12.9 kgr and jetted out from the nozzle of the jet pump injector, the jetting speed Ua is When the nozzle outlet of this nozzle is set to 5 cm 2 , the amount of compressed gas γa ′ jetted per second is The kinetic energy ka produced when ejected from this 5 cm 2 nozzle for 1 second is The gas has a huge amount of energy, which varies depending on the specific gravity and the pressure to be liquefied. So, how much energy is needed to discharge this working fluid back into the tank? Ejection speed γw of water with the same pressure of 10 kgr / cm 2
Is Water amount γw ejected from the same 5 cm 2 nozzle per second
Is The kinetic energy kw when ejected from this 5 cm 2 nozzle for 1 second is If the kinetic energy of 2,190.5 kgr heavy m / S or more is reached, the working fluid can be discharged back into the tank again, but in reality there are losses due to friction and wear due to long-term use. There is 9,690.3 kgr heavy m / S again with working fluid in the tank It is enormous that 9,690.3 kgr heavy m / S is transmitted to the wind turbine.

【0002】[0002]

【従来の技術】本来ジェットポンプ インゼクタは工業
用などのボイラーの給水ポンプとして広く利用されボイ
ラーで作られた蒸気の圧力を利用しインゼンクタのノズ
ルから押し出される速度によってジェット作用による圧
力の低い真空室を作り出し蒸気が膨張する莫大なエネル
ギーを産み出させこの蒸気の膨張する莫大なエネルギー
と速度で吸入水に速度を与えこの吸入水と作動流体が混
合流体となってボイラーの中に排出し水を給水する一見
不可とも思えるポンプである 化する圧力はそれぞれ異なり温度によっても異なるが此
様にジェットポンプと圧縮液化気体と風車を組み合せた
永久装置は他に例はない
2. Description of the Related Art Originally, a jet pump injector was widely used as a water supply pump for industrial boilers, etc., and the pressure of steam produced by the boiler was used to create a vacuum chamber with a low jet pressure due to the speed at which it was pushed out from the nozzle of the injector. Produces a huge amount of energy to expand the steam and gives a speed to the intake water with the huge energy and speed of the expansion of the steam, and the intake water and working fluid become a mixed fluid and are discharged into the boiler to supply water. It is a pump that seems to be impossible at first glance Although the pressure to be changed differs depending on the temperature, there is no other permanent device that combines a jet pump, compressed liquefied gas, and a wind turbine.

【0003】[0003]

【発明が解決しようとする課題】圧縮気体は圧縮気体の
体積×Xkgr/cm=であり圧縮液化気体では千数百
倍以上にも膨張し真空室に噴出される圧縮気体や圧縮液
化気体は莫大なエネルギーを産み出す インゼクタは蒸気や圧縮気体の温度にかかわりなくタン
クやボイラーのエネルギー以上に登れば作動流体を再び
タンクの中に排出し戻す事が出来るインゼクタは真空室
を作り蒸気圧や圧縮気体の保有するエネルギーはタンク
やボイラーの圧力の何倍にも登る莫大なエネルギーを引
き出す両方の機能を持っている
The compressed gas has a volume of the compressed gas × X kgr / cm =, and the compressed liquefied gas expands more than a thousand times or more and is ejected to the vacuum chamber. The injector that produces a large amount of energy can discharge the working fluid back into the tank again if it climbs above the energy of the tank or boiler regardless of the temperature of the steam or compressed gas.The injector creates a vacuum chamber and vapor pressure or compressed gas. The energy possessed by the tank has the function of extracting a huge amount of energy, which can reach many times the pressure of tanks and boilers.

【0004】[0004]

【課題を解決する手段】この莫大なエネルギーを保有す
る圧縮液化気体とインゼクタを組み合せこの莫大なエネ
ルギーを保有する圧縮気体のエネルギーを風車で取り出
し他目的に利用した
[Means for Solving the Problems] The compressed liquefied gas having a huge amount of energy and an injector are combined, and the energy of the compressed gas having a large amount of energy is taken out by a wind turbine and used for other purposes.

【0005】[0005]

【作用】この装置の試算では風車に伝えられる る莫大なエネルギーでありこの風車で発電をすると9
4,964.9W/Sにもなるこの発電効率を90%に
しても莫大である
[Operation] In the trial calculation of this device, it is transmitted to the windmill It is an enormous amount of energy that is generated by this windmill.
Even if this power generation efficiency of 4,964.9 W / S is 90%, it is enormous.

【0006】[0006]

【実施例】この発明は小さな圧縮液化気体のタンク1個
で家庭はおろか小さな工場の電力もまかなえる装置であ
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention is a device that can supply electric power not only for homes but also for small factories with one small compressed liquefied gas tank.

【0007】[0007]

【発明の効果】この装置は一切の消費エネルギーを使わ
ず地球に大変に優しいクリーンなエネルギーになる
EFFECT OF THE INVENTION This device does not use any energy consumption and becomes clean energy that is very kind to the earth.

【記号の説明】P=圧力 γa=圧縮気体の質量 γw
=水の質量 Ua=圧縮気体の噴出する速さ Uw=水
の噴出する速さ ka=圧縮気体が保有する運動エネル
ギー kw=水圧が保有する運動エネルギー
[Explanation of symbols] P = pressure γa = mass of compressed gas γw
= Mass of water Ua = Speed of ejecting compressed gas Uw = Speed of ejecting water ka = Kinetic energy held by compressed gas kw = Kinetic energy held by water pressure

─────────────────────────────────────────────────────
─────────────────────────────────────────────────── ───

【手続補正書】[Procedure amendment]

【提出日】平成6年1月19日[Submission date] January 19, 1994

【手続補正1】[Procedure Amendment 1]

【補正対象書類名】明細書[Document name to be amended] Statement

【補正対象項目名】0001[Correction target item name] 0001

【補正方法】変更[Correction method] Change

【補正内容】[Correction content]

【0001】[0001]

【産業上の利用分野】 この装置は ジェット ポンプ
インゼクタの ジェット作用と排出機能を活用して
圧縮液化気体や圧縮気体である作動流体が保有する莫大
なエネルギーの内の一部を取り出すため インゼクタの
真空室から逆止弁の間に羽根風車や渦巻風車を取り付け
た装置であり 作動流体に残された残りのエネルギーで
作動流体を再び元の容器の中に排出させ戻し循環する
ための装置である したがって 本来のインゼクタの吸
水管や吸水は不用であり、吸入水の代わりに風車にエネ
ルギーを伝えて 電力エネルギーなどのエネルギーとし
て取り出すための永久ポンプであり 永久装置である では この装置の タンクの中の圧縮液化気体や圧縮気
体の圧力Pを10kgr/cmとした時また この圧
縮気体1mの質量γaを12、9kgr/mとして
このインゼクタのノズルから吹き出させ オーバーフ
ローから大気中に放出した時 このノズルから噴出され
る速さUa m/sは でありこのノズルの噴出口を5cmとした時 1秒間
に噴出される圧縮気体の量γagr/sは γagr/s=Ua×γa×5=38、979、×
0、0129×5=2、514、gr/s=2、5k
gr/sである この5cmのノズルから1秒間噴出された時、圧縮気
体が産み出す運動エネルギーKakg重m/sに定義される 気体は比重や液化される圧力はそれぞれ
異なるが 圧縮される比率は皆な同じであり 莫大なエ
ネルギーを保有している では この作動流体を再び元のタンクの中に戻し循環さ
せるには どれだけのエネルギーが必要か 水圧を使っ
て計算すると水は1mの質量γwは1、000、kg
r/mであり この水を圧縮気体と同じ10kgr/
cmで大気中に噴出した時 水の噴出する速さUwm
/sは でありこの水の噴出口を5cmとする時 1秒間に大
気中に噴出される水量γwgr/sは γwgr/s=Uw×γw×5=4、427、×1×
5=22、135、gr/s=22、1kgr/s
である この1秒間に噴出された水の運動エネルギーKwkgr
重m/sに定義される 而して同じ圧力で 同じ広さ噴出口から
大気中に噴出された圧縮気体と水の運動エネルギーの比
になる このタンクを出た作動流体を 再び元のタンクの中に戻
し循環させるには この作動流体で 2、212、8k
gr重m/s以上の運動エネルギーを産み出し作動流
体に2、212、8kgr重m/s以上の運動エネル
ギーが残されて居れば 再びタンクの中に作動流体を戻
し循環させる事が出来るので 作動流体が産み出すエネ
ルギーの内1/2を風車に伝え 電力エネルギーなど他
目的に取り出し 残り1/2を作動流体に残し 作動流
体をタンクの中に戻すために使うと 作動流体に残され
る運動エネルギーは9、690、kgr重m/sにも
登る また タンクの中の圧縮気体を作動流体にして ノズル
から吹き出させ オーバーフローから大気中に放出した
時 その速度によって ノズル周辺に真空が形成され
大気圧より低い真空室が作られるため オーバーフロー
を閉じても このポンプは作動を続ける また この作動流体は タンクの中の圧縮液化気体が気
化される多量のエネルギーで、圧縮気体としてノズルか
ら押し出され その速度によってジェット作用を引き起
し真空が形成される その真空室で爆発にもにた膨張を
する この相乗作用によって作動流体の速度は超音速と
なり莫大な運動エネルギーを産み出すのである これは
伸縮性の激しい圧縮液化気体や圧縮気体や あるいは高
圧の蒸気などの気体だけが ジェット作用によって こ
の相乗作用が産み出されるのであるこの莫大なエネルギ
ーを産み出した作動流体をインゼクタの排出機能を活用
して元のタンクの中に戻し循環させた永久装置である
[Industrial application] This device utilizes the jet action and discharge function of the jet pump injector.
This is a device in which a vane wind turbine or a spiral wind turbine is installed between the check valve and the vacuum chamber of the injector to extract a part of the enormous amount of energy that the compressed liquefied gas or working fluid that is compressed gas has. This is a device for discharging the working fluid back into the original container and circulating it with the remaining energy that was generated.Therefore, the original water intake pipe and water intake of the injector are unnecessary, and the energy is transmitted to the wind turbine instead of the intake water. It is a permanent pump for taking out as energy such as electric power energy and is a permanent device. Then, when the pressure P of the compressed liquefied gas or compressed gas in the tank of this device is set to 10 kgr / cm 2 and the compressed gas of 1 m 3 When the mass γa is set to 12.9 kgr / m 3 and blown out from the nozzle of this injector and released from the overflow into the atmosphere, The speed Ua m / s ejected from the cheat is When the nozzle outlet of this nozzle is 5 cm 2 , the amount of compressed gas γagr / s 2 jetted per second is γagr / s 2 = Ua × γa × 5 = 38, 979, ×
0, 0129 × 5 = 2, 514, gr / s 2 = 2, 5k
The kinetic energy Kakg weight m / s 2 produced by the compressed gas when ejected from this 5 cm 2 nozzle for 1 second is gr / s 2. The specific gravity and the liquefied pressure of the gas are different, but the compression ratio is the same, and they have enormous energy. Therefore, this working fluid can be returned to the original tank and circulated. How much energy do you need? When calculated using water pressure, water has a mass γw of 1 m 3 of 1,000, kg
r / m 3 and this water is the same as compressed gas at 10 kgr /
Ejection speed of water into the atmosphere at cm 2 Uwm
/ S is And when the jetting outlet of this water is 5 cm 2 , the amount of water γwgr / s 2 jetted into the atmosphere in 1 second is γwgr / s 2 = Uw × γw × 5 = 4,427, × 1 ×
5 = 22, 135, gr / s 2 = 22, 1 kgr / s 2
Is the kinetic energy of the water jetted in 1 second Kwkgr
Heavy m / s 2 Therefore, the ratio of the kinetic energy of compressed gas and water jetted into the atmosphere from the jet with the same pressure and the same width is It becomes 2,212,8k with this working fluid to return the working fluid from this tank back to the original tank and circulate
If the kinetic energy of gr gr m / s 2 or more is produced and the kinetic energy of 2,212, 8 kgr m / s 2 or more remains in the working fluid, the working fluid can be returned and circulated in the tank again. Therefore, half of the energy produced by the working fluid is transmitted to the wind turbine, and is taken out for other purposes such as power energy. The remaining half is left as the working fluid. When used to return the working fluid to the tank, the motion left in the working fluid The energy can reach 9,690 kg / m 2 of m / s 2, and the compressed gas in the tank is used as a working fluid and blown out from the nozzle. When it is released from the overflow into the atmosphere, the speed creates a vacuum around the nozzle.
Since a vacuum chamber below atmospheric pressure is created, this pump continues to operate even if the overflow is closed.This working fluid is a large amount of energy that vaporizes the compressed liquefied gas in the tank and is pushed out from the nozzle as compressed gas. The velocity causes the jet action to form a vacuum, and the vacuum chamber expands due to the explosion. Due to this synergistic effect, the velocity of the working fluid becomes supersonic and produces enormous kinetic energy. This synergistic effect is produced by the jet action only for gases such as highly compressed compressed liquefied gas, compressed gas, or high-pressure steam. The working fluid that produced this enormous amount of energy is utilized by the injector's discharge function. It is a permanent device that is circulated back in the tank of

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 この発明はタンクの中の圧縮気体や液化
気体を大気中などの圧力の低い所に噴出させた時膨張す
るためタンクの中の圧力に対して何倍にも登る莫大な運
動エネルギーを産み出すこの莫大なネエルギーを保有す
る圧縮気体をジェットポンプのノズルから噴出させると
ジェット作用によってノズル周辺に真空が形成されるた
め圧縮気体はノズルから押し出される速度と押し出され
た圧縮気体が膨張する速度の相乗作用で超音速となり莫
大なエネルギーを産み出すこの莫大なエネルギーを風車
の作動流体に使い作動流体が保有するエネルギーの一部
を風車に伝え残されたエネルギーで排出される作動流体
を再びタンクの中に戻すジェットポンプ インゼクタの
排出機能を活用した永久装置であり風車を作動し風車か
ら永久にエネルギーが得られる装置である
According to the present invention, a compressed gas or a liquefied gas in a tank expands when it is ejected to a place where the pressure is low, such as the atmosphere, so that it expands many times with respect to the pressure in the tank. When a compressed gas with a huge amount of energy that produces energy is ejected from the nozzle of a jet pump, a vacuum is formed around the nozzle by the jet action, so the compressed gas is expelled from the nozzle and the compressed gas expelled expands. It becomes supersonic due to the synergistic action of the speeds that produce a huge amount of energy. This huge energy is used as the working fluid of the wind turbine, and a part of the energy held by the working fluid is transmitted to the wind turbine. Jet pump that returns to the tank again It is a permanent device that utilizes the discharge function of the injector and operates the wind turbine to permanently save energy from the wind turbine. It is obtained apparatus
JP5289698A 1993-08-26 1993-08-26 Elegant energy Pending JPH0893628A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP5289698A JPH0893628A (en) 1993-08-26 1993-08-26 Elegant energy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5289698A JPH0893628A (en) 1993-08-26 1993-08-26 Elegant energy

Publications (1)

Publication Number Publication Date
JPH0893628A true JPH0893628A (en) 1996-04-09

Family

ID=17746593

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5289698A Pending JPH0893628A (en) 1993-08-26 1993-08-26 Elegant energy

Country Status (1)

Country Link
JP (1) JPH0893628A (en)

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