JPH0323125B2 - - Google Patents

Info

Publication number
JPH0323125B2
JPH0323125B2 JP62299880A JP29988087A JPH0323125B2 JP H0323125 B2 JPH0323125 B2 JP H0323125B2 JP 62299880 A JP62299880 A JP 62299880A JP 29988087 A JP29988087 A JP 29988087A JP H0323125 B2 JPH0323125 B2 JP H0323125B2
Authority
JP
Japan
Prior art keywords
fish
tank
water
aquarium
circulation
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.)
Expired - Lifetime
Application number
JP62299880A
Other languages
Japanese (ja)
Other versions
JPH01141536A (en
Inventor
Soichiro Tsuzuki
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.)
SEINAN JIDOSHA KOGYO KK
Original Assignee
SEINAN JIDOSHA KOGYO KK
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 SEINAN JIDOSHA KOGYO KK filed Critical SEINAN JIDOSHA KOGYO KK
Priority to JP29988087A priority Critical patent/JPH01141536A/en
Publication of JPH01141536A publication Critical patent/JPH01141536A/en
Publication of JPH0323125B2 publication Critical patent/JPH0323125B2/ja
Granted legal-status Critical Current

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  • Farming Of Fish And Shellfish (AREA)

Description

【発明の詳細な説明】 (産業上の利用分野) この発明は、生きた魚を生きたまま大量に輸送
する新規な活魚輸送車に関する。
DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to a novel live fish transport vehicle for transporting live fish in large quantities.

(従来の技術) 近時は、タイ、ハマチ、ヒラメ等の魚を、その
養殖地域から比較的遠距離の消費地域まで、活魚
輸送車によつて、生きたまま輸送することが可能
になつた。
(Conventional technology) Recently, it has become possible to transport fish such as sea bream, yellowtail, and flounder alive from their farming areas to consumption areas over relatively long distances using live fish transport vehicles. .

この活魚輸送車は、その搭載した水槽中に、
夫々輸送する魚に適応した海水を満たし、この海
水中に魚を泳がせ、この魚を長時間生存させるた
めに、魚が消費する酸素を補給し、魚が排出する
炭酸ガスを除去し、而も人為的冷却装置を使用し
て水温を一定に保ち、更に水槽中の海水が停滞し
ないよう、流れを生じさせる方法を使用してい
た。
This live fish transport vehicle has a water tank equipped with
Each fish is filled with seawater that is suitable for the fish being transported, the fish are allowed to swim in this seawater, and in order for the fish to survive for a long time, the oxygen consumed by the fish is replenished, the carbon dioxide emitted by the fish is removed, and the An artificial cooling system was used to keep the water temperature constant, and a method was used to create a flow so that the seawater in the tank did not stagnate.

(発明が解決しようとする問題点) 上記の通り、従前方法による活魚輸送車の水槽
には、魚が生存できる環境を人為的に作り出して
いるが、この水槽中で魚を生かしたまま輸送する
ためには、その量に限界がある。即ち水槽中に多
量の魚を入れて泳がせると、魚の泳ぐ向きが定ま
らず魚どうしが衝突して傷つき死に至つてしま
う。従つて余裕をもつて魚が遊泳し得る数に限定
され、その結果小量の魚しか生きたまま輸送でき
ないという問題点があつた。
(Problems to be Solved by the Invention) As mentioned above, an environment in which fish can survive is artificially created in the tank of a live fish transport vehicle using the conventional method. Therefore, there is a limit to the amount. That is, if a large number of fish are placed in an aquarium and allowed to swim, the fish will not be able to swim in a certain direction and will collide with each other, resulting in injury and death. Therefore, there was a problem that the number of fish that could swim was limited, and as a result, only a small amount of fish could be transported alive.

この問題点をある程度解決する手段として、水
槽中に多数のカゴを満載し、このカゴの中を魚一
匹が静止して泳いでいる状態が保てるように仕切
つて、この仕切られた区画内に一匹づつの魚を入
れて、この魚を生きたまま輸送する方法が開発さ
れ、近時比較的多くの魚が同時に輸送できるよう
になつた。然しこの方法でも、魚がカゴに突き当
たつて傷つき易いという問題点があるだけでな
く、特に多数のカゴを使用しなければならないと
いう面倒と共に、帰り車に空のカゴを積んで帰ら
なければならないというきわめて不経済な問題点
がある。
One way to solve this problem to some extent is to fill an aquarium with many cages, partition the cages so that a single fish can remain stationary, and swim within these partitioned compartments. A method has been developed to transport each fish individually, and it has recently become possible to transport relatively large numbers of fish at the same time. However, even with this method, there is the problem that the fish are easily injured when they hit the cages, and it is also a hassle to use a large number of cages. There is the extremely uneconomical problem of not being able to do so.

この発明は、上記従前の活魚輸送方法及び活魚
輸送車の問題点に鑑み、水槽内の環境を、輸送す
る魚に適する自然環境に近い状態にして、魚を生
きたまま輸送できる収容密度を高め、大量の魚を
生きたまま輸送し得る新規な活魚輸送方法及び活
魚輸送車を提供することを目的とする。
In view of the above-mentioned problems with the conventional live fish transport method and live fish transport vehicle, this invention improves the storage density for transporting fish alive by making the environment in the aquarium close to the natural environment suitable for the fish to be transported. An object of the present invention is to provide a new live fish transport method and a live fish transport vehicle that can transport a large amount of live fish.

(問題点を解決するための手段) この為にこの発明では、搭載する水槽の内面角
部を平面からみて彎曲状として水槽の平面内側形
状を略長円形状とし、該彎曲状とした角部にモー
タスクリユーを配置して水流を発生させる活魚輸
送車であつて、水槽の中心部に上記水槽の平面内
側形状の略長円形状に近似する略長円形状からな
る濾過槽を設け、この濾過槽の外壁及び水槽の外
壁内面並びに水槽底とによつてトラツク状の循環
水路を構成し、水槽内循環水路と濾過槽との間に
循環ポンプ及び熱交換器並びに自動酸素溶存装置
を含む循環路を設けると共に、上記モータスクリ
ユーを可変式とし該スクリユーの回転数を変える
ことにより水の流速を可変にしたことを特徴とす
るものである。
(Means for Solving the Problems) For this purpose, in this invention, the inner corner of the water tank to be mounted is curved when viewed from a plane, the inner shape of the water tank in plane is approximately oval, and the curved corner is curved. This is a live fish transport vehicle in which a motor screw is arranged to generate a water flow, and a filter tank is provided in the center of the aquarium with a substantially elliptical shape approximating the planar inner shape of the aquarium. A track-shaped circulation waterway is formed by the outer wall of the filtration tank, the inner surface of the outer wall of the water tank, and the bottom of the water tank, and a circulation pump, a heat exchanger, and an automatic oxygen dissolving device are installed between the circulation waterway in the water tank and the filtration tank. In addition to providing a passage, the motor screw is of a variable type, and by changing the rotational speed of the screw, the water flow rate is made variable.

(作用) この発明の輸送車によると、水槽内の循環水路
に水流を構成し、この循環水流内で魚を遊泳させ
るから、流速を輸送する魚が静止遊泳する速さに
することによつて、全ての魚が略同じ方向に向い
て泳ぎ、而も静止状態にて整列させることがで
き、従つて水槽内を自然に近い状態として大量の
魚を傷つけることなく泳がせて輸送するものであ
る。
(Function) According to the transport vehicle of the present invention, a water flow is formed in the circulating waterway in the aquarium, and the fish are made to swim within this circulating water flow. All the fish swim in substantially the same direction and can be lined up in a stationary state, so that a large number of fish can be swimming and transported without being harmed in a near natural state in the aquarium.

(実施例) 以下図面に示した実施例により本発明の詳細を
説明する。
(Example) The details of the present invention will be explained below using examples shown in the drawings.

図中1が運転室2を備える輸送車の車台で、そ
の車台1上にFRP製水槽3を搭載してある。こ
の水槽3の前部には機械室4を有し、後部には鮮
魚用氷保存室5を有する。
In the figure, 1 is the chassis of a transport vehicle equipped with a driver's cab 2, and an FRP water tank 3 is mounted on the chassis 1. The aquarium 3 has a machine room 4 at the front and an ice storage room 5 for fresh fish at the rear.

水槽3の相反して一対の角部6,6を構成する
部分は、断熱層によつて埋めて、その内面を平面
からみて彎曲状とする一方、反対側の一対の角部
7,7には、ステンレス製の仕切網8,8を平面
彎曲状に張設して、この水槽3の平面内側形状を
略長円形状に形成してある。
The portions of the aquarium 3 that constitute the pair of opposing corners 6, 6 are filled with a heat insulating layer so that the inner surface thereof is curved when viewed from a plane, while the portions that constitute the pair of opposite corners 7, 7 are In this case, partition nets 8, 8 made of stainless steel are stretched in a curved shape in a plane, and the inside shape of the water tank 3 in a plane is formed into a substantially elliptical shape.

水槽3の中心部には、上記水槽3の平面形状に
近似する平面形状が略長円形状をなす濾過槽9を
設け、槽内に多数の濾過材10を収めてある。
At the center of the water tank 3, there is provided a filter tank 9 having a substantially elliptical planar shape that approximates the planar shape of the water tank 3, and a large number of filtering materials 10 are housed in the tank.

そしてこの濾過槽9の外壁と水槽3の外壁内面
と水槽3の底11とによつてトラツク状の循環水
路12を構成してある。
The outer wall of the filter tank 9, the inner surface of the outer wall of the water tank 3, and the bottom 11 of the water tank 3 form a track-shaped circulation waterway 12.

この循環水路12と濾過槽9との間には、海水
を循環させて海水中の不純物を濾過する為に、循
環路13を有する。この循環路13中に海水の温
度を一定に保つための熱交換器14、循環ポンプ
15及び海水中に新たな酸素を供給する自動酸素
溶存装置16を含ませてある。従つて海水は、水
路12の上部からオーバーフロー作用によつて濾
過槽9中に導かれ、濾材10によつて不純物が濾
過され、熱交換器14を介して循環ポンプ15に
より循環路13中を導かれ、自動酸素溶存装置を
介して水路12中に循環されるようにしてある。
A circulation path 13 is provided between the circulation waterway 12 and the filtration tank 9 in order to circulate seawater and filter impurities in the seawater. This circulation path 13 includes a heat exchanger 14 for keeping the temperature of the seawater constant, a circulation pump 15, and an automatic oxygen dissolving device 16 for supplying new oxygen into the seawater. Therefore, the seawater is led from the upper part of the water channel 12 into the filter tank 9 by the overflow effect, impurities are filtered out by the filter medium 10, and is led into the circulation path 13 by the circulation pump 15 via the heat exchanger 14. The oxygen is circulated through the water channel 12 via an automatic oxygen dissolving device.

図中17,17が上記仕切網8によつて角部7
を構成した部分に配設した可変式モータスクリユ
ーで、このスクリユー回転によつて循環水路12
中に水流を生ずるようにしてあり、スクリユーの
回転数を変えることにより、流速を可変調整する
ことを可能としてある。図示した実施例では、こ
のスクリユーによつて水流を生ぜしめるようにし
てあるが、循環路13からの還流によつて水流を
主に生ぜしめるようにし、このスクリユーは流速
調整用のために用いてもよい。
In the figure, 17 and 17 are the corner portions 7 formed by the partition net 8.
A variable motor screw is installed in the part that constitutes the circulation waterway 12 by rotating this screw.
A water flow is generated inside the screw, and the flow speed can be variably adjusted by changing the rotation speed of the screw. In the illustrated embodiment, the water flow is generated by this screw, but the water flow is mainly generated by the return flow from the circulation path 13, and this screw is used for adjusting the flow rate. Good too.

この他図中18は防音発電機で、各機器の動力
源としてある。19,19は酸素分散器で、これ
によつても水中に新たな酸素を供給する。20は
消泡装置で、水中で魚が呼吸することにより生ず
る炭酸ガス、あるいは自動酸素溶存装置16又は
酸素分散器によつて生ずる気泡、更には魚が排出
する不純物等によつて水槽上部には多くの泡が生
ずるが、図示しない泡排出管によつてこの泡を排
出するが、この泡を一旦消泡装置20に導き、泡
を消して不純物を外部に排出するようにしたもの
である。更に図中21は点検窓である。又、図中
22,22は多数の孔明き仕切板で、着脱可能と
してあり、こによつて水槽3内を区画し、魚種別
又は魚の大きさ別等によつて分けて入れることも
可能にできる。
In addition, 18 in the figure is a soundproof generator, which serves as a power source for each device. Reference numerals 19 and 19 are oxygen dispersers, which also supply new oxygen into the water. 20 is an anti-foaming device, which prevents the upper part of the aquarium from being caused by carbon dioxide gas generated by fish breathing underwater, bubbles generated by the automatic oxygen dissolving device 16 or oxygen disperser, and impurities discharged by the fish. Many bubbles are generated, and these bubbles are discharged by a bubble discharge pipe (not shown), but the bubbles are once introduced to the defoaming device 20, where the bubbles are extinguished and impurities are discharged to the outside. Furthermore, 21 in the figure is an inspection window. In addition, numerals 22 and 22 in the figure are partition plates with a large number of holes, which are removable and can be attached and detached, so that the inside of the aquarium 3 can be divided and the fish can be placed separately according to the type of fish or the size of the fish. can.

上記の通りからなる本発明によれば、トラツク
状の循環水路12中の水は、循環路13の熱交換
器14によつて温度制御がなされ、自動酸素溶存
装置16によつて新しい酸素が供給され、循環ポ
ンプ15によつて循環され、その放出力によつて
水の流れ方向が決められる。この際水路12の水
は、濾過槽9の上部からオーバーフローされて濾
過槽9中に導かれ、濾過されて上記循環路13に
導かれる。
According to the present invention constructed as described above, the temperature of the water in the track-shaped circulation channel 12 is controlled by the heat exchanger 14 of the circulation channel 13, and fresh oxygen is supplied by the automatic oxygen dissolving device 16. The water is circulated by the circulation pump 15, and the flow direction of the water is determined by its discharge force. At this time, the water in the water channel 12 overflows from the upper part of the filtration tank 9 and is guided into the filtration tank 9, filtered, and led to the circulation path 13.

一方水槽3の角部に設けられた可変式モータス
クリユー17を作動させることによつても循環水
路12中の水に水流を生ぜしめ、而もこのスクリ
ユー17の回転数を変えることによつて、流速を
調整する。従つて魚の種類によつて更には魚の大
きさによつて魚に最適する流速を調整できる。
On the other hand, by operating the variable motor screw 17 provided at the corner of the water tank 3, a water flow is generated in the water in the circulation channel 12, and by changing the rotation speed of this screw 17. , adjust the flow rate. Therefore, it is possible to adjust the optimal flow rate for the fish depending on the type of fish and also the size of the fish.

(発明の効果) 叙上の如く本発明方法及び輸送車では、水槽中
に循環水路を設けて、この水路に循環する水流を
構成し、この循環して流れる水中に魚を泳がせる
ようにしたから、輸送する魚の自然環境に近い状
態で、而も魚を静止遊泳に近い状態にすることが
でき、従つて大量の魚を泳がせても魚どうしが衝
突する危険が少なく、輸送できる収容密度を高
め、生きたままの魚を一度に大量に輸送できる大
きな効果を有する。更に可変式モータスクリユー
の回転数を適宜変えることにより、様々の水流を
発生させることができるから、様々な種類あるい
は大きさの魚に最適の水流を実現でき、現在高価
である活魚輸送車の魚種の対応範囲を広げ、輸送
車をフルに活用することができた効果を有する。
(Effects of the Invention) As described above, in the method and transport vehicle of the present invention, a circulation waterway is provided in the aquarium, a water flow circulates in this waterway, and the fish are made to swim in this circulating water. , the fish can be transported in a state similar to their natural environment, and the fish can be kept in a static swimming state, so there is less risk of fish colliding with each other even when a large number of fish are swimming, and the storage density that can be transported is increased. , which has the great effect of transporting large quantities of live fish at once. Furthermore, by appropriately changing the rotational speed of the variable motor screw, various water flows can be generated, making it possible to achieve the optimal water flow for various types and sizes of fish, making it possible to use live fish transport vehicles, which are currently expensive. This has the effect of expanding the range of fish species that can be handled and making full use of transportation vehicles.

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

図面は本発明方法を実施した本発明活魚輸送車
の一実施例を示すもので、第1図はその側面図で
一部を切欠して示してあり、第2図は水槽部分の
断面平面図である。 3……水槽、7……角部、8……仕切網、9…
…濾過槽、12……循環水路、13……循環路、
15……循環ポンプ、16……自動酸素溶存装
置、17……可変式モータスクリユー。
The drawings show an embodiment of the live fish transport vehicle of the present invention in which the method of the present invention is carried out. Fig. 1 is a side view of the vehicle with a part cut away, and Fig. 2 is a cross-sectional plan view of the aquarium portion. It is. 3...Aquarium, 7...Corner, 8...Partition net, 9...
...filtration tank, 12...circulation waterway, 13...circulation path,
15...Circulation pump, 16...Automatic oxygen dissolving device, 17...Variable motor screw.

Claims (1)

【特許請求の範囲】[Claims] 1 搭載する水槽の内面角部を平面からみて彎曲
状として水槽の平面内側形状を略長円形状とし、
該彎曲状とした角部にモータスクリユーを配置し
て水流を発生させる活魚輸送車であつて、水槽の
中心部に上記水槽の平面内側形状の略長円形状に
近似する略長円形状からなる濾過槽を設け、この
濾過槽の外壁及び水槽の外壁内面並びに水槽底と
によつてトラツク状の循環水路を構成し、水槽内
循環水路と濾過槽との間に循環ポンプ及び熱交換
器並びに自動酸素溶存装置を含む循環路を設ける
と共に、上記モータスクリユーを可変式とし該ス
クリユーの回転数を変えることにより水の流速を
可変にしたことを特徴とする活魚輸送車。
1. The inner corner of the water tank to be mounted is curved when viewed from a plane, and the planar inner shape of the water tank is approximately elliptical.
A live fish transport vehicle in which a motor screw is disposed at the curved corner to generate water flow, and the center of the aquarium has a substantially elliptical shape that approximates the substantially elliptical shape of the planar inner shape of the aquarium. A filtration tank is provided, and the outer wall of the filtration tank, the inner surface of the outer wall of the tank, and the bottom of the tank constitute a track-shaped circulation waterway, and a circulation pump, a heat exchanger, and a A live fish transportation vehicle, characterized in that a circulation path including an automatic oxygen dissolving device is provided, and the motor screw is of a variable type, and the flow rate of water is made variable by changing the rotational speed of the screw.
JP29988087A 1987-11-30 1987-11-30 Method for transporting live fish and live fish transporting vehicle Granted JPH01141536A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP29988087A JPH01141536A (en) 1987-11-30 1987-11-30 Method for transporting live fish and live fish transporting vehicle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP29988087A JPH01141536A (en) 1987-11-30 1987-11-30 Method for transporting live fish and live fish transporting vehicle

Publications (2)

Publication Number Publication Date
JPH01141536A JPH01141536A (en) 1989-06-02
JPH0323125B2 true JPH0323125B2 (en) 1991-03-28

Family

ID=17878065

Family Applications (1)

Application Number Title Priority Date Filing Date
JP29988087A Granted JPH01141536A (en) 1987-11-30 1987-11-30 Method for transporting live fish and live fish transporting vehicle

Country Status (1)

Country Link
JP (1) JPH01141536A (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01168222A (en) * 1987-12-24 1989-07-03 Nippon Suisan Kaisha Ltd Transportation of living fish
JPH04106969U (en) * 1991-02-22 1992-09-16 カルソニツク株式会社 Container for transporting live fish
JP2582533B2 (en) * 1994-02-17 1997-02-19 芙蓉総合リース株式会社 Water tank
KR100818594B1 (en) * 2007-09-14 2008-04-02 백정용 Supply installation of oxygen for a live fish transport vehicle
KR101000717B1 (en) * 2010-07-19 2010-12-10 이상곤 A life keeping system for live fish in ship
CL2019001880A1 (en) * 2019-07-05 2019-10-04 Transp Fishcare Spa Means of land transport of live fish

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS615738A (en) * 1984-06-19 1986-01-11 山口 勝己 Transport of living fish

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63163161U (en) * 1987-04-14 1988-10-25

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS615738A (en) * 1984-06-19 1986-01-11 山口 勝己 Transport of living fish

Also Published As

Publication number Publication date
JPH01141536A (en) 1989-06-02

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