JPS63285274A - Perpetual motion device - Google Patents

Perpetual motion device

Info

Publication number
JPS63285274A
JPS63285274A JP62122340A JP12234087A JPS63285274A JP S63285274 A JPS63285274 A JP S63285274A JP 62122340 A JP62122340 A JP 62122340A JP 12234087 A JP12234087 A JP 12234087A JP S63285274 A JPS63285274 A JP S63285274A
Authority
JP
Japan
Prior art keywords
water
suction
pipe
discharge
motor
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
JP62122340A
Other languages
Japanese (ja)
Inventor
Shigeji Miyagawa
宮河 繁治
Toyoaki Miyagawa
宮河 豊章
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 JP62122340A priority Critical patent/JPS63285274A/en
Publication of JPS63285274A publication Critical patent/JPS63285274A/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
    • Y02E10/20Hydro energy

Landscapes

  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

PURPOSE:To perform perpetual motion by letting the circulating water flow pumped up pass through both suction and discharge pipes formed into inversed U-shaped form, rotating each hydraulic turbine installed in both suction and discharge ports, and changing the generating output over to the starting power of a pump motor. CONSTITUTION:In the pipeline formed into inversed U-shaped form, an inlet port 3 of a suction pipe 1 is opened just under a water level L, and a discharge port 4 of a discharge pipe 2 is opened in the upper part of the water level L. A pump 5 is driven by a motor 6, pumping water up, and it is dropped into the discharge pipe 2. Then, hydraulic turbines 7 and 8 are rotated by dint of a circulating flow of water, letting generators 9 and 10 produce electric power. When this generating output is changed over to a starting power source of the pump motor 6, the pump 5 continues the circulation of water, thus perpetual motion comes to fruition.

Description

【発明の詳細な説明】 本発明は、水面上方に配置した逆U字形の吸込管、吐出
管内に吸上げポンプにより水を循環させ、その吸込口と
吐出口に設けた第1、第2の水車を回転させ、その回転
を動力として吸上げポンプを駆動する永久運動装置であ
る。
DETAILED DESCRIPTION OF THE INVENTION The present invention circulates water by a suction pump in an inverted U-shaped suction pipe and a discharge pipe arranged above the water surface, and first and second pumps are provided at the suction port and the discharge port. It is a perpetual motion device that rotates a water wheel and uses the rotation as power to drive a suction pump.

図面について実施例を説明する。第1図に於て貯水槽の
水面りの上方に直立的に配置した逆U字管の一方の吸込
管1は吸込口3を水面りの直下に開口し、他方の吐出管
2は水面りの直ぐ上方に吐出口4を開口する。5は吸込
管1の上部に設置した吸上げポンプ、6はその駆動モー
タである。
Examples will be described with reference to the drawings. In Fig. 1, one suction pipe 1 of the inverted U-shaped pipe is placed vertically above the water surface of the water tank, and the suction port 3 is opened just below the water surface, and the other discharge pipe 2 is located above the water surface. The discharge port 4 is opened directly above the. 5 is a suction pump installed on the upper part of the suction pipe 1, and 6 is its drive motor.

7.8は吸込口3.吐出口4に面して設けた第1、第2
の水車、9.10は各水車7.8に直結した第1、第2
発i!を機である・ 最初に例えば電池その他適当な電源でモータ6を回して
ポンプ5を駆動すると、吸込管1の中の空気が段々稀薄
になって、大気圧で水は吸込管l内を上る。逆U字管l
、2の高さを10m以下の例えば9m位とし、その上部
円弧状連結部11の直下位置にポンプ5を設置しておけ
ば、水は容易にポンプ位置に達し、吐出管2を落下する
7.8 is the suction port 3. The first and second ports facing the discharge port 4
9.10 are the first and second water turbines directly connected to each water turbine 7.8.
Departure i! When the pump 5 is first driven by turning the motor 6 using a battery or other suitable power source, the air in the suction pipe 1 gradually becomes diluted, and the water rises through the suction pipe 1 at atmospheric pressure. . Inverted U-shaped tube l
, 2 is set to a height of 10 m or less, for example, about 9 m, and the pump 5 is installed directly below the upper arcuate connecting portion 11, water easily reaches the pump position and falls down the discharge pipe 2.

その水の循環に際して、吸込口3に吸込まれる水で第1
水車7が回転する。また吐出管2を重力で落下する水で
その吐出口4に面して設けである第2の水車8を回転さ
せる。
During the water circulation, the water sucked into the suction port 3
Water wheel 7 rotates. Furthermore, water falling down the discharge pipe 2 due to gravity rotates a second water wheel 8 provided facing the discharge port 4.

従ってその第1.第2の水車7.8に夫々直結された発
電機9、lOが発電するのでその2台の発電機の出力電
力を合計して吸上げポンプ5の駆動モータ6の始動電源
と切換えると、モータ6、吸上げポンプ5は逆U字管l
、2内の水の循環を継続して運動を持続する。そして設
計工作がよければ、成程度の余剰電力が得られる。
Therefore, the first. Since the generators 9 and 1O directly connected to the second water turbine 7.8 generate electricity, the output power of the two generators is summed and switched to the starting power source of the drive motor 6 of the suction pump 5, and the motor 6. The suction pump 5 is an inverted U-shaped pipe l
, 2 continues the water circulation to sustain the movement. And if the design is good, a certain amount of surplus power can be obtained.

第2図は前記のモータ6でクラッチ装置12を介して吸
上げポンプを駆動させる。また第1、第2の水車7.8
の回転を例えばベルト、傘歯車、中間軸機構13その他
適宜伝動機構で水平軸15に伝達し、その水平軸15を
吸上げポンプ5の軸16にベルトその他適宜の伝動機構
17で連動させた構成である。
In FIG. 2, the suction pump is driven by the motor 6 via the clutch device 12. Also, the first and second water turbines7.8
The rotation of is transmitted to the horizontal shaft 15 by, for example, a belt, bevel gear, intermediate shaft mechanism 13, or other appropriate transmission mechanism, and the horizontal shaft 15 is linked to the shaft 16 of the suction pump 5 by a belt or other appropriate transmission mechanism 17. It is.

モータ6を電池等の電源で回転させて吸上げポンプ5を
駆動し、水車7.8の回転が安定した後クラッチ装置1
2を操作して吸上げポンプ軸16へのモータ6からの伝
動を、ベルト17からの伝動に切換えると、以後水車7
,8により吸上げポンプ5が駆動されて運動を持続する
The motor 6 is rotated by a power source such as a battery to drive the suction pump 5, and after the rotation of the water wheel 7.8 is stabilized, the clutch device 1
2 to switch the transmission from the motor 6 to the suction pump shaft 16 to the transmission from the belt 17, from then on the water wheel 7
, 8 drive the suction pump 5 to continue its movement.

水平軸15に発電機18を連動させて、水車の余剰力を
電力に変えることもできる。なお水平軸15にははずみ
車19を設ける方がよい。
A generator 18 can be connected to the horizontal shaft 15 to convert the surplus power of the water wheel into electric power. Note that it is better to provide a flywheel 19 on the horizontal shaft 15.

本発明は、上記の構成であるから貯水槽に雨水等を貯水
することによって如何なる場所でも利用できるものであ
る。
Since the present invention has the above-mentioned configuration, it can be used in any place by storing rainwater or the like in a water tank.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の構成略図、第2図は第2の発明の構成
略図である。 1    吸込管 2    吐出管 3    吸込口 4    吐出口 5    ポンプ 6    モータ 7.8  水車 9.10.18   発電機 ll   管1.2の連結部 12   クラッチ装置 13.17   伝動機構 15   水平軸 19   はずみ車 jl:Jl  図 易 2 図
FIG. 1 is a schematic diagram of the configuration of the present invention, and FIG. 2 is a schematic diagram of the configuration of the second invention. 1 Suction pipe 2 Discharge pipe 3 Suction port 4 Discharge port 5 Pump 6 Motor 7.8 Water wheel 9.10.18 Generator ll Connection section 12 of pipe 1.2 Clutch device 13.17 Transmission mechanism 15 Horizontal shaft 19 Flywheel jl: Jl Diagram 2 Diagram

Claims (3)

【特許請求の範囲】[Claims] (1)吸込管と吐出管を逆U字形に構成して貯水槽の水
面の上方に直立させ、吸込口を水面近くの水中に開口さ
せ、吐出口を水面の直上部に開口させ、吸込管の上部に
設けた吸上げポンプをモータにより駆動して、吸込管に
揚った水が吐出管から落下する循環水流を起こさせ、そ
の水流の吸込口と吐出口とに面して夫々設けた第1、第
2の水車を回転させ、各水車により駆動する第1、第2
の発電機の出力を前記の始動モータの始動電力と切換え
て吸上げポンプを駆動する永久運動装置。
(1) The suction pipe and the discharge pipe are configured in an inverted U-shape and stand upright above the water surface of the water tank, the suction port is opened into the water near the water surface, the discharge port is opened directly above the water surface, and the suction pipe A suction pump installed at the top of the pipe is driven by a motor to create a circulating water flow in which the water lifted into the suction pipe falls from the discharge pipe. The first and second waterwheels are rotated and driven by each waterwheel.
A perpetual motion device that switches the output of the generator to the starting power of the starter motor to drive the suction pump.
(2)吸込管と吐出管を逆U字形に構成して貯水槽の水
面の上方に直立させ、吸込口を水面近くの水中に開口さ
せ、吐出口を水面の直上部に開口させ、吸込管の上部に
設けた吸上げポンプをモータにより駆動して、吸込管に
揚った水が吐出管から落下する循環水流を起こさせ、そ
の水流の吸込口と吐出口とに面して夫々設けた第1、第
2の水車を回転させ、両水車を動力として吸上げポンプ
を前記の始動モータと切換えて駆動する永久運動装置。
(2) The suction pipe and the discharge pipe are configured in an inverted U-shape and stand upright above the water surface of the water tank, the suction port is opened into the water near the water surface, the discharge port is opened directly above the water surface, and the suction pipe A suction pump installed at the top of the pipe is driven by a motor to create a circulating water flow in which the water lifted into the suction pipe falls from the discharge pipe. A perpetual motion device that rotates first and second water turbines and uses both water turbines as power to drive a suction pump by switching with the starting motor.
(3)吸上げポンプを駆動する水車の余剰の力で発電機
を駆動する特許請求の範囲(2)記載の永久運動装置。
(3) The perpetual motion device according to claim (2), wherein the generator is driven by the surplus power of the water wheel that drives the suction pump.
JP62122340A 1987-05-19 1987-05-19 Perpetual motion device Pending JPS63285274A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP62122340A JPS63285274A (en) 1987-05-19 1987-05-19 Perpetual motion device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP62122340A JPS63285274A (en) 1987-05-19 1987-05-19 Perpetual motion device

Publications (1)

Publication Number Publication Date
JPS63285274A true JPS63285274A (en) 1988-11-22

Family

ID=14833540

Family Applications (1)

Application Number Title Priority Date Filing Date
JP62122340A Pending JPS63285274A (en) 1987-05-19 1987-05-19 Perpetual motion device

Country Status (1)

Country Link
JP (1) JPS63285274A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2060531A2 (en) * 1992-11-20 1994-11-16 Borda Juan Parellada Hydroelectric generator with closed-circuit operation
WO2005050011A1 (en) * 2003-11-20 2005-06-02 Soui Co., Ltd. Circulating fluid drive force system
WO2010139074A1 (en) * 2009-06-05 2010-12-09 Joseph Perron Autonomous turbine generator with closed fluid circuit

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2060531A2 (en) * 1992-11-20 1994-11-16 Borda Juan Parellada Hydroelectric generator with closed-circuit operation
WO2005050011A1 (en) * 2003-11-20 2005-06-02 Soui Co., Ltd. Circulating fluid drive force system
WO2010139074A1 (en) * 2009-06-05 2010-12-09 Joseph Perron Autonomous turbine generator with closed fluid circuit

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