JPH05245485A - Water purifying ship - Google Patents

Water purifying ship

Info

Publication number
JPH05245485A
JPH05245485A JP8156392A JP8156392A JPH05245485A JP H05245485 A JPH05245485 A JP H05245485A JP 8156392 A JP8156392 A JP 8156392A JP 8156392 A JP8156392 A JP 8156392A JP H05245485 A JPH05245485 A JP H05245485A
Authority
JP
Japan
Prior art keywords
water
hull
gas
mixing device
liquid mixing
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.)
Granted
Application number
JP8156392A
Other languages
Japanese (ja)
Other versions
JPH0710389B2 (en
Inventor
Shuzo Kamata
収蔵 鎌田
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 JP8156392A priority Critical patent/JPH0710389B2/en
Publication of JPH05245485A publication Critical patent/JPH05245485A/en
Publication of JPH0710389B2 publication Critical patent/JPH0710389B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related 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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/10Biological treatment of water, waste water, or sewage

Landscapes

  • Cleaning Or Clearing Of The Surface Of Open Water (AREA)
  • Aeration Devices For Treatment Of Activated Polluted Sludge (AREA)
  • Treatment Of Water By Oxidation Or Reduction (AREA)

Abstract

PURPOSE:To intensely purify a wide stagnation basin as a whole without requiring labor and cost by considering the expansion of a purifying range and the increase of purifying capacity due to a single gas-liquid mixing device achieving the purification of water by discharging air into water as extremely fine air bubbles as a technical problem. CONSTITUTION:An air-liquid mixing device 2 injecting ozone and air from an ozone generator 24 in water as extremely fine air bubbles is attached to a ship body 1 loaded with an ozone generator 24 and the ship body 1 is allowed to navigate by using the jet force of the air bubbles from the gas-liquid mixing device 2 as propelling force and air bubbles are diffused in a stagnation basin over a wide range according to the navigation of the ship body 1 to effectively dissolve air and ozone in the stagnation basin over a wide range and water is intensely purified by oxygen and ozone in the dissolved air.

Description

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

【0001】[0001]

【産業上の利用分野】本発明は、堀や溜池、湖等の滞留
池の水質を浄化する水質浄化船の構成に関するものであ
る。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to the construction of a water purification vessel for purifying the water quality of retention ponds such as moats, ponds, and lakes.

【0002】[0002]

【従来の技術】堀や溜池、湖等の滞留池は、水の動きが
少ないためにバクテリア等の繁殖が甚だしく、アンモニ
ア濃度が高くなり、アオミドロが発生して、汚染が著し
くなる等の大きな社会的問題が生じていた。このような
水質の汚染に対しては、この汚染された水に大量の空気
を溶け込ませることにより、すなわち酸素の溶解量を大
きくすることにより浄化できることが広く知られてい
る。
2. Description of the Related Art In a holding pond such as a moat, a pond, or a lake, since the movement of water is small, bacteria and the like are proliferating, the concentration of ammonia is high, and Ao midoro is generated. Problems were occurring. It is widely known that such water pollution can be purified by dissolving a large amount of air in the polluted water, that is, by increasing the dissolved amount of oxygen.

【0003】このような観点から、コンプレッサーまた
はブロワーを用いて水中に配設されたパイプ内に空気を
圧送し、このパイプに設けられた多数の小孔から空気を
水中に気泡として噴出させるものとか、水面部でモータ
等の駆動装置により水車を回転させて激しい水しぶきを
発生させ、この水しぶきにより多数の気泡を水中に掻き
込むもの等が考えられているが、これ等の手段で得られ
る水中での気泡はあまりにも大きいため、気泡自体の持
つ浮力により短時間のうちに水面まで浮上してしまい、
空気中の酸素が水に溶け込むのに充分な時間を得ること
ができず、水の浄化を効果的に達成することができなか
った。
From such a point of view, it is possible to use a compressor or a blower to send air under pressure into a pipe arranged in water, and to eject the air as bubbles into the water through a large number of small holes provided in the pipe. , It is considered that a water wheel is driven by a drive device such as a motor to generate a violent spray, and a large number of air bubbles are scraped into the water by the spray. Since the bubbles are too large, they float to the water surface in a short time due to the buoyancy of the bubbles themselves,
It was not possible to obtain sufficient time for the oxygen in the air to dissolve in the water, and it was not possible to effectively purify the water.

【0004】そこで、特公昭61−36448号公報等
に開示された気液混合装置が提案されている。この発明
は、上端開口部が水面上に突出した直線円筒形状の外殻
体内に、高速回転する駆動体を同心状に配した構成で、
駆動体の高速回転により外殻体との間に渦流を発生さ
せ、空気と水とを混合させて水中に噴出させるものであ
り、空気を極めて微細な気泡状態として水中に長時間滞
留させることができるので、空気中の酸素を効果的に水
に溶け込ませることができる。
Therefore, a gas-liquid mixing device disclosed in Japanese Patent Publication No. 61-36448 is proposed. This invention has a configuration in which a driving body that rotates at high speed is concentrically arranged in a linear cylindrical outer shell whose upper end opening projects above the water surface.
A vortex flow is generated between the outer shell and the high-speed rotation of the driving body, and air and water are mixed and ejected into the water, and the air can be retained in the water for a long time in the form of extremely fine bubbles. As a result, oxygen in the air can be effectively dissolved in water.

【0005】[0005]

【発明が解決しようとする課題】しかしながら、上記し
た従来技術は、気液混合装置を一定箇所に固定配置する
ものであるので、水の浄化を達成できる範囲は、この気
液混合装置の周辺箇所だけとなり、広大な滞留池の全域
を浄化するには、多数の気液混合装置を配置しなければ
ならず、このため膨大な設備費と人件費とそして保守管
理費とを要すると云う問題があった。
However, in the above-mentioned prior art, the gas-liquid mixing device is fixedly arranged at a fixed position, so that the range where water purification can be achieved is a peripheral part of this gas-liquid mixing device. In order to purify the entire area of the enormous retention pond, a large number of gas-liquid mixing devices must be arranged, which results in enormous equipment costs, labor costs, and maintenance costs. there were.

【0006】また、単に空気中の酸素を水に溶け込ませ
るだけでは、水生生物の成育環境を良くするだけで、よ
り強力にバクテリア等の汚染原因となる微生物を死滅さ
せたり、アンモニア等の汚染物質を分解することができ
ず、水の浄化に時間がかかると云う問題があった。
Further, by simply dissolving the oxygen in the air in water, the growth environment of aquatic organisms can be improved to more strongly kill microorganisms that cause pollution such as bacteria and pollutants such as ammonia. There was a problem that it could not be decomposed and it took time to purify water.

【0007】そこで、本発明は、上記した従来技術にお
ける問題点を解消すべく創案されたもので、単一の気液
混合装置による浄化範囲の拡大と浄化能力の増強とを技
術的課題とし、もって広大な滞留池全体の浄化を強力に
かつ人手と経費をかけずに達成することを目的とする。
[0007] Therefore, the present invention was devised to solve the above-mentioned problems in the prior art, and a technical problem is to expand the purification range and enhance the purification capacity by a single gas-liquid mixing device. Therefore, the purpose is to achieve the purification of the entire vast retention pond powerfully and without manpower and expense.

【0008】[0008]

【課題を解決するための手段】上記技術的課題を解決す
る本発明の手段は、オゾン発生器を搭載した船体を有す
ること、この船体の船底下面に前後方向に沿って装着さ
れ、オゾン発生器が連通された先端部に液体と気体とを
吸入する先端部開口を開設すると共に、後端に後端部開
口を開設した直線円筒状の筒体内に、高速回転駆動され
る回転軸を同軸心状に挿入組付けし、この回転軸に順羽
根と逆羽根との組合せである攪拌羽根を固定して構成さ
れ、稼働することにより後端部開口から気液混合流体を
噴出するた気液混合装置を有すること、船体に取付けら
れた舵を有すること、にある。
Means for solving the above technical problem is to have a hull equipped with an ozone generator, which is attached to the lower surface of the bottom of the hull along the front-rear direction to provide an ozone generator. A tip end opening that communicates liquid and gas is opened at the tip end that is communicated with, and a rotary shaft that is driven to rotate at high speed is coaxial with a linear cylinder that has a rear end opening at the rear end. It is inserted and assembled in a fixed shape, and the stirring shaft, which is a combination of forward and reverse blades, is fixed to this rotating shaft, and the gas-liquid mixture is ejected from the rear end opening by operating to mix it. Having a device, having a rudder attached to the hull.

【0009】船体の先端に、先端開口部を船体の直前の
水面直下に開口し、後端開口部を気液混合装置の筒体の
先端開口部に連通させた誘導管を取付けるのが良く、こ
の誘導管の先端開口部には、水の通過は許すが固形物の
通過を阻止する濾過ネットを取付けるのがより望まし
い。
At the tip of the hull, it is preferable to attach a guide pipe having a tip opening opened immediately below the water surface immediately before the hull and a trailing end opening communicating with the tip opening of the cylinder of the gas-liquid mixing device. It is more desirable to attach a filter net to the opening of the leading end of the guide tube to allow the passage of water but prevent the passage of solid matters.

【0010】気液混合装置の筒体後端から突出した回転
軸の後端部に、この回転軸の回転により水を放射方向に
勢い良く放散する放散装置を設けるのが良く、この放散
装置を、気液混合装置の後端部開口に対向し、放射方向
に後退傾斜した円板状の放散板と、この放散板の後側面
に設けられ、回転軸の回転により水を放射方向に押し出
す傾斜姿勢となった複数の放散羽根と、この放散羽根を
介して放散板に取付けられ、中央に吸い込み口を開設し
たリング板形状の規制板と、から構成するのが良い。
At the rear end of the rotary shaft projecting from the rear end of the tubular body of the gas-liquid mixing device, it is preferable to provide a diffuser for rapidly diffusing water in the radial direction by the rotation of the rotary shaft. , A disk-shaped diffuser plate facing the rear end opening of the gas-liquid mixing device and receding in the radial direction, and a slope provided on the rear side surface of this diffuser plate, which pushes out the water in the radial direction by the rotation of the rotating shaft. It is preferable to include a plurality of diffusion blades in an attitude and a ring-plate-shaped regulation plate that is attached to the diffusion plate via the diffusion blades and has a suction opening in the center.

【0011】船体の船首先端および両側に、送出した超
音波の障害物からの反射波を受信して検知信号を出力す
る検出センサを設け、この検出センサからの検知信号の
入力により舵を障害物を避ける方向に自動操舵する自動
操舵装置を船体に搭載するのが望ましい。
A detection sensor for receiving a reflected wave of the transmitted ultrasonic wave from the obstacle and outputting a detection signal is provided at the front end and both sides of the bow of the hull, and the rudder is obstructed by the input of the detection signal from the detection sensor. It is desirable to equip the hull with an automatic steering device that automatically steers in a direction that avoids

【0012】船体の船尾に、この船体の航行に伴い、水
面の浮遊物を収集するネット状の収集袋を係留するのが
良く、この収集袋の開口部には、この開口部の略半分を
水面上に位置させる浮き枠を取付けるのが有利であり、
船体の船尾に、両側方に延出する係留梁を設け、この係
留梁に間隔を開けて複数の収集袋を係留するのが有効で
ある。
It is preferable to moor a net-shaped collection bag for collecting floating matters on the water surface along the navigation of the hull at the stern of the hull, and approximately half of this opening is provided at the opening of the collection bag. It is advantageous to attach a floating frame located above the water surface,
It is effective to provide a mooring beam extending to both sides at the stern of the hull, and mooring a plurality of collecting bags at intervals on the mooring beam.

【0013】[0013]

【作用】船体を水に浮かべた状態では、気液混合装置は
その全体を水中に没し、筒体内には水が満たされてい
る。この状態で気液混合装置を稼働させると、筒体の後
端部開口から水が噴出されると共に、筒体の先端部開口
から水が吸引される。この筒体の先端部開口からの水の
吸引は、回転軸および攪拌羽根の回転動作により引き起
こされるものであるので、水は渦流となって気液混合装
置に吸引されることになる。
When the hull is floated on water, the gas-liquid mixing device is entirely submerged in water, and the cylinder is filled with water. When the gas-liquid mixing device is operated in this state, water is ejected from the rear end opening of the cylindrical body and water is sucked from the front end opening of the cylindrical body. The suction of water from the opening of the tip of the cylindrical body is caused by the rotating operation of the rotating shaft and the stirring blade, so that the water becomes a vortex and is sucked into the gas-liquid mixing device.

【0014】このように、気液混合装置に吸引される水
は渦流となるので、気液混合装置の稼働後、短時間の内
に、この渦流は水面に達し、これにより気液混合装置に
は水と空気とが一緒に吸引されることになる。
As described above, since the water sucked into the gas-liquid mixing device becomes a vortex, the vortex reaches the water surface within a short time after the gas-liquid mixing device is operated, and thereby the gas-liquid mixing device is supplied with the vortex. Will suck water and air together.

【0015】また、この気液混合装置の稼働と一緒にオ
ゾン発生器を始動させ、発生したオゾンを気液混合装置
の筒体の先端部開口に送出する。それゆえ、稼働中の気
液混合装置は、水と空気とオゾンとを攪拌混合し、この
気液混合流体を後端部開口から後方に噴出することにな
る。
Further, the ozone generator is started together with the operation of the gas-liquid mixing device, and the generated ozone is sent to the tip end opening of the cylinder of the gas-liquid mixing device. Therefore, the gas-liquid mixing device in operation mixes water, air, and ozone with stirring, and jets this gas-liquid mixed fluid rearward from the rear end opening.

【0016】気液混合装置による気液混合流体の後端部
開口からの噴出動作は、船体に推進力を与えることにな
るので、気液混合装置が稼働することにより、船体は緩
やかに航行する。
The jetting operation from the rear end opening of the gas-liquid mixed fluid by the gas-liquid mixing device gives a propulsive force to the hull, so that the hull slowly moves by operating the gas-liquid mixing device. ..

【0017】気液混合装置は、筒体内に吸引した水と気
体(空気とオゾン)とを、高速回転している回転軸と攪
拌羽根とにより、激しく渦流流動させると共に、攪拌羽
根により、この渦流流動している気液混合流体に対して
激しい攪拌力を与える。この攪拌羽根は、気液混合流体
に対して順方向(先端部開口から後端部開口に向かう方
向)の押し進め力を作用させる順羽根と、気液混合流体
に対して逆方向の押し進め力を作用させる逆羽根とから
構成されているので、気液混合流体は、この相互に逆方
向に作用する力により極めて激しく混練され、生成され
る気泡は極めて微細なものとなる。
The gas-liquid mixing device vigorously swirls the water and gas (air and ozone) sucked into the cylinder by the rotating shaft and the stirring blade that are rotating at high speed, and the swirling flow is generated by the stirring blade. A vigorous stirring force is applied to the flowing gas-liquid mixed fluid. The agitation blade applies a forward force to the gas-liquid mixed fluid in the forward direction (direction from the front end opening to the rear end opening) and a forward blade force to the gas-liquid mixed fluid in the opposite direction. Since it is composed of the counter blades to act, the gas-liquid mixed fluid is extremely violently kneaded by the forces acting in mutually opposite directions, and the generated bubbles become extremely fine.

【0018】それゆえ、気液混合装置の後端部開口から
水中に噴出された気液混合流体中の気泡は、その寸法が
極めて微細であるがゆえに、長時間にわたり水中に留ま
ることができ、もってオゾンおよび空気中の酸素の水へ
の溶解を充分に達成させることになり、水の浄化を効果
的に達成する。
Therefore, the bubbles in the gas-liquid mixed fluid ejected from the rear end opening of the gas-liquid mixing device into the water can stay in the water for a long time because of their extremely fine dimensions. Therefore, the dissolution of ozone and oxygen in the air into water is sufficiently achieved, and the purification of water is effectively achieved.

【0019】また、気液混合装置から水中に噴出された
気液混合流体中の気泡は、その寸法が極めて微細である
ために水中での移動がし易く、かつ勢い良く噴出される
ので水中での移動力が大きく、このため比較的遠方まで
到達することができ、もって比較的広い範囲を浄化する
ことになる。
Further, the bubbles in the gas-liquid mixed fluid ejected from the gas-liquid mixing device into the water are easy to move in the water because of their extremely small size, and are vigorously ejected, so that they are submerged in the water. Has a large moving force, so that it can reach a relatively distant place, thereby purifying a relatively wide range.

【0020】この気液混合装置から水中に噴出される気
液混合流体は、船体の航行に従って達成されるので、舵
を操作して船体の航路を適当に設定することにより、滞
留池全体に気液混合流体を放散させることができること
になり、これにより広大な滞留池の全域の水の浄化を達
成できる。
The gas-liquid mixed fluid ejected from the gas-liquid mixing device into the water is achieved in accordance with the navigation of the hull. It becomes possible to disperse the liquid-mixed fluid, and thereby it is possible to achieve the purification of water over the vast area of the retention pond.

【0021】船体の船体に誘導管を取付けた場合には、
この誘導管内の水は、誘導管外の水の波動の影響を受け
ることがないので、気液混合装置に吸引される渦流が好
適にかつ安定した状態で生成されることになり、これに
より気液混合装置は、一定した割合の水と空気との吸引
を安定して継続することができることになり、またこの
際、誘導管の先端開口部に濾過ネットを取付けることに
より、気液混合装置が固形物を吸引して故障すると云う
不都合の発生を未然に防止することができる。
When the guide tube is attached to the hull of the hull,
The water in the guide pipe is not affected by the wave motion of the water outside the guide pipe, so that the vortex flow sucked into the gas-liquid mixing device is generated in a suitable and stable state, and thus the vortex flow is generated. The liquid mixing device can stably continue suction of water and air at a constant ratio, and at this time, by attaching a filter net to the tip opening of the guide tube, the gas-liquid mixing device can be operated. It is possible to prevent the occurrence of inconvenience such as a failure caused by sucking the solid matter.

【0022】気液混合装置に放散装置を取付けた場合に
は、この放散装置により四方に勢い良く放散される水の
勢いにより、気液混合装置から噴出された気液混合流体
がより遠方に放出されることになり、これにより一定箇
所に位置する船体が浄化できる水の範囲を大幅に拡大す
ることができる。
When a diffuser is attached to the gas-liquid mixing device, the gas-liquid mixed fluid ejected from the gas-liquid mixing device is discharged further away due to the momentum of the water that is vigorously diffused in all directions by the diffusion device. As a result, the range of water that can be purified by the hull located at a certain position can be greatly expanded.

【0023】船体に検出センサを有する自動操舵装置を
設けることにより、船体を人手を要することなしに安全
に航行させることができるので、船体の自動運行、すな
わち滞留池の無人浄化を行うことができる。また、この
船体の無人運行に際して、船体の航路を適正にプログラ
ム化することにより、広大な滞留池の浄化を人手を要す
ることなしに効率良く達成できる。
By providing an automatic steering device having a detection sensor on the hull, the hull can be safely navigated without requiring manpower, so that the hull can be automatically operated, that is, unattended cleaning of the retention pond can be performed. .. In addition, during the unmanned operation of the hull, by properly programming the route of the hull, it is possible to efficiently purify the vast retention pond without requiring manpower.

【0024】船体に収集袋を係留した場合には、船体の
航行に従って水面の浮遊物を収集することができるの
で、水の浄化と同時に滞留池水面の清掃を達成すること
ができる。この場合、収集袋の開口部に浮き枠を取付け
ることにより、収集袋による浮遊物の収集を効果的に達
成させることができ、また収集袋を複数係留することに
より、収集袋による浮遊物の収集効率を高めることがで
きる。
When the collection bag is moored to the hull, the suspended matter on the water surface can be collected according to the navigation of the hull, so that the water surface of the retention pond can be cleaned simultaneously with the purification of water. In this case, by attaching a floating frame to the opening of the collection bag, it is possible to effectively achieve the collection of floating substances by the collection bag, and by mooring multiple collection bags, collecting the floating substances by the collection bag. The efficiency can be increased.

【0025】[0025]

【実施例】以下、本発明の実施例を、図面を参照しなが
ら説明する。船体1は、有人コントロール用、無人ラジ
オコントロール用、無人自動コントロール用等の操縦手
段に対応して大きさ、浮力等が設定されるが、図示実施
例では、無人自動コントロール用の場合を示しており、
船体1全体は、高速航行の必要が全くないので、密閉さ
れた箱形状となっている。
Embodiments of the present invention will be described below with reference to the drawings. The hull 1 has its size, buoyancy, etc. set according to the maneuvering means for manned control, unmanned radio control, unmanned automatic control, etc., but the illustrated embodiment shows the case for unmanned automatic control. Cage,
The entire hull 1 does not need to travel at high speed at all, and thus has a closed box shape.

【0026】船体1内には、オゾン発生器24、発電機
26、そして自動操舵装置27が搭載されていて、オゾ
ン発生器24には、発生したオゾンを気液混合装置2に
送出するための送出管25が船体1の船底を突き抜けた
た状態で設けられており、船体1船首および船首両側に
検出センサ28を取付けた自動操舵装置27には、船体
1船尾に設けられた舵29が機械的に連結されている。
An ozone generator 24, a power generator 26, and an automatic steering device 27 are mounted in the hull 1, and the ozone generator 24 sends the generated ozone to the gas-liquid mixing device 2. The delivery pipe 25 is provided so as to penetrate the bottom of the hull 1, and the rudder 29 provided at the stern of the hull 1 serves as a mechanical device in the automatic steering device 27 in which detection sensors 28 are attached to the bow of the hull 1 and both sides of the bow. Are linked together.

【0026】船体1の船底下面に装着された気液混合装
置2(図3参照)は、船体1への取付け固定部分を提供
する直線筒形状をした外枠筒10内に、その主体部分で
ある筒体3と回転軸6と攪拌羽根7との組合せ物を組付
けて構成されている。
The gas-liquid mixing device 2 (see FIG. 3) mounted on the lower surface of the bottom of the hull 1 has a straight tube-shaped outer frame 10 which provides a mounting and fixing part to the hull 1, and its main part is It is constructed by assembling a combination of a certain cylindrical body 3, a rotary shaft 6 and a stirring blade 7.

【0027】筒体3は、その先端部開口4を開口した先
端部を、外枠筒10の先端部内に固定された隔板枠13
に固着すると共に、後端部開口5を開口した後端部を、
外枠筒10の後端縁に固定された後端枠12に固着する
ことにより、外枠筒10内にほぼ同軸心状に組付け固定
されている。
The tubular body 3 has a partition plate frame 13 in which the front end portion of the outer frame cylinder 10 having the front end opening 4 is fixed.
The rear end portion which is fixed to the
By being fixed to the rear end frame 12 fixed to the rear end edge of the outer frame cylinder 10, it is assembled and fixed in the outer frame cylinder 10 in a substantially coaxial shape.

【0028】回転軸6は、先端部を、外枠筒10の先端
開口部に固定された先端枠11に回転自在に軸止すると
共に、後端部を後端枠12に回転自在に軸止して、筒体
3に対して同軸心に挿入配置されている。
The rotary shaft 6 has its front end rotatably fixed to the front end frame 11 fixed to the front end opening of the outer frame cylinder 10 and has its rear end rotatably fixed to the rear end frame 12. Then, the cylindrical body 3 is coaxially inserted and arranged.

【0029】筒体3内に位置する回転軸6部分には、筒
体3内径よりもわずかに小さい羽根径の攪拌羽根7が取
付けられているが、図示実施例の場合、この攪拌羽根7
は、三つの順羽根7aと二つの逆羽根7bとから構成さ
れており、各羽根は、先端側から順羽根7a、逆羽根7
b、順羽根7a、逆羽根7bそして順羽根7aの順で配
置されており、最下流位置に順羽根7aを位置させるこ
とにより、気液混合流体をより強く噴出するようにして
いる。
A stirring blade 7 having a blade diameter slightly smaller than the inner diameter of the cylindrical body 3 is attached to the rotary shaft 6 portion located inside the cylindrical body 3. In the illustrated embodiment, the stirring blade 7 is provided.
Is composed of three forward blades 7a and two reverse blades 7b, and each blade is a forward blade 7a and a reverse blade 7 from the tip side.
b, the normal blade 7a, the reverse blade 7b, and the normal blade 7a are arranged in this order. By positioning the normal blade 7a at the most downstream position, the gas-liquid mixed fluid is ejected more strongly.

【0030】先端枠11に取付けられた回転軸6の先端
は、この先端枠11に取付けられ、発電機26からの給
電により駆動する水中モータ9に連結されており、通孔
14を開設した先端枠11と、同じく通孔14を開設し
た隔板枠13との間の外枠筒10の先端部には、オゾン
発生器24からの送出管25の先端が開口し、渦流Rと
なって吸引される水と空気との混合流体にオゾンを合流
させる合流室15が形成されている。すなわち、水と空
気とオゾンは、この合流室15で一緒になってから、気
液混合装置2の主体部分である筒体3が形成する混合室
8内に吸引されて攪拌混合されるのである。
The tip of the rotary shaft 6 attached to the tip frame 11 is attached to the tip frame 11, is connected to an underwater motor 9 driven by electric power supplied from a generator 26, and has a through hole 14 formed therein. At the tip of the outer frame cylinder 10 between the frame 11 and the partition plate frame 13 in which the through hole 14 is also formed, the tip of the delivery pipe 25 from the ozone generator 24 is opened, and a vortex R is drawn. A merging chamber 15 is formed for merging ozone with the mixed fluid of water and air. That is, water, air, and ozone are combined together in this confluence chamber 15, and then sucked into the mixing chamber 8 formed by the cylinder 3 which is the main part of the gas-liquid mixing device 2 and agitated and mixed. ..

【0031】なお、後端枠12にも通孔14が開設され
ているが、これは外枠筒10と筒体3との間に水が滞留
するのを防止するためであり、筒体3の先端部の筒壁部
分に先端部開口4の一部を開設したのは、筒体3内への
気液混合流体の吸引を効率良く達成させるためである。
A through hole 14 is also provided in the rear end frame 12 for the purpose of preventing water from staying between the outer frame cylinder 10 and the cylinder body 3, and the cylinder body 3 The reason why a part of the tip end opening 4 is provided in the cylinder wall portion of the tip end is to efficiently achieve the suction of the gas-liquid mixed fluid into the tube body 3.

【0032】船体1の船首下端に取付けられた誘導管
(図1および図2参照)22は、後端から先端にかけて
拡径したラッパ状となっていて、水平姿勢となった後端
部に対して、先端部は湾曲して直立する姿勢となってお
り、船体1を水に浮かべた状態で水面W直下に位置する
先端開口部は、濾過ネット23で覆われている。この誘
導管22の後端開口図は、気液混合装置2の外枠筒10
の先端開口部に連結されており、濾過ネット23を取付
けた先端開口部から渦流Rとなって流入した水と空気と
を外枠筒10内に導いている。
A guide tube (see FIGS. 1 and 2) 22 attached to the lower end of the bow of the hull 1 has a trumpet shape in which the diameter is increased from the rear end to the front end, and the guide pipe 22 is horizontal to the rear end. The tip end is curved and stands upright, and the tip opening located directly below the water surface W with the hull 1 floating on water is covered with a filter net 23. The rear end opening view of the guide pipe 22 shows the outer frame cylinder 10 of the gas-liquid mixing device 2.
Is connected to the tip end opening of the filter net 23, and guides the water and air that have flowed into the outer frame cylinder 10 as a vortex R from the tip end opening to which the filtration net 23 is attached.

【0033】後端枠13から突出した回転軸6の後端部
に、外枠筒10の後端部に取付けられた保護ネット21
で覆われた状態で組付けられた放散装置(図4および図
5参照)16は、後端部開口5に対向して回転軸6に固
定され、放射方向に後退傾斜した円板状の放散板17
と、この放散板17の後側面に設けられ、回転軸6の回
転により水を放射方向に押し出す傾斜姿勢となった複数
の放散羽根18と、この放散羽根18を介して放散板1
7に取付けられ、中央に吸い込み口20を開設したリン
グ板形状の規制板19とから構成されている。
A protective net 21 attached to the rear end of the outer frame cylinder 10 is attached to the rear end of the rotary shaft 6 protruding from the rear end frame 13.
The diffuser 16 (see FIGS. 4 and 5) assembled in a state covered with a is fixed to the rotary shaft 6 so as to face the rear end opening 5, and is a disc-shaped diffuser which is inclined backward in the radial direction. Board 17
And a plurality of diffuser blades 18 provided on the rear side surface of the diffuser plate 17 and inclined to push out the water in the radial direction by the rotation of the rotary shaft 6, and the diffuser plate 1 via the diffuser blades 18.
7, a ring plate-shaped regulating plate 19 having a suction port 20 formed in the center.

【0034】この放散装置16は、回転軸6の回転、す
なわち気液混合装置2の稼働により回転駆動し、吸い込
み口20から放散板17と規制板19との間に吸い込ん
だ水を、放散羽根18の作用により、後方に傾斜した放
射方向に勢い良く放出するのであるが、この放散装置1
6から勢い良く放出された水は、気液混合装置2から噴
出される気液混合流体を、その流動に乗せ、そのまま遠
方まで押しやって極めて広範囲に拡散させる。なお、保
護ネット21は、放散装置16が、水面W近くの固形物
を吸引して故障するのを防止するためのものである。
The diffusion device 16 is rotationally driven by the rotation of the rotary shaft 6, that is, the operation of the gas-liquid mixing device 2, and the water sucked from the suction port 20 between the diffusion plate 17 and the regulation plate 19 is diffused by a blade. By the action of 18, the light is emitted vigorously in the radial direction inclined rearward.
The water vigorously discharged from 6 places the gas-liquid mixed fluid ejected from the gas-liquid mixing device 2 on the flow and pushes it as far as it is and diffuses it in an extremely wide range. The protective net 21 is for preventing the diffusion device 16 from sucking the solid matter near the water surface W and causing a failure.

【0035】船体1の船尾には、船体1の両側方に延出
した状態で係留梁32が取付けられており、この係留梁
32には三つの収集袋30が並列にかつ一定間隔を開け
て係留されている。
A mooring beam 32 is attached to the stern of the hull 1 so as to extend to both sides of the hull 1. The mooring beam 32 is provided with three collecting bags 30 in parallel and at regular intervals. Moored.

【0036】各収集袋30は、メッシュ体により袋状に
成形された本体部分の開口部を、浮きを兼ねた浮き枠3
1で形成し、もって船体1の航行中、係留された収集袋
30の開口部の少なくとも半分近くが水面W上に位置す
るようにし、もって水面Wの浮遊物が円滑に収集袋30
内に侵入できるようにしている。
Each collecting bag 30 has a floating frame 3 in which the opening of the main body formed of a mesh body in a bag shape also serves as a float.
1, so that at least nearly half of the opening of the moored collection bag 30 is located on the water surface W during the navigation of the hull 1, so that the suspended matter on the water surface W smoothly flows.
I try to get inside.

【0037】船体1の両側に延出した係留梁31の延出
端部には、水面Wの浮遊物を船体1側に掻き集める傾斜
姿勢で一対の平板状の収集板(図2参照)33が取付け
られており、船体1の航行に従って、水面Wの浮遊物を
船体1に近づく方向に流動させ、そのまま係留した収集
袋30に侵入し易くし、もって収集袋30による浮遊物
の収集を効果的に達成できるようにしている。
At the extension ends of the mooring beams 31 extending to both sides of the hull 1, a pair of flat plate-like collecting plates 33 (see FIG. 2) 33 in an inclined posture for collecting suspended matter on the water surface W toward the hull 1 side 33 Is attached, the floating matter on the water surface W is made to flow in the direction approaching the hull 1 according to the navigation of the hull 1 and easily enters the moored collection bag 30 as it is, so that the collection of the floating material by the collection bag 30 is effective. I can achieve it.

【0038】[0038]

【発明の効果】本発明は、上記した構成となっているの
で、以下に示す効果を奏する。空気だけではなく、オゾ
ンも極めて微細な気泡にして水中の広範囲に放散するの
で、空気中の酸素およびオゾンを効率良く水中に溶解さ
せることができ、もって水の浄化を効果的に達成するこ
とができる。
Since the present invention has the above-mentioned structure, it has the following effects. Not only air, but also ozone is made into extremely fine bubbles and diffused in a wide range of water, so that oxygen and ozone in the air can be efficiently dissolved in water, and thus water purification can be effectively achieved. it can.

【0039】気体と水との攪拌混合を、激しい渦流動作
だけではなく、攪拌羽根による強力な攪拌動作も加わっ
て達成するので、噴出される気体の気泡を極めて微細な
ものとすることができ、これによって噴出された気泡の
水中での滞留時間を長くすることができると共に、噴出
勢いで気泡を遠方まで到達させることができ、もって空
気中の酸素およびオゾンの水への溶け込みを極めて効率
良く達成できる。
Since the stirring and mixing of the gas and the water are achieved not only by the vigorous swirling motion but also by the strong stirring motion by the stirring blade, the gas bubbles to be jetted can be made extremely fine, This makes it possible to prolong the residence time of the ejected bubbles in water, and also to make the bubbles reach far away by vigorously ejecting them, thus achieving extremely efficient dissolution of oxygen and ozone in the air into water. it can.

【0040】気体の極めて微細な気泡を噴出する気液混
合装置を緩やかに航行する船体に取付けたので、この船
体の航行に従って気体の気泡を滞留池の広範囲にわたっ
て放散することができ、これによって滞留池の広範囲に
わたる水の浄化を少数の気液混合装置で達成することが
可能となり、もって広大な滞留池全体の水の浄化のため
の設備に膨大な経費を要することがない。
Since the gas-liquid mixing device for ejecting extremely fine bubbles of gas is attached to the hull that slowly navigates, the bubbles of gas can be diffused over a wide range of the retention pond according to the navigation of the hull, and thereby the residence is retained. It becomes possible to achieve wide range water purification in a pond with a small number of gas-liquid mixing devices, and therefore, there is no need for enormous costs for the equipment for purifying water in the entire large retention pond.

【0041】船体の航行は、この船体に取付けられた気
液混合装置が噴出する気液混合流体の噴出力を推進力と
するので、船体推進のための専用の推進装置が不要であ
り、もって全体の構成を簡単化することができる。
Since the propelling force of the gas-liquid mixed fluid ejected from the gas-liquid mixing device attached to the hull is used as the propulsive force for the navigation of the hull, a dedicated propulsion device for propulsion of the hull is unnecessary. The entire structure can be simplified.

【0042】誘導管を設けた場合には、渦流の生成が確
実であると共に、生成される渦流が極めて安定したもの
となるので、気液混合装置から一定してかつ安定して気
液混合流体が噴出されることになり、もって安定した水
の浄化作用と船体の航行動作とを得ることができる。
When the guide tube is provided, the vortex flow is surely generated, and the vortex flow generated is extremely stable. Therefore, the gas-liquid mixing device can constantly and stably generate the gas-liquid mixed fluid. Thus, a stable water purifying action and a navigational movement of the hull can be obtained.

【0043】放散装置を設けた場合には、気液混合装置
から噴出される微細な気泡を、水中のより遠方まで拡散
させることができ、もってより広範囲な水の浄化を確実
にかつ効果的に達成することができる。
When the diffusion device is provided, the fine bubbles ejected from the gas-liquid mixing device can be diffused further into the water, so that a wider range of water can be purified surely and effectively. Can be achieved.

【0044】自動操舵装置を設けた場合には、広大な滞
留池の水の浄化作業を、完全な無人化状態で安全にかつ
確実に達成することができ、もって水の浄化作業に要す
る人の労力を大幅に軽減することができる。
When the automatic steering device is provided, the purification work of the water in the vast retention pond can be safely and reliably achieved in a completely unmanned state, so that the person who needs the water purification work can perform the purification work. The labor can be greatly reduced.

【0045】船体に収集袋を係留した場合には、船体の
航行を利用して水面の浮遊物を収集除去することができ
るので、滞留池の水の浄化と同時に水面の清掃をも達成
することができる。
When the collection bag is moored to the hull, it is possible to collect and remove the suspended matter on the water surface by utilizing the navigation of the hull, so that the cleaning of the water surface can be achieved at the same time as the purification of the water in the retention pond. You can

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明による水質浄化船の一実施例を示す、全
体側面図。
FIG. 1 is an overall side view showing an embodiment of a water purification boat according to the present invention.

【図2】図1に示した実施例の全体平面図。FIG. 2 is an overall plan view of the embodiment shown in FIG.

【図3】図1に示した実施例に取付けられた気液混合装
置の構造例を示す、全体縦断側面図。
FIG. 3 is an overall vertical sectional side view showing a structural example of a gas-liquid mixing device attached to the embodiment shown in FIG.

【図4】気液混合装置に取付けられる放散装置の一実施
例を示す半縦断した側面図。
FIG. 4 is a semi-longitudinal side view showing an embodiment of a diffusion device attached to a gas-liquid mixing device.

【図5】図4に示した放散装置の正面図。5 is a front view of the diffusion device shown in FIG.

【符号の説明】[Explanation of symbols]

1 ; 船体 2 ; 気液混合装置 3 ;
筒体 4 ; 先端部開口 5 ; 後端部開口 6 ;
回転軸 7 ; 攪拌羽根 7a; 順羽根 7b;
逆羽根 8 ; 混合室 9 ; 水中モータ 10;
外枠筒 11; 先端枠 12; 後端枠 13;
隔板枠 14; 通孔 15; 合流室 16;
放散装置 17; 放散板 18; 放散羽根 19;
規制板 20; 吸い込み口 21; 保護ネット 22;
誘導管 23; 濾過ネット 24; オゾン発生器 25;
送出管 26; 発電機 27; 自動操舵装置 28;
検出センサ 29; 舵 30; 収集袋 31;
浮き枠 32; 係留梁 33; 収集板 R ;
渦流 W ; 水面
1; ship hull 2; gas-liquid mixing device 3;
Cylindrical body 4; Front end opening 5; Rear end opening 6;
Rotating shaft 7; Stirring blade 7a; Forward blade 7b;
Reverse blade 8; Mixing chamber 9; Submersible motor 10;
Outer frame cylinder 11; Front end frame 12; Rear end frame 13;
Separating plate frame 14; Through hole 15; Merging chamber 16;
Dispersion device 17; Dispersion plate 18; Dispersion blade 19;
Regulation plate 20; Suction port 21; Protective net 22;
Induction tube 23; Filtration net 24; Ozone generator 25;
Delivery pipe 26; Generator 27; Automatic steering device 28;
Detection sensor 29; Rudder 30; Collection bag 31;
Floating frame 32; Mooring beam 33; Collection plate R;
Vortex W; Water surface

Claims (10)

【特許請求の範囲】[Claims] 【請求項1】 オゾン発生器(24)を搭載した船体(1)
と、該船体(1) の船底下面に前後方向に沿って装着さ
れ、前記オゾン発生器(24)が連通された先端部に液体と
気体とを吸入する先端部開口(4) を開設し、後端に後端
部開口(5) を開設した直線円筒状の筒体(3) 内に、高速
回転駆動される回転軸(6) を同軸心状に挿入組付けし、
該回転軸(6) に順羽根(7a)と逆羽根(7b)との組合せであ
る攪拌羽根(7) を固定して構成され、稼働することによ
り前記後端部開口(5) から気液混合流体を噴出するた気
液混合装置(2) と、前記船体(1) に取付けられた舵(29)
と、から成る水質浄化船。
1. A hull (1) equipped with an ozone generator (24)
And a tip end opening (4) for sucking liquid and gas is provided at the tip end attached to the lower surface of the bottom of the hull (1) along the front-rear direction and communicating with the ozone generator (24), The rotary shaft (6) driven at high speed is coaxially inserted and assembled in the straight cylindrical body (3) with the rear end opening (5) at the rear end.
The rotating shaft (6) is constituted by fixing a stirring blade (7), which is a combination of a forward blade (7a) and a reverse blade (7b), and is operated to operate from the rear end opening (5) to vapor-liquid. A gas-liquid mixing device (2) for ejecting a mixed fluid and a rudder (29) attached to the hull (1)
A water purification boat consisting of.
【請求項2】 船体(1) の先端に、先端開口部を前記船
体(1) の直前の水面(W) 直下に開口し、後端開口部を気
液混合装置(2) の筒体(3) の先端開口部(4)に連通させ
た誘導管(22)を取付けた請求項1に記載の水質浄化船。
2. A front end opening of the hull (1) is opened immediately below the water surface (W) immediately before the hull (1), and a rear end opening is a cylinder () of the gas-liquid mixing device (2). The water purification boat according to claim 1, further comprising a guide pipe (22) connected to the tip opening (4) of (3).
【請求項3】 誘導管(22)の先端開口部に、水の通過は
許すが固形物の通過を阻止する濾過ネット(23)を取付け
た請求項2に記載の水質浄化船。
3. The water purification boat according to claim 2, wherein a filter net (23) which allows passage of water but prevents passage of solids is attached to the opening of the leading end of the guide pipe (22).
【請求項4】 気液混合装置(2) の筒体(3) 後端から突
出した回転軸(6) の後端部に、該回転軸(6) の回転によ
り水を放射方向に勢い良く放散する放散装置(16)を設け
た請求項1または2または3に記載の水質浄化船。
4. At the rear end of the rotary shaft (6) protruding from the rear end of the tubular body (3) of the gas-liquid mixing device (2), the rotation of the rotary shaft (6) vigorously accelerates the water in the radial direction. The water purification boat according to claim 1, 2 or 3, which is provided with a diffusion device (16) for diffusion.
【請求項5】 放散装置(16)を、気液混合装置(2) の後
端部開口(5) に対向し、放射方向に後退傾斜した円板状
の放散板(17)と、該放散板(17)の後側面に設けられ、回
転軸(6) の回転により水を放射方向に押し出す傾斜姿勢
となった複数の放散羽根(18)と、該放散羽根(18)を介し
て前記放散板(17)に取付けられ、中央に吸い込み口(20)
を開設したリング板形状の規制板(19)と、から構成した
請求項4に記載の水質浄化船。
5. A disc-shaped diffuser plate (17), which is opposed to the rear end opening (5) of the gas-liquid mixing device (2) and is recedingly inclined in the radial direction, and the diffuser device (16). A plurality of diffusion blades (18) provided on the rear side of the plate (17) and inclined to push out water in a radial direction by the rotation of the rotating shaft (6), and the diffusion blades (18) through the diffusion blades (18). Attached to the plate (17) with central suction port (20)
5. The water purification boat according to claim 4, which comprises a ring-plate-shaped regulation plate (19) having an opening.
【請求項6】 船体(1) の船首先端および両側に、送出
した超音波の障害物からの反射波を受信して検知信号を
出力する検出センサ(28)を設け、該検出センサ(28)から
の検知信号の入力により舵(29)を前記障害物を避ける方
向に自動操舵する自動操舵装置(27)を前記船体(1) に搭
載した請求項1または2または3または4または5に記
載の水質浄化船。
6. A detection sensor (28) for receiving a reflected wave from an obstacle of the transmitted ultrasonic wave and outputting a detection signal is provided at the front end and both sides of the bow of the hull (1), and the detection sensor (28) The automatic steering device (27) for automatically steering the rudder (29) in a direction avoiding the obstacle according to an input of a detection signal from the ship, is mounted on the hull (1) according to claim 1, 2 or 3 or 4 or 5. Water purification boat.
【請求項7】 船体(1) の船尾に、該船体(1) の航行に
伴い、水面(W) の浮遊物を収集するネット状の収集袋(3
0)を係留した請求項1または2または3または4または
5または6に記載の水質浄化船。
7. A net-shaped collection bag (3) for collecting suspended matter on the water surface (W) along with the navigation of the hull (1) at the stern of the hull (1).
The water purification boat according to claim 1 or 2 or 3 or 4 or 5 or 6 moored at 0).
【請求項8】 収集袋(30)の開口部に、該開口部の略半
分を水面(W) 上に位置させる浮き枠(31)を取付けた請求
項7に記載の水質浄化船。
8. The water purification boat according to claim 7, wherein a floating frame (31) is attached to the opening of the collecting bag (30) so that substantially half of the opening is located on the water surface (W).
【請求項9】 船体(1) の船尾に、両側方に延出する係
留梁(32)を設け、該係留梁(32)に間隔を開けて複数の収
集袋(30)を係留した請求項7または8に記載の水質浄化
船。
9. A mooring beam (32) extending to both sides is provided at the stern of the hull (1), and a plurality of collecting bags (30) are moored at intervals on the mooring beam (32). The water purification boat according to 7 or 8.
【請求項10】係留梁(32)の延出端に、水面(W) 上の浮
遊物を船体(1) 側に寄せ集める姿勢に傾斜した平板状の
収集板(33)を取付けた請求項9に記載の水質浄化船。
10. A flat plate-shaped collecting plate (33) inclined to a posture in which suspended matter on the water surface (W) is gathered to the hull (1) side is attached to the extended end of the mooring beam (32). 9. The water purification boat described in 9.
JP8156392A 1992-03-03 1992-03-03 Water purification boat Expired - Fee Related JPH0710389B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP8156392A JPH0710389B2 (en) 1992-03-03 1992-03-03 Water purification boat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP8156392A JPH0710389B2 (en) 1992-03-03 1992-03-03 Water purification boat

Publications (2)

Publication Number Publication Date
JPH05245485A true JPH05245485A (en) 1993-09-24
JPH0710389B2 JPH0710389B2 (en) 1995-02-08

Family

ID=13749766

Family Applications (1)

Application Number Title Priority Date Filing Date
JP8156392A Expired - Fee Related JPH0710389B2 (en) 1992-03-03 1992-03-03 Water purification boat

Country Status (1)

Country Link
JP (1) JPH0710389B2 (en)

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WO2006026150A3 (en) * 2004-08-31 2006-04-06 Usa Pelican Inc Vessel with oxygenation system and decontamination method
JP2008063823A (en) * 2006-09-07 2008-03-21 Marine Giken:Kk Floating body device for recovering water-bloom propagation preventive floating material
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Publication number Priority date Publication date Assignee Title
CN109734251B (en) * 2019-03-07 2020-04-21 上海大学 Unmanned ship for water pollution treatment

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7517459B2 (en) 2004-07-15 2009-04-14 Usa Pelican Inc. Vessel with oxygenation system and decontamination method
US7947172B2 (en) 2004-07-15 2011-05-24 Water Management Technologies, Inc. Vessel with oxygenation system and decontamination method
WO2006026150A3 (en) * 2004-08-31 2006-04-06 Usa Pelican Inc Vessel with oxygenation system and decontamination method
EP1797013A2 (en) * 2004-08-31 2007-06-20 USA Pelican, Inc. Vessel with oxygenation system and decontamination method
EP1797013A4 (en) * 2004-08-31 2007-10-17 Pelican Inc Usa Vessel with oxygenation system and decontamination method
JP2008063823A (en) * 2006-09-07 2008-03-21 Marine Giken:Kk Floating body device for recovering water-bloom propagation preventive floating material
CN103583456A (en) * 2013-11-21 2014-02-19 许石宝 Multifunctional ozone sterilizing and disinfecting aerator

Also Published As

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