JP5622132B1 - Rotating fan power generator equipment utilizing two-stage maritime draft line - Google Patents

Rotating fan power generator equipment utilizing two-stage maritime draft line Download PDF

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JP5622132B1
JP5622132B1 JP2013273886A JP2013273886A JP5622132B1 JP 5622132 B1 JP5622132 B1 JP 5622132B1 JP 2013273886 A JP2013273886 A JP 2013273886A JP 2013273886 A JP2013273886 A JP 2013273886A JP 5622132 B1 JP5622132 B1 JP 5622132B1
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晴勇 島
晴勇 島
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晴勇 島
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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
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    • 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
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Abstract

【課題】将来の強力な発電装置設備となる回転扇発電等のより良い強力な発電方法を思考中に、従来の回転扇方法に於いての広大な回転扇内空間の活用方法を思考中に偶然に回転扇の逆設置方法に依る大容量空間を活用を海中発電船を提供する。【解決手段】確実な各々上下喫水線の常時確保を安定した状態で確保する為に1番大切な海中発電船本体の確実な海中固定設置の為に、海中発電船内に設置された船内創出浮力調整水槽を設置し、その水槽内に海水の流入に依る水槽内喫水線部分を設置をし、調整水槽内海中空間を創出設置をし、この海中空間設置に依る強烈な浮力の現出と同時に本海中船本体を数十箇所の巨石等の入った重量物容器等の海底投入設置物をロープ等にて連結設置を行ない、確実で完全な海中発電船の重力活用設置を行ない、安定した発電船内の外海海水直接侵入貯留水槽、海水浮力安定固定内水槽双方に順次海水の流入を行ない安定した両喫水線の出現となる。【選択図】図1[PROBLEMS] While thinking about a better and more powerful power generation method such as a rotary fan power generation that will be a powerful power generation equipment in the future, while thinking about how to use the vast space in a rotary fan in the conventional rotary fan method To provide a submarine power ship that happens to take advantage of the large capacity space that depends on the reverse installation method of the rotating fan. SOLUTION: The buoyancy adjustment created in the ship installed in the submarine power generation ship for the secure underwater installation of the main body of the submarine power generation ship, which is the most important in order to ensure the stable securing of the respective upper and lower water lines in a stable state. An aquarium is installed, and a waterline in the aquarium that depends on the inflow of seawater is installed in the aquarium, creating an underwater space in the adjusted aquarium. At the same time as the emergence of strong buoyancy due to this underwater space, The main body of the ship is connected to a seabed input installation such as a heavy-weight container containing dozens of megaliths, etc. with a rope, etc. The seawater will flow into both the open seawater direct intrusion storage tank and the seawater buoyancy stable fixed inner tank in sequence, resulting in the appearance of stable water lines. [Selection] Figure 1

Description

海上海中部分に海中船を設置し、その内部を図1の通り二段の喫水線の設置を行なう事とし、その喫水線落差の活用に依る回転扇稼動の回転負荷の大幅な軽減を行なう事とする。  A submarine vessel will be installed in the middle part of Shanghai, and the inside of it will be installed with a two-stage water line as shown in Fig. 1, and the rotational load of rotating fan operation will be greatly reduced by utilizing the drop of the water line. To do.

従来の回転扇設備を上下逆設置を行ない、従来では不可能な設置方法が本申請の通り二段喫水線の設置に依り、充分に本申請方法の設置方法が可能となる。  The conventional rotating fan equipment is installed upside down, and the installation method that is impossible in the past depends on the installation of the two-stage water line as in this application, and the installation method of this application method becomes fully possible.

以上の通り図1にて説明する。  This will be described with reference to FIG.

本申請の回転扇稼動方法は、まず海中部分に完全固定設置がされた「海中発電船」内に「外海海水直接侵入貯留水槽」を図の通り設置を行ない、まず回転扇内の内側部分に外海喫水線と同水位となる自然な「回転扇内海上喫水線」の設置が回転扇内に出現する。
そして自然な形での回転扇の中心軸が出現設置される事となり、次に本申請の通りのこの「回転扇内海上喫水線」より数m下段に「発電船内喫水線」の設置をし、この喫水線は「海中浮力安定固定内水槽」内に設置される事とし、この喫水線上部分に図1の通り「回転扇内第1浮力空間」「回転扇内第二浮力空間」双方の浮力創出空間の重量物体である「回転扇」に対しての強力な浮力を創出する為に、回転扇を逆設置の形で設置を行ない大容量「浮力創出空間」の活用に依る軽快な回転稼動を目指す事とすると同時に重要な重心となる「円型鋼鉄容器」も段々と高速回転となり、次第に三者稼動力の相乗効果に依る爆発的な回転稼動力の現出となる。
The rotating fan operation method of this application is as follows. First, install an “outside seawater direct invasion storage tank” in the “underwater power generation ship” that is completely fixed in the sea. A natural “rotating fan inland sea water line” that has the same water level as the outer sea water line appears in the rotating fan.
The central axis of the rotating fan will appear and be installed in a natural form. Next, the “Inboard Waterline” will be installed several meters below this “Rotating Fan Inland Sea Waterline” as described in this application. The draft line will be installed in the “underwater buoyancy stable fixed inner tank”. The buoyancy creation space for both the “first buoyancy space in the rotating fan” and the “second buoyancy space in the rotating fan” as shown in FIG. In order to create a powerful buoyancy for the heavy-duty “rotating fan”, the rotating fan is installed in a reverse configuration, aiming for a light rotating operation by utilizing a large-capacity “buoyancy creation space” At the same time, the “circular steel container”, which is an important center of gravity, gradually rotates at a high speed, and gradually, an explosive rotational operating force appears due to the synergistic effect of the tripartite operating force.

関連特許
4件 特許第4993027号 平成24年5月18日認定登録日 「回転扇発電に於ける大容量発電と大量排海水処理の全体構想」 申請者 島 晴勇 特許第4974017号 平成24年4月20日認定登録日 「扇形浮力船回転式ドラム缶水流発電機」 申請者 島 晴勇 特許第5030007号 平成24年7月6日認定登録日 「海水圧高圧噴出発電装置」 申請者 島 晴勇 特許第5408575号 平成25年11月15日認定登録日 『海中空間部分への「海中浮力回転容器」の設置 申請者 島 晴勇
Related patents
4 cases Patent No. 4993027 May 18, 2012 accreditation registration date “Overall concept of large-capacity power generation and mass wastewater treatment in rotary fan power generation” Applicant Haruyu Shima No. 4997417 April 20, 2012 accreditation registration Japan “Floating Drum Can Water Flow Generator with Fan-Shaped Buoyant Ship” Applicant Haruyu Shima Patent No. 5030007 July 6, 2012 Certification Registration Date “Sea Water Pressure High Pressure Jet Generator” Applicant Haruyu Shima Patent No. 5408575 No. 2013 Date of registration on 15th of March “Installation of“ Underwater Buoyancy Rotating Container ”in Underwater Space” Applicant Haruyu Shima

将来の強力な発電装置設備となる回転扇発電等のより良い強力な発電方法を思考中に、従来の回転扇方法に於いての広大な回転扇内空間の活用方法を思考中に偶然に回転扇の逆設置方法に依る大容量空間自体の創出活用を発見したものであり、本申請の二段喫水線設置の活用を行なう事を同時に行なえば実現する事を同時に発見したものである。  While thinking about a better and more powerful power generation method such as a rotating fan power generation that will become a powerful power generation equipment in the future, accidentally rotating while thinking about how to use the vast space inside the rotating fan in the conventional rotating fan method We discovered the creation and utilization of large-capacity space itself due to the reverse installation method of the fan, and discovered that it would be realized if the two-stage waterline installation of this application was performed at the same time.

確実な各々上下喫水線の常時確保を安定した状態で確保する為に1番大切な海中発電船本体の確実な海中固定設置の為に、図1の通り海中発電船内に設置された「船内創出浮力調整水槽」を設置し、その水槽内に海水の流入に依る「水槽内喫水線」部分を設置をし、「調整水槽内海中空間」を創出設置をし、この海中空間設置に依る強烈な浮力の現出と同時に本海中船本体を数十箇所の巨石等の入った重量物容器等の海底投入設置物をロープ等にて連結設置を行ない、確実で完全な海中発電船の重力活用設置を行ない、安定した発電船内の「外海海水直接侵入貯留水槽」「海水浮力安定固定内水槽」双方に順次海水の流入を行ない安定した両喫水線の出現となる。
この両喫水線の水位差活用に依る軽快な回転扇発電の現出となる。
In order to ensure the secure securing of the upper and lower water lines in a stable state, the most important submarine power ship body is securely installed in the sea as shown in Fig. 1. The `` adjusted water tank '' is installed, the `` water tank waterline '' part that depends on the inflow of seawater is installed in the tank, and the `` water tank inside the adjusted water tank '' is created and installed. At the same time as the appearance, the submarine ship body was connected to the seabed input installation such as heavy containers containing dozens of megaliths with ropes, etc. Then, seawater will flow into both the “outer seawater direct intrusion storage tank” and “seawater buoyancy stable fixed inner tank” in the stable power generation vessel, resulting in the appearance of stable water lines.
A light rotating fan power generation will be realized by utilizing the water level difference of both water lines.

現在の発電の殆どは高温高圧水蒸気活用発電であり、約55%熱源が無策意に大気に放出されている現実がある。
現在のこの蒸気タービンに直接噴出を行ない発電を行なう為に、この蒸気タービン重量は大変に軽量となりせいぜい数百kg〜数tの重量でしか無く、本回転扇発電の発想は正に自動車の自然な加速力の活用と同様な現象を海中部分に出現さす事を考案したものである。
まず本「回転扇発電」を行なう為に海上海中部分に全く″振れ″″振動″等の無い二槽の貯留水槽を〔図1〕の通り設置をし、次に車には実現不可能な二段エンジンとなる「高圧噴射機」数十基の設置と、「回転稼動強化ギア装置」稼動の為の回転モーターを回転扇内に設置をし、双方の稼動力にて回転稼動が行なわれる事とする。
次に車の最重要な自然の加速力に匹適する部分となる大切な「円型鋼鉄容器」の設置を行ない、この容器には数百tの重量物が設置される事となる。
当然これだけの重量物に依る重量負荷の軽減の為の「浮力活用海中空間」部分と回転扇内に出現する広大な「浮力創出空間」部分双方の強力な浮力を活用する事とする為に図1の通り二段階の喫水線設置を行ない、当然この「浮力創出空間」の良りよい活用出現の為に、確実な海中発電船の海中海底固定、そして二槽の各貯留水槽の設置が行なわれる事とする
そしてこの数百tの「円型鋼鉄容器」が自然海中の水中浮力の働きに依り軽快な回転稼動力が海中で出現すればこの回転稼動力は陸上設置での回転稼動力と何ら遜色の無い海上空間発電船内での回転発電の出現となり、これが陸上設置の空間活用設置では全く考える事自体が不可能となる。
これだけの重量の回転物より起因する最大の懸案事項である回転摩擦等も海中に於いては全く心配無用となる。
そして簡単にその数百kgの蒸気タービン活用での爆発力を活用した千数百度の高圧蒸気の爆発力活用発電と比較をしても全く比較にならず、赤ちゃんと大人の力比べと同じ位の発電力の差が現実となる。
本海中発電の発見に依り、日本は広大な海域海中を魚類達と同様に謳歌する事となる。
Most of current power generation is power generation utilizing high-temperature and high-pressure steam, and there is a reality that about 55% of heat sources are inadvertently released into the atmosphere.
In order to generate electricity by directly jetting the steam turbine at present, the steam turbine weighs very lightly and weighs only a few hundred kg to several tons, and the idea of this rotary fan power generation is exactly the nature of automobiles. It is devised that a phenomenon similar to the use of a strong acceleration force appears in the sea.
First, in order to carry out this “rotating fan power generation”, two tanks with no “swing” and “vibration” are installed in the central part of the sea Shanghai as shown in [Fig. Dozens of “high-pressure injectors”, which are two-stage engines, and a rotary motor for operating the “rotational operation enhanced gear device” are installed in the rotary fan. Suppose that
Next, an important “circular steel container” that is suitable for the most important natural acceleration force of the car is installed, and a heavy object of several hundred tons will be installed in this container.
Naturally, to make use of the powerful buoyancy of both the "buoyancy-utilizing underwater space" part for reducing the weight load due to such heavy objects and the vast "buoyancy creation space" part appearing in the rotating fan. Two stages of water lines will be installed as shown in Fig. 1. Naturally, in order to make a good use of this "buoyancy creation space", the submarine power ship will be securely fixed and the two storage tanks will be installed. And if this "round steel container" of several hundred tons appears underwater due to the action of underwater buoyancy in the natural sea, this rotational operating force will be equivalent to the rotational operating force on land installation. Rotational power generation will appear in the marine space power generation ship which is inferior, and this cannot be considered at all in the space utilization installation on land.
There is no need to worry about rotational friction, which is the biggest concern caused by rotating objects of such weight, in the sea.
And even when compared to the power generation using the explosive power of the high-pressure steam of a few hundred degrees using the explosive power of using the steam turbine of several hundred kg, it is not comparable at all, as much as comparing the power of a baby and an adult The difference in power generation becomes reality.
With the discovery of this subsea power generation, Japan will enjoy the vast ocean underwater as well as fish.

海上部分に浮力、重力双方の活用を行ない確実に海中発電船が海上海中部分に設置される事とする。その発電船内に二層の海水の流入を図の通り行ない、「回転扇内海上喫水線」「発電船内喫水線」双方の喫水線設置を行ない各喫水線の活用に依る逆設置回転扇を図1の通り設置する事とする。It is assumed that both buoyancy and gravity will be used in the sea area, and the subsea power ship will be installed in the middle part of Shanghai. Two layers of seawater flow into the power generation ship as shown in the figure, and both the “rotating fan inland sea water line” and “power generation ship water line” are installed, and the reverse rotating fan is installed according to the use of each water line as shown in FIG. I will do it.

〔図1〕回転扇の最良活用となる、回転扇の持つ広大な空間活用方法をいろいろと思考中に偶然にも二段の喫水線設置に依る逆設置形回転扇として設置を行なえば、広大な空間確保と同時にこの空間活用に依る強力な浮力確保も可能となる事を発見したものである。
まず回転扇を逆設置回転扇として設置を行なう為に「外海海水直接侵入貯留水槽」「海中浮力安定固定内水槽」を各々独立水槽として設置をし、「回転扇内海上喫水線」部分の水位は常時「外海喫水線」とほぼ同水位に近い状態にての設置が行なわれ、「発電船内喫水線」部分の水位は適宜「回転扇内海上喫水線」水位より数m下段に設置が行なわれる事とし、その水位差の出現を活用して逆設置形回転扇の設置が行なわれ、その広大な「浮力創出空間」「回転扇内第1浮力空間」双方空間の活用利用に依る数百tの重量物である「円型鋼鉄容器」の設置が行なわれ、当然この重量物の重力負荷軽減の為に「浮力活用海中空間」部分も設置される事とする。
そしてこの重量物逆設置回転扇の回転稼動の為に、「高圧海水噴出機」と「回転稼動強化ギア装置」の稼動の為の「回転モーター」等の設置が行なわれ、「円型鋼鉄容器」を含む逆設置回転扇が段々と高速回転となり、数台の発電機の高速回転稼動を行なう全体図である。
[Fig.1] If you install it as a reverse-type rotating fan by accidentally thinking about the wide space utilization method of the rotating fan, which is the best use of the rotating fan, by thinking of the two-stage water line installation, It was discovered that strong buoyancy can be secured by utilizing this space as well as securing the space.
First of all, in order to install the rotating fan as a rotating fan, the “outside seawater direct intrusion storage tank” and “underwater buoyancy stable fixed inner tank” are installed as independent tanks, respectively, and the water level of the “rotating fan maritime draft line” is It is always installed in a state close to the same water level as the “outside sea water line”, and the water level in the “power ship inboard water line” is appropriately set several meters below the “rotating fan inland sea water line”, Using the emergence of the difference in water level, a reverse rotation fan is installed, and the heavy load of several hundred tons depends on the use of both the large “buoyancy creation space” and “first buoyancy space in the rotation fan”. The “circular steel container” is installed, and naturally the “buoyant underwater space” part is also installed to reduce the gravity load of this heavy object.
And for the rotation operation of this heavy load reverse rotation fan, the installation of "Rotary motor" for the operation of "High pressure seawater jet machine" and "Rotation operation strengthening gear device" etc. was carried out, Is a general view in which the reversely installed rotating fan including “

Claims (1)

海中発電船内に逆設置お椀型回転扇を設置し、その回転扇内側部分の「海中浮力安定固定内水槽」内に独立設置された「外海海水直接侵入貯留水槽」を設置し、この水槽内への外海よりの海水の流入排出は「海水流入調整口」にて行なう事とし、常時「回転扇内第1浮力空間」の確保と自然の摂理となる「外海喫水線」とほぼ同水位となる「回転扇内海上喫水線」が出現し、この喫水線海中部分に発動機蓄電装置稼動「回転モーター」に依る「回転稼動強化ギア装置」の回転稼動となり、まずこの下側設置の「浮力活用海中空間」の浮力活用をした「円型鋼鉄容器」数十tの回転稼動の現出となる。
次に「外海喫水線」より数m下部分に「海中浮力安定固定内水槽」を設置し、この水槽内に「海中安定水槽喫水線」を現出し、この喫水線上にお椀型回転扇の外扇部分の設置を行ない、「回転扇内第1浮力空間」「回転扇内第二浮力空間」「回転モーター室空間」各々が出現し、特に「円型鋼鉄容器」数十tの安定回転稼動の為に設置される「浮力活用海中空間」部分の設置稼動と本回転扇発電の大切な要素となる確実な中心軸の設置現出となる外海直結「回転扇内第1浮力空間」「回転扇内海上喫水線」双方の常時安定確保、安定稼動力が、同時に「海中安定水槽喫水線」上に設置される「外回転扇」内「回転扇内第二浮力空間」の安定確保となり、外周部分設置の「高圧海水噴出機」よりの噴出が繰り返される事に依る「浮力創出空間」の設置活用に依る回転力と、確実な中心軸の安定確保双方の相乗効果が「円型鋼鉄容器」の殆んど振れない高速回転の現出となる。
そして大量の「高圧海水噴出機」より噴出される高圧海水は「海中安定水槽喫水線」上に落下噴出が繰り返される事となりこの喫水線の調整は「調整水槽内海中空間」「船内創出浮力調整水槽」各々の設置活用に依る安定した「発電船内喫水線」の安定確保となる「海上喫水線二段設置活用回転扇発電」に依る発電方法
An inverted bowl-shaped rotating fan is installed in the underwater power generation vessel, and an “outside seawater direct intrusion storage tank” is installed in the “underwater buoyancy stable fixed inner tank” inside the rotating fan. Inflow and discharge of seawater from the open sea will be done at the "seawater inflow adjustment port", and the water level will be almost the same as the "outer sea draft line", which will always provide the "first buoyancy space in the rotating fan" and provide natural supply. `` Rotating fan inland sea water line '' appeared, and under this water line, the `` rotational operation strengthening gear device '' was rotated by the motor power storage device operation `` rotary motor '', and first this `` buoyancy utilizing underwater space '' The "circular steel container" utilizing the buoyancy of tens of tons will appear rotating.
Next, install an “underwater buoyancy stable fixed inner tank” a few meters below the “outer sea draft line”. The “underwater stable tank tank line” appears in this tank, and the outer fan part of the vertical rotating fan on this draft line. The "first buoyancy space in the rotating fan", the "second buoyancy space in the rotating fan", and the "rotary motor chamber space" have appeared, especially for the stable rotation operation of several dozen tons of "circular steel container" Installation and operation of the “buoyancy-utilizing underwater space” part installed in the area and the installation of a reliable central axis that is an important element of this rotary fan power generation “Direct connection of the first buoyancy space in the rotary fan” “Inside the rotary fan” The stable operation and stable operating power of both of the “marine water lines” at the same time ensure the stability of the “second buoyancy space in the rotating fan” installed on the “underwater stable water tank draft line”, and the installation of the outer peripheral part. A “buoyancy creation space” that relies on repeated jets from the “high pressure seawater jet” And the rotational force due to the installation use, securing a stable supply both of the synergistic effect of reliable central axis is the revealing of the high-speed rotation N etc. not shake 殆 of "circular steel container".
And the high-pressure seawater ejected from a large amount of “high-pressure seawater jets” is repeatedly dropped and ejected onto the “underwater stable water tank waterline”. Adjustment of this waterline is “adjusted water tank underwater space” Power generation method based on "rotary fan power generation using two-stage maritime draft line", which ensures stable "power ship ship draft line" depending on the installation and use of each
JP2013273886A 2013-12-03 2013-12-03 Rotating fan power generator equipment utilizing two-stage maritime draft line Expired - Fee Related JP5622132B1 (en)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5762970A (en) * 1980-10-02 1982-04-16 Shigeru Utsunomiya Hydraulic power plant utilizing principle of weir
JPH0133669B2 (en) * 1986-06-06 1989-07-14 Yamaguchi Kikai Kenkyusho
JP4974017B1 (en) * 2011-07-25 2012-07-11 晴勇 島 Fan-shaped buoyancy ship rotary drum water current generator
JP4993027B1 (en) * 2011-05-30 2012-08-08 晴勇 島 This is the overall concept of large-capacity power generation and mass wastewater treatment in rotary fan power generation.
JP5030007B1 (en) * 2011-03-10 2012-09-19 晴勇 島 Seawater pressure high-pressure jet generator
JP5408575B2 (en) * 2012-02-14 2014-02-05 晴勇 島 Installation of "underwater buoyancy rotating container" in the underwater space

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5762970A (en) * 1980-10-02 1982-04-16 Shigeru Utsunomiya Hydraulic power plant utilizing principle of weir
JPH0133669B2 (en) * 1986-06-06 1989-07-14 Yamaguchi Kikai Kenkyusho
JP5030007B1 (en) * 2011-03-10 2012-09-19 晴勇 島 Seawater pressure high-pressure jet generator
JP4993027B1 (en) * 2011-05-30 2012-08-08 晴勇 島 This is the overall concept of large-capacity power generation and mass wastewater treatment in rotary fan power generation.
JP4974017B1 (en) * 2011-07-25 2012-07-11 晴勇 島 Fan-shaped buoyancy ship rotary drum water current generator
JP5408575B2 (en) * 2012-02-14 2014-02-05 晴勇 島 Installation of "underwater buoyancy rotating container" in the underwater space

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