JP2019070380A - Modified pseudo-perpetual-motion machine using seawater power - Google Patents

Modified pseudo-perpetual-motion machine using seawater power Download PDF

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JP2019070380A
JP2019070380A JP2017206622A JP2017206622A JP2019070380A JP 2019070380 A JP2019070380 A JP 2019070380A JP 2017206622 A JP2017206622 A JP 2017206622A JP 2017206622 A JP2017206622 A JP 2017206622A JP 2019070380 A JP2019070380 A JP 2019070380A
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田中 豊
Yutaka Tanaka
豊 田中
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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
    • Y02E10/20Hydro energy
    • 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
    • Y02E10/30Energy from the sea, e.g. using wave energy or salinity gradient
    • 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
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/16Mechanical energy storage, e.g. flywheels or pressurised fluids

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

Abstract

To solve such the problem that, mankind who enjoys present prosperity by consuming limited resources uses nuclear power as dream energy, but which causes an out-of-control disaster, as reported by the media day-to-day.SOLUTION: In our country, a resource-limited island nation, as one of the idea squeezed by beating our brains, using seawater power, natural energy of ocean's bounty, drives a reciprocating pump to pump up water to a high place and the water falls to drive a power generator to generate power.SELECTED DRAWING: Figure 2

Description

本発明は、寄せる汐、返す汐を利用して、陸地に設けた真水の循環装置を駆動して、電力を創り出す装置に関する。  The present invention relates to an apparatus for generating electric power by driving a fresh water circulation device provided on land using a gutter or return gutter.

従来、海水を利用するのは、舟の運行、製塩業、潮流発電等が少数有るくらいである。  In the past, the use of seawater has been such that there are a small number of operations such as fishing, salt production and tidal power generation.

これは次のよな欠点があつた
利用出来る海の現象は、人がコントロール困難な、自然現象であるからである。
This is because the available sea phenomena with the following disadvantages are natural phenomena that are difficult for humans to control.

本発明は、このような従来の構成が有していた問題を解決しようとするものであり、自然現象である、寄せる波、返す波で発生する海水の動きを利用するものである。  The present invention seeks to solve the problems that such conventional arrangements have had, and utilizes the natural phenomenon of the movement of the sea waves generated by the approaching waves and returning waves.

本発明は、陸地2にアングル等で作られた棚16に、本発明の諸器具、諸機材等を取り付ける棚16を、基礎2に長年の使用に耐えるように設ける。  According to the present invention, the base 2 is provided with a shelf 16 for mounting the devices, materials and the like of the present invention on a shelf 16 made of angles or the like on the land 2 so as to withstand many years of use.

棚16の上の部分に、大容量の真水タンク28を設け、下にも、上のタンク28より少し大きいタンク29をを設ける。    In the upper part of the shelf 16, a large capacity fresh water tank 28 is provided, and in the lower part, a tank 29 slightly larger than the upper tank 28 is provided.

このように設備して、上のタンク28の水を落下させ、その水力で発電装置27を駆動して、発電し、発電機27を駆動し終えた水は、下のタンク29に落下収容される。  In this way, the water in the upper tank 28 is dropped, and the hydraulic power is used to drive the power generator 27 to generate power, and the water that has finished driving the generator 27 is dropped and stored in the lower tank 29. Ru.

真水は、下のタンク29に収容貯水されるので、この水を、自動可変ピッチプロペラ1で創り出された回転力を、一対の傘歯車(11と13)で水平往復運動にして、設けられた、シリンダー17内のピストン18が下の大タンク29の真水を、上ノタンク28に送り、上ノタンク28の水面を常時保つので、外界が如何なる状況にも影響されないので、発電装置27は定速回転を保たれるので、電気のもつ苦手を生じさせないで 一定ボルト、一定アンペアで、装置の故障、機材の耐用限度まで、勿論日々の保守点検を行なうことは必要である。  Since fresh water is stored and stored in the lower tank 29, this water is provided by converting the rotational force created by the automatic variable pitch propeller 1 into horizontal reciprocating motion with a pair of bevel gears (11 and 13). Since the piston 18 in the cylinder 17 sends the fresh water of the lower large tank 29 to the upper tank 28 and keeps the water surface of the upper tank 28 at all times, the power generating device 27 rotates at a constant speed since the outside world is not affected by any situation. Therefore, it is necessary to conduct daily maintenance and inspection to the trouble of the equipment and the service life of the equipment at a constant volt and a constant amperage without causing any difficulty with electricity.

以上記述したように、本発明の骨子は、海水の力で駆動される、自動可変ピッチプロペラ1で、海の自然現象を利用したものである。  As described above, the gist of the present invention is an automatic variable pitch propeller 1 driven by the force of seawater, utilizing natural phenomena of the sea.

本発明にあつては、海の創り出す、寄せる汐、返す汐の両汐を効率良く利用するために、次のようになす。  In the case of the present invention, in order to efficiently use both the creation of the sea, the sink and the return anchor, the following is carried out.

寄せる汐、返す汐の周期は、約6秒である。(駿河湾沼津市今沢海岸実測:本年9月)  The period of coming back and returning chopsticks is about 6 seconds. (Suruga Bay Numazu City Imazawa Coast survey: September this year)

この約6秒前後の間歇運動を、連続した運動とするための手段として、次ぎの如くなす。  The following will be performed as a means for making this continuous movement for about 6 seconds.

海と陸地2に亙つて、本装置設置にあっては、大波や、台風等を想定した、強固で長年の使用に耐えるように、コンクリート等で固めて基礎2とする。  In the installation of this device, it will be hardened with concrete etc. so as to endure the strong and long-time use assuming the large waves, typhoons, etc. in the sea and the land 2 to make the foundation 2.

この基礎2に、本装置では、海岸線に直角に、陸地に向かい、引き汐の時でも、本装置プロペラ1が海中にあつて、寄せる汐、返す汐でも間断なく回転するように設ける。  The foundation 2 is provided in the present apparatus so that the propeller of the present apparatus 1 can rotate without interruption even if it returns to the sea at a right angle to the shoreline and goes to land, even when it is pulled.

海の水は、前述の如く、常に上下左右に動いていおり、加えて流木や、流れ藻、流木は大きなもの、流れ藻は長いももあり、プロペラ1が能力を発揮すように、海水に強い、例えば金属で防錆のコーテイングをしたも、或るいはステンレス製等の、例えば 四角形の保護檻3で、プロペラ1の保護と、円滑な回転を阻害する、流木や流れ藻等から守る。  As mentioned above, the water of the sea is always moving up and down, right and left, plus driftwood, flowing algae, large driftwoods, long flowing algae, so that propeller 1 exerts its ability, it is strong against seawater For example, even if it is coated with metal and rust proofing, or it is made of stainless steel or the like, for example, a square protective cage 3, it protects the propeller 1 and smooth rotation from being disturbed, to protect from driftwood and algae.

従つて、保護檻3は、次の如く設ける、
1、上下左右と千変万化する海流を受けるプロペラ1には、左右二本の揺れ止バー4を 設ける、
2、プロペラ1が変化流動する海水を受けて、常時最も効率良く回転運動する高さを維 持するために、浮き袋5を設る、
4、更に、四角形の檻3の、海側端から陸側端迄は、上下にゆさぶられるように動かさ れるので、檻3の中心を貫通するように設けられたプロペラ軸6は、陸地2に固定 された傘歯車11の軸6に、ユニバーサルジョイント7と、伸縮自在のスプライン 8を設ける。
Therefore, the protective cage 3 is provided as follows,
1. Two left and right swing stop bars 4 are provided on the propeller 1 which receives the ocean current which changes from top to bottom and left to right.
2. The floating bag 5 is provided to maintain the height at which the propeller 1 rotates at all times efficiently in response to the changing flowing seawater.
4. Furthermore, since the sea-side end to the land-side end of the rectangular 檻 3 are moved so as to be swung up and down, the propeller shaft 6 provided so as to penetrate the center of the に 3 A universal joint 7 and a telescopic spline 8 are provided on the shaft 6 of the fixed bevel gear 11.

陸地2側には、小傘歯車11用スタンド10を設け、これと直角に大傘歯車13用スタンド13を設けて、各々が係合するするように設ける。  A stand 10 for the small bevel gear 11 is provided on the land 2 side, and a stand 13 for the large bevel gear 13 is provided at right angles to the stand 10 so as to be engaged with each other.

更にその奥の陸地2には、アングルで大きな棚16を、各々の機材が配置取り付けられるように設ける。  Furthermore, on the land 2 at the back, a large shelf 16 with an angle is provided so that each piece of equipment can be arranged and attached.

大傘歯車13の傘歯の少し内側の一点に、短軸14を設けて、棚16に固着されたピストン18を駆動する、ピストンロツド15は長目に設けて、固定されたシリンダー17のピストを円滑に駆動させるように設ける。  A short shaft 14 is provided at a point slightly inside the bevel gear teeth of the large bevel gear 13 to drive a piston 18 fixed to the shelf 16. A piston rod 15 is provided long and the piston of the fixed cylinder 17 is fixed. Provide a smooth drive.

シリンダー17内の先端向きに、中間隔離壁19を設けて、上側の排出孔20方に逆止弁22を、下方の給水孔21には、吸入用逆止弁23を付加して設ける。  An intermediate separation wall 19 is provided at the tip end inside the cylinder 17, and a check valve 22 is added to the upper discharge hole 20, and a suction check valve 23 is added to the lower water supply hole 21.

24は排水パイプで、上部に設けた上大タンク28に注水する。  A drain pipe 24 is used to pour water into the upper large tank 28 provided at the top.

上大タンク28の底より下方に落下パイプ26を設けて、先端辺に発電装置27を設けて発電し、利用済の水は、下の大タンク29に還元される。  A drop pipe 26 is provided below the bottom of the upper large tank 28, and a power generator 27 is provided at the tip end side to generate power, and used water is reduced to the lower large tank 29.

本装置は、上大タンク28から、落下して下大タンク29に溜まつた水が一定の水位にに達した時、ピストンは吸水して、次ぎの排水行程で上のタンク28に送り、水位を保のである。  In this device, when water falling from the upper large tank 28 reaches the constant water level in the lower large tank 29, the piston absorbs water and is sent to the upper tank 28 in the next drainage stroke, Keep the water level.

以上のように装置して、このよな働きをするので、本発明の名称は次ぎにします。  Since the device works as described above, the title of the present invention is as follows.

海水の力を利用して、真水を循環させて創り出す半永久発電装置。    A semi-permanent generator that creates fresh water through circulation using fresh water.

上述したように本発明の海水力利用の、発電装置は、間歇運動や、大汐、小汐等の変動、季節、昼夜の別なく、日常の保守点等の宜しきを得れば、さしたる費用もかからず、機械装置破損するまで、半永久的に動力を創りを実現するものであり、海水力による動力創り出し装置の完成であり、安価に動力を半永久的に提供するものである。  As described above, the power generation apparatus using seawater power according to the present invention is not limited to intermittent movement, fluctuation of large boat, small boat, etc., season, day and night, if it is good for daily maintenance points etc. It is inexpensive and realizes the power generation semipermanently until the mechanical device breaks, is the completion of the power generation device by sea water power, and provides the power semipermanently inexpensively.

本発明の実施形態で、本装置の側面図。  FIG. 1 is a side view of the apparatus, in an embodiment of the present invention. 本発明の要部の大半を表示したもので、アングル製の棚に、主要機器の配置を示しています。図  It shows the major part of the present invention and shows the arrangement of the main equipment on the angle shelf. Figure 本発明の自動可変ピッチプロペラの平面図。  The top view of the automatic variable pitch propeller of this invention. 本発明の自動可変ピッチプロペラの正面図で、分厚い軸承基盤に、自動可変ピッチプロペラの翼端を、長軸のボルトで揺動自在に緩くはめて、分厚い四角形基盤の四隅の表に2、裏にも2のストパーを凸起して設ける。  In the front view of the automatic variable pitch propeller of the present invention, the tip end of the automatic variable pitch propeller is loosely fitted loosely with the bolt of the long axis on the thick bearing base, and the back of the four corners of the thick square base is 2 Protrusively set up 2 stopper.

以下本発の実施の形態の1つを、図1に基づいて説明する。  One of the embodiments of the present invention will be described below based on FIG.

5は浮き袋で、プロペラ1が、常に最良の回転をする高さを、キープする。  5 is a float bag, and the propeller 1 keeps the height which always makes the best rotation.

プロペラ軸6は、激しい上下左右の揺れを、揺れ止4で軽減させて、ユニバーサルジョイント7、スプライン8で、陸地の基礎1に設けられた、真水循環装置を駆動する。  The propeller shaft 6 reduces the strong vertical and horizontal swings with the swing stop 4 and drives the fresh water circulation system provided on the foundation 1 of the land with the universal joint 7 and the splines 8.


6は駆動軸で、レシプロポンプを駆動するので、傘歯車11のスタンド10を設けて傘歯車A11を回転自在に設け、之11Aと直角に係合する傘歯車Bの、軸承スタンド12を基礎2に設けて傘歯車Bの軸を設けてを係合させ、図2に示す如く、傘歯の内側に、短軸14を設けてコンロッド15を係合させる。
The slide 6 is a drive shaft and drives the reciprocating pump. Therefore, the stand 10 of the bevel gear 11 is provided, the bevel gear A11 is rotatably provided, and the bearing stand 12 of the bevel gear B engaged with the 11A at right angles is based. 2, and the shaft of the bevel gear B is provided and engaged, and as shown in FIG. 2, the short shaft 14 is provided inside the bevel teeth and the connecting rod 15 is engaged.

コンロット15は、更に陸地2の奥に、基礎2からアングルで枠組した棚16に、取り付けられたシリンダー17内の、ピストン18を摺動させる。  Further, the collot 15 slides the piston 18 in the cylinder 17 mounted on the shelf 16 which is framed at an angle from the base 2 at the back of the land 2.

シリンダー17内部でピストン18の上死点より、少し間隔を空けて、隔離壁19を設ける。  An isolation wall 19 is provided at a slight distance from the top dead center of the piston 18 inside the cylinder 17.

隔離壁19には、圧縮行程でシリンダー17内に充満していた真水を逆止弁22を開いて、排水管24経由で、上の大タンク28に送致する。  In the separation wall 19, the fresh water filled in the cylinder 17 in the compression stroke is sent to the upper large tank 28 via the drain pipe 24 by opening the check valve 22.

上の大タンク28には、海流の寄せる汐、帰す汐と流れの遅速、汐の変り目の流れの中断等の不規則、且つ、量的にも不均一な真水を寄せ集めてプールする。  In the upper large tank 28, irregular, quantitative nonuniform fresh water, such as the stagnation of the ocean current, the return of the stream and the delay of the stream, the interruption of the flow of the ridge, and the like, are gathered and pooled.

26は落下用パイプで、上の大タンク28内の水を落下させて、先端部の発電装置27を駆動して発電する。  A drop pipe 26 drops water in the upper large tank 28 and drives the power generator 27 at the tip to generate electric power.

以上のように、プールされた大量の真水で、常時一定水量、一定水圧で、昼夜の別なく発電するので、電気固有のウイークポイントの、電圧、電流が安定しているので、変圧器等の諸機材、諸器具が不要で、例えば、電柱にこれ等諸機材、諸器具を装着するには、それなりの諸設備も必要で、之が不要であるので、発電コスト等の軽減が計られる。  As described above, a large amount of pooled fresh water always generates a constant amount of water and constant water pressure, and generates electricity day and night separately, so the voltage and current of the inherent weak point of electricity are stable, so transformers etc. It is not necessary to use various equipment and equipment, for example, to install such equipment and equipment on a utility pole, it is necessary to have various equipment and no equipment is required, so that power generation costs and the like can be reduced.

全装着品を記載致します、
1 全自動可変ピッチプロペラ 2 陸地(基礎)
3 保護篭 4 係留バー
5 浮き袋 6 主軸
7 ユニバーサルジョイント 8 スプライン
9 軸承スタンドA 10 軸承スタンドB
11 傘歯車小 12 軸承スタンドC
13 傘歯車大 14 短軸
15 ロングコンロッド 16 棚(アングル製)
17 シリンダー 18 ピストン
19 隔離壁 20 排水孔
21 給水孔 22 排水孔逆止弁
23 給水孔逆止弁 24 排水パイプ
25 給水パイプ 26 落下水パイプ
27 発電装置 28 上の大タンク
29 下の大タンク
I will list all the installed products,
1 Fully automatic variable pitch propeller 2 Land (base)
Reference Signs List 3 protection rod 4 mooring bar 5 floating bag 6 main shaft 7 universal joint 8 spline 9 axis support stand A 10 axis support stand B
11 small bevel gear 12 shaft support stand C
13 Umbrella gear size 14 Short shaft 15 Long connecting rod 16 Shelf (manufactured by angle)
17 cylinder 18 piston 19 isolation wall 20 drainage hole 21 water supply hole 22 drainage hole check valve 23 water supply hole check valve 24 drainage pipe 25 water supply pipe 26 falling water pipe 27 power generator 28 large tank 29 large tank 29 below

Claims (1)

汐の流れの抵坑でブレードの角度が変わる、自動可変ピッチプロペラで、寄せる流れ、返す流れでも、常に同一方向に間歇回転する駆動力で、レシプロポンプを駆動させて高い所のタンクに水を揚げ、この水を落下させて発電させ、下のタンクに一旦収容、この水をレシプロポンプで高い所のタンクえと、完全なる循環サイクルを形成する、
以上の構成より成る、海水力による擬似永久機関改。
With a self-variable pitch propeller, the angle of the blades changes in the flow of the flow of the weir, even in the reverse flow and the reverse flow, the driving force that always rotates intermittently in the same direction drives the reciprocating pump to water in the tank at a high place This water is dropped to generate electricity, stored in the lower tank, and this water is reciprocated by a reciprocating pump to form a complete circulation cycle.
A pseudo-permanent engine breakup with seawater power consisting of the above configuration.
JP2017206622A 2017-10-06 2017-10-06 Modified pseudo-perpetual-motion machine using seawater power Pending JP2019070380A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2021139256A (en) * 2020-03-02 2021-09-16 豊 田中 Pseudo perpetual motion machine revision 2 by sea water force
JP7126299B1 (en) 2022-02-22 2022-08-26 株式会社エコン liquid circulation generator

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Publication number Priority date Publication date Assignee Title
JPS5825589A (en) * 1981-08-08 1983-02-15 Yasuke Tamura Pumped storage power plant using range of tide
JPH0560052A (en) * 1991-08-31 1993-03-09 Shiyain Denshi Kk Circulated and pumped water hydraulic device
JPH10288139A (en) * 1997-04-14 1998-10-27 Toshio Hatakeyama Unidirectional turbine and wave activated generator
JPH1137037A (en) * 1997-06-13 1999-02-09 Meisan Chin Water collecting facility for pumping type power generation utilizing natural fluid power
JP2004019626A (en) * 2002-06-20 2004-01-22 Matsushita Electric Ind Co Ltd Wind power generator

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5825589A (en) * 1981-08-08 1983-02-15 Yasuke Tamura Pumped storage power plant using range of tide
JPH0560052A (en) * 1991-08-31 1993-03-09 Shiyain Denshi Kk Circulated and pumped water hydraulic device
JPH10288139A (en) * 1997-04-14 1998-10-27 Toshio Hatakeyama Unidirectional turbine and wave activated generator
JPH1137037A (en) * 1997-06-13 1999-02-09 Meisan Chin Water collecting facility for pumping type power generation utilizing natural fluid power
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JP2021139256A (en) * 2020-03-02 2021-09-16 豊 田中 Pseudo perpetual motion machine revision 2 by sea water force
JP7126299B1 (en) 2022-02-22 2022-08-26 株式会社エコン liquid circulation generator
WO2023162601A1 (en) * 2022-02-22 2023-08-31 株式会社エコン Liquid circulating power generator
JP2023122276A (en) * 2022-02-22 2023-09-01 株式会社エコン Fluid circulating power generation device

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