JP2006204193A - Cooling device of water tank for appreciation fish - Google Patents

Cooling device of water tank for appreciation fish Download PDF

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JP2006204193A
JP2006204193A JP2005021103A JP2005021103A JP2006204193A JP 2006204193 A JP2006204193 A JP 2006204193A JP 2005021103 A JP2005021103 A JP 2005021103A JP 2005021103 A JP2005021103 A JP 2005021103A JP 2006204193 A JP2006204193 A JP 2006204193A
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water
heat exchanger
water tank
tank
cooling
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JP4330010B2 (en
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Susumu Fujikawa
進 藤川
Toshio Fujikawa
敏男 藤川
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PAPIE C KK
TOUINGU KK
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PAPIE C KK
TOUINGU KK
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a cooling device of a water tank for an appreciation fish, capable of preventing deterioration in a cooling effect of a heat exchanger for cooling water in the water tank in an early stage. <P>SOLUTION: This cooling device is composed of a main body 2, the heat exchanger 4, a cooling fan 5, a water pump 6, and a water spray pipe 17, wherein the main body 2 is freely fitted to an upper part of the water tank 1 by a main body fitting means 20, the heat exchanger 4 is positioned in a case 3 of the main body 2 and composed of a heat-radiating pipe 4a and heat-radiating fins 4b, the cooling fan 5 circulates air through the heat exchanger 4 and discharges the air used in cooling the heat exchanger 4 onto a water surface of the water tank 1, the water pump 6 makes the water in the water tank 1 filtered with a filter 15 and then circulates the filtered water through the heat-radiating pipe 4a of the heat exchanger 4, and the water spray pipe 17 sprays the water cooled by the heat exchanger 4 onto the water surface of the water tank 1. Thus, impurities and water stains which are not completely removed by the filter 15 are prevented from adhering to or accumulating on surfaces of the heat-radiating fins 4b, so that the deterioration in the cooling effect of the heat exchanger 4 in the early stage is prevented, even when the water in the water tank 1 is circulated through the heat exchanger 4 for a long period. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、金魚や熱帯魚等の観賞魚を飼育する観賞魚用水槽の冷却装置に関する。   The present invention relates to a cooling device for aquarium fish tanks for breeding ornamental fish such as goldfish and tropical fish.

この種の水槽で飼育する観賞魚は、水槽内の水温の変化に敏感なことから、水温の管理が大切である。
このため従来から水槽内の水温を予め設定した温度に維持するための各種装置が提案され、実用化されている。
従来の水温調整装置の代表的なものとしては、水温を設定するサーモスタットと、サーモスタットに接続されたヒータを備え、水槽内の水温がサーモスタットにより設定した温度により下がった場合、ヒータに通電されて水槽内の水が加熱され、水温が設定温度に達したら、ヒータをオフにすることにより、水槽内の温度を一定に維持する構成となっている。
しかし前記従来の水温調整装置は、外気温が設定温度より低い時期には効果があるが、夏季のように外気温が設定温度より高くなる時期には、水温調整機能が働かなくなる問題がある。
特に飼育最適温度が27°C前後の熱帯魚等の場合、水温が例えば飼育最適温度より2、3°C上がっただけでも、衰弱したり、死滅することがある。
Since ornamental fish raised in this type of tank are sensitive to changes in the water temperature in the tank, it is important to manage the water temperature.
For this reason, various devices for maintaining the water temperature in the water tank at a preset temperature have been proposed and put into practical use.
A typical conventional water temperature control device is equipped with a thermostat for setting the water temperature and a heater connected to the thermostat, and when the water temperature in the water tank falls due to the temperature set by the thermostat, the heater is energized and the water tank When the water inside is heated and the water temperature reaches a set temperature, the heater is turned off to keep the temperature in the water tank constant.
However, the conventional water temperature adjusting device is effective when the outside air temperature is lower than the set temperature, but there is a problem that the water temperature adjusting function does not work when the outside air temperature becomes higher than the set temperature as in summer.
In particular, in the case of a tropical fish or the like whose optimum breeding temperature is around 27 ° C., even if the water temperature rises by 2 to 3 ° C. above the optimum breeding temperature, for example, it may be weakened or killed.

かかる問題を解消するため、水槽内の水を冷却する水槽の冷却装置が例えば特許文献1で提案されている。
前記特許文献1の水槽の冷却装置は、水槽の上部に熱交換器と冷却ファンを備えており、エアポンプより水槽内のエアリフトポンプへエアを供給して、水槽内の水を熱交換器の上方に設けられた散水器へと揚水し、散水器により熱交換器へ散水している。
そして散水された水が熱交換器を通過する際、冷却ファンにより熱交換器へ通流された空気により冷却するようにしたもので、冷却ファンによる冷却空気だけでなく、エアポンプからの空気も利用して揚水後の水が冷却できるため、優れた冷却効果が得られるようになっている。
特開2003−235396号公報
In order to solve such a problem, for example, Patent Document 1 proposes a water tank cooling device for cooling water in the water tank.
The water tank cooling device of Patent Document 1 includes a heat exchanger and a cooling fan at the top of the water tank, and supplies air from the air pump to the air lift pump in the water tank so that the water in the water tank is above the heat exchanger. The water is pumped up to the water sprinkler provided in the water, and the water is sprinkled to the heat exchanger.
And when the sprinkled water passes through the heat exchanger, it is cooled by the air that is passed to the heat exchanger by the cooling fan, and not only the cooling air by the cooling fan but also the air from the air pump is used. Since the water after pumping can be cooled, an excellent cooling effect can be obtained.
JP 2003-235396 A

しかし前記特許文献1に記載された水槽の冷却装置では、エアリフトポンプにより揚水された水槽内の水を直接熱交換器へ通過させて冷却する構成のため、次のような問題がある。
すなわち、エアリフトポンプにより揚水される水槽内の水はフィルタにより濾過されていても、多少不純物や水垢が存在することから、長期間熱交換器に通水させていると、不純物が熱交換器に付着して、熱交換器に目詰まりが発生し、冷却効果が極端に低下する。
このためフィルタと同様に定期的に清掃することになるが、熱交換器は伝熱面積を大きくするため多層構造の放熱フィンが使用されており、これら放熱フィンの表面に不純物や水垢が付着した場合、これを掃除するのに多くの手間と時間を必要とする上、清掃時強い力を加えると放熱フィンが折れ曲がったり、破損する等の問題がある。
また熱交換器を水と共に通過した空気を冷却ファンが吸引して外部へ排出する構造のため、熱交換器を通過した際発生した霧状の水滴が空気と共に冷却ファンへ吸引され、その結果冷却ファンを駆動する電動機が常時湿気を含んだ空気に曝されて、冷却ファンが早期に故障する等の問題もある。
However, the water tank cooling device described in Patent Document 1 has the following problems due to the configuration in which the water in the water tank pumped by the air lift pump is directly passed through the heat exchanger for cooling.
In other words, even if the water in the water tank pumped by the air lift pump is filtered by the filter, there are some impurities and scales, so if the water is passed through the heat exchanger for a long time, the impurities are transferred to the heat exchanger. It adheres and the heat exchanger becomes clogged, and the cooling effect is extremely reduced.
For this reason, it will be cleaned regularly like the filter, but heat exchangers use multi-layer heat radiation fins to increase the heat transfer area, and impurities and scales adhere to the surfaces of these heat radiation fins. In this case, it takes a lot of labor and time to clean this, and if a strong force is applied at the time of cleaning, there is a problem that the radiating fin is bent or broken.
In addition, because the cooling fan sucks the air that has passed through the heat exchanger together with water and discharges it to the outside, the mist-like water droplets that are generated when passing through the heat exchanger are sucked into the cooling fan together with the air, resulting in cooling. There is also a problem that the electric motor that drives the fan is constantly exposed to air containing moisture, causing the cooling fan to fail early.

本発明はかかる問題を改善するためになされたもので、水槽内の水を冷却する熱交換器の冷却効果が早期に低下することがない観賞魚用水槽の冷却装置を提供することを目的とするものである。   This invention was made in order to improve this problem, and it aims at providing the cooling device of the aquarium for ornamental fish which the cooling effect of the heat exchanger which cools the water in an aquarium does not fall early. To do.

本発明の鑑賞魚用水槽の冷却装置は、鑑賞魚を飼育する水槽内の水を冷却する鑑賞魚用水槽の冷却装置であって、本体取り付け手段により水槽の上部に取り付け自在な本体と、本体のケース内に設けられ、かつ放熱管と放熱フィンとからなる熱交換器と、熱交換器の近傍に設置され、かつ熱交換器内に空気を流通させると共に、熱交換器を冷却した空気を水槽の水面に向けて排出する冷却ファンと、水槽内の水をフィルタにより濾過した後熱交換器の放熱管へ流通させる水ポンプと、熱交換器により冷却された水を水槽の水面に向けて散水する散水管とから構成したものである。   The appreciation fish aquarium cooling device of the present invention is an appreciation fish aquarium cooling device for cooling the water in the aquarium for breeding the appreciation fish, and a main body that can be attached to the upper part of the aquarium by the main body attaching means, A heat exchanger composed of a heat radiating pipe and a heat radiating fin, and installed in the vicinity of the heat exchanger and distributes air through the heat exchanger and cools the heat exchanger. A cooling fan that discharges toward the water surface of the aquarium, a water pump that filters the water in the aquarium through a filter and then distributes it to the heat radiating pipe of the heat exchanger, and directs the water cooled by the heat exchanger toward the water surface of the aquarium It consists of a watering pipe that sprays water.

前記構成により、放熱管に取り付けられた多数の放熱フィンにより熱交換器の放熱面積が大幅に拡大されるため、放熱管内を流通する水を効率よく冷却することができ、これによって夏季のように外気温が設定温度より高くなる時期でも安心して観賞魚を飼育することができると共に、水ポンプにより揚水した水槽内の水が放熱フィンの間を流れることがないため、フィルタにより除去しきれなかった不純物や水垢が放熱フィンの表面に付着堆積することがなくなり、これによって水槽内の水を長期間熱交換器に流通させていても、熱交換器に目詰まりが発生することがないため、熱交換器の冷却効果が早期に低下することがない。
また定期的に熱交換器を清掃する手間が不要となるため、鑑賞魚用水槽のメンテナンスが容易になると共に、霧状の水滴を含んだ空気が冷却ファンを通過することがないため、冷却ファンが早期に故障する等の心配もない。
With the above configuration, the heat radiation area of the heat exchanger is greatly expanded by the large number of heat radiation fins attached to the heat radiation pipe, so that the water circulating in the heat radiation pipe can be cooled efficiently, and as in the summer Aquarium fish can be bred with peace of mind even when the outside air temperature is higher than the set temperature, and the water in the tank pumped by the water pump does not flow between the radiation fins, so it could not be removed by the filter Impurities and scales do not adhere to and accumulate on the surface of the radiating fins, which prevents clogging of the heat exchanger even when the water in the tank is circulated through the heat exchanger for a long time. The cooling effect of the exchanger is not reduced early.
In addition, since there is no need to periodically clean the heat exchanger, maintenance of the aquarium fish tank is facilitated and air containing mist-like water drops does not pass through the cooling fan. There is no worry that it will break down early.

本発明の鑑賞魚用水槽の冷却装置は、散水管より水槽の水面へ散水される水滴に向けて、熱交換器を冷却した空気を排出するようにしたものである。   The cooling device for an aquarium fish tank according to the present invention is configured to discharge the air that has cooled the heat exchanger toward water droplets sprayed from the water spray pipe to the water surface of the water tank.

前記構成により、散水管より水槽の水面へ散水される霧状の水滴が、熱交換器を冷却した空気によりさらに冷却されるため、冷却効率が一段と向上すると共に、水滴に酸素が供給されるため、水槽内の水に酸素の供給が十分に行えるようになる。   With the above configuration, the mist-like water droplets sprayed from the water spray pipe to the water surface of the water tank are further cooled by the air that has cooled the heat exchanger, so that the cooling efficiency is further improved and oxygen is supplied to the water droplets. The oxygen in the water tank can be sufficiently supplied.

本発明の鑑賞魚用水槽の冷却装置は、本体取り付け手段を、水槽の上部を把持する把持部と、把持部とケースの間を連結するフレキシブル管とから形成したものでる。   In the cooling device for aquarium fish according to the present invention, the main body attaching means is formed of a gripping part for gripping the upper part of the water tank and a flexible tube connecting the gripping part and the case.

前記構成により、フレキシブル管により本体の排気口より吹き出される空気の向きを自由に変えることができるため、水槽内の水温が高くなることが予想される水面に向けて空気を吹き付けるように本体の位置や角度を調整することにより、水槽内の水を水面からも冷却することができるため、より効率よく水槽内の水の冷却が行えるようになる。   With the above configuration, the direction of the air blown from the exhaust port of the main body can be freely changed by the flexible pipe, so that the main body is blown toward the water surface where the water temperature in the water tank is expected to rise. By adjusting the position and angle, the water in the aquarium can be cooled from the water surface, so that the water in the aquarium can be cooled more efficiently.

本発明の鑑賞魚用水槽の冷却装置によれば、夏季のように外気温が設定温度より高くなる時期でも安心して観賞魚を飼育することができると共に、フィルタにより除去しきれなかった不純物や水垢が放熱フィンの表面に付着堆積することがないため、水槽内の水を長期間熱交換器に流通させていても、熱交換器の冷却効果が早期に低下することがない。   According to the cooling device for an appreciation fish tank of the present invention, an ornamental fish can be bred with peace of mind even when the outside air temperature is higher than a set temperature as in summer, and impurities and scales that cannot be removed by a filter. Therefore, even if the water in the water tank is circulated through the heat exchanger for a long period of time, the cooling effect of the heat exchanger does not deteriorate early.

本発明の実施の形態を、図面を参照して詳述する。
図1は冷却装置の使用状態を示す構成図、図2は冷却装置の斜視図、図3は同断面図、図4は同内部構造の斜視図である。
図1に示す観賞用水槽1は、四面がガラスやアクリル樹脂等の透明板で形成され、上面が開口した長方体状の箱形に形成された水密構造となっている。
水槽1内に収容された水を冷却する冷却装置の本体2は、側面がほぼL字形に形成された偏平なケース3を有しており、ケース3の水平部3aに熱交換器4と冷却ファン5が収容され、垂直部3bの下部に水ポンプ6が収容されている。
ケース3は全体が樹脂により成形されていて、水平部3aと垂直部3bの角部に形成された面取り部3cに操作パネル7が取り付けられており、操作パネル7には、冷却ファン5をオン、オフするファンスイッチ8と、水ポンプ6をオン、オフするポンプスイッチ9、温度設定を行う温度設定スイッチ10及び設定温度や水槽1内の水温を表示する表示器11が設けられている。
Embodiments of the present invention will be described in detail with reference to the drawings.
FIG. 1 is a configuration diagram showing a usage state of the cooling device, FIG. 2 is a perspective view of the cooling device, FIG. 3 is a sectional view thereof, and FIG. 4 is a perspective view of the internal structure.
The ornamental water tank 1 shown in FIG. 1 has a watertight structure formed in a rectangular box shape having four surfaces formed of a transparent plate such as glass or acrylic resin and having an upper surface opened.
The main body 2 of the cooling device that cools the water accommodated in the water tank 1 has a flat case 3 whose side surface is formed in an approximately L shape, and the heat exchanger 4 and the cooling are provided in the horizontal portion 3a of the case 3. A fan 5 is accommodated, and a water pump 6 is accommodated in a lower portion of the vertical portion 3b.
The case 3 is entirely made of resin, and an operation panel 7 is attached to a chamfered portion 3c formed at a corner of the horizontal portion 3a and the vertical portion 3b. The cooling fan 5 is turned on on the operation panel 7. A fan switch 8 for turning off, a pump switch 9 for turning on and off the water pump 6, a temperature setting switch 10 for setting the temperature, and a display 11 for displaying the set temperature and the water temperature in the water tank 1 are provided.

ケース3の垂直部3bに設置された水ポンプ6は、電動機を羽根車(何れも図示せず)とから構成されていて、電動機は、ポンプスイッチ9及びコード12を介して電源に接続されている。
水ポンプ6の下部からは、水槽1内に吸水管14が垂下されていて、吸水管14の水浸漬部分には、筒状のフィルタ15が着脱自在に取り付けられている。
フィルタ15は、スポンジ状の多孔質材により例えば筒状に形成されていて、水ポンプ6が水槽1内の水を吸い上げる際、水中の不純物を濾過するようになっており、フィルタ15により不純物が除去された水は、吸水管14の外周面に形成された複数の長孔状吸水孔14aより水ポンプ6へ吸水されるようになっている。
そして水ポンプ6に吸水された水槽1内の水は、水ポンプ6の吐出側に接続された吐出管16を介して熱交換器4へ流入されるようになっている。
The water pump 6 installed in the vertical portion 3b of the case 3 is composed of an impeller (not shown) as an electric motor, and the electric motor is connected to a power source via a pump switch 9 and a cord 12. Yes.
From the lower part of the water pump 6, a water absorption pipe 14 is suspended in the water tank 1, and a cylindrical filter 15 is detachably attached to a water immersion part of the water absorption pipe 14.
The filter 15 is formed, for example, in a cylindrical shape from a sponge-like porous material, and filters water impurities when the water pump 6 sucks up water in the water tank 1. The removed water is sucked into the water pump 6 through a plurality of long hole-like water suction holes 14 a formed on the outer peripheral surface of the water suction pipe 14.
The water in the water tank 1 absorbed by the water pump 6 flows into the heat exchanger 4 through the discharge pipe 16 connected to the discharge side of the water pump 6.

熱交換器4は図4に示すように、蛇行状に形成された放熱管4aと、放熱管4aと直行する方向に設けられた多数の放熱フィン4bより形成されていて、放熱フィン4bの間を空気が流通する際、放熱管4a内を流通する水が冷却されるようになっており、放熱管4aの流入側が吐出管16を介して水ポンプ6に接続され、流出側が散水管17に接続されている。
散水管17は、ケース3の垂直部3bの水平部3aがわ側面に形成された幅方向に細長い開口部3dの内側に沿ってほぼL字形に屈曲されていて、開口部3dと対向する外周面に多数の散水孔17aが長手方向に間隔を存して穿設されており、これら散水孔17aより水平部3aの下方へ向かってほぼ水平に水が噴出されるようになっている。
As shown in FIG. 4, the heat exchanger 4 is formed of a heat radiating pipe 4a formed in a meandering manner and a plurality of heat radiating fins 4b provided in a direction perpendicular to the heat radiating pipe 4a. When the air flows, the water flowing through the heat radiating pipe 4 a is cooled, the inflow side of the heat radiating pipe 4 a is connected to the water pump 6 through the discharge pipe 16, and the outflow side is connected to the water spray pipe 17. It is connected.
The water spray pipe 17 is bent in a substantially L shape along the inner side of the opening 3d that is elongated in the width direction of the horizontal part 3a of the vertical part 3b of the case 3 and faces the opening 3d. A large number of sprinkling holes 17a are formed in the surface at intervals in the longitudinal direction, and water is ejected substantially horizontally from the sprinkling holes 17a downward to the horizontal portion 3a.

熱交換器4の下方に設置された冷却ファン5は、電動機5aと、電動機5aにより回転駆動されるファン5bとからなり、電動機5aはファンスイッチ8及びコード12を介して電源に接続されている。
ケース3の水平部3a上面には、冷却ファン5の回転と共に水平部3a上の空気を吸入する吸気口3fが上面のほぼ全体に形成されており、吸気口3fには、異物の侵入を防止するグリル3gが全面に亘って設けられていると共に、水平部3aの下面には、熱交換器4を通過した空気を散水管17より散水される水と、水槽1内の水面に向かって排出する排気口3hが下面のほぼ全体に形成されている。
The cooling fan 5 installed below the heat exchanger 4 includes an electric motor 5a and a fan 5b that is rotationally driven by the electric motor 5a. The electric motor 5a is connected to a power source via a fan switch 8 and a cord 12. .
The upper surface of the horizontal portion 3a of the case 3 is formed with an intake port 3f that sucks air on the horizontal portion 3a along with the rotation of the cooling fan 5, and prevents foreign matter from entering the intake port 3f. A grill 3g is provided over the entire surface, and on the lower surface of the horizontal portion 3a, air that has passed through the heat exchanger 4 is sprinkled from the water spray pipe 17 and discharged toward the water surface in the water tank 1. An exhaust port 3h is formed on substantially the entire lower surface.

またケース3の垂直部3bには、開口部3dが開口された側面と反対側の側面に、本体取り付け手段20が設けられている。
本体取り付け手段20は、本体2を水槽1内の上部の任意な個所に取り付けると同時に、排気口3hより排出される空気の方向を任意に調整できるようにしたもので、任意な方向へ折り曲げ自在な金属製のフレキシブル管20aとクリップよりなる把持部20bとからなる。
フレキシブル管20aの一端はケース3の垂直部3b側面に固着されていて、垂直部3bより延出されたコード12が内部に挿通されており、他端側に固着された把持部20bで水槽1の上縁に設けられた枠状部1aを把持することにより、水槽1の任意な位置に本体1が取り付けられるようになっている。
The vertical portion 3b of the case 3 is provided with a body attachment means 20 on the side surface opposite to the side surface where the opening 3d is opened.
The main body attaching means 20 attaches the main body 2 to an arbitrary upper portion in the water tank 1 and at the same time allows the direction of the air discharged from the exhaust port 3h to be arbitrarily adjusted, and can be bent in any direction. It consists of a flexible pipe 20a made of metal and a gripping part 20b made of a clip.
One end of the flexible tube 20a is fixed to the side surface of the vertical portion 3b of the case 3, the cord 12 extending from the vertical portion 3b is inserted through the inside, and the water tank 1 is fixed by the holding portion 20b fixed to the other end side. The main body 1 can be attached to an arbitrary position of the water tank 1 by gripping the frame-like portion 1 a provided on the upper edge of the water tank 1.

次に前記構成された観賞魚用水槽の冷却装置の作用を説明する。
水槽1内には、図示しないサーモスタットとヒータが設けられていて、予めサーモスタットに設定された設定温度より水槽1内の水温が低下すると、ヒータに通電されて、ヒータにより水槽1内の水が加熱されるため、水槽1内の水温は、常に設定温度に維持されているが、夏季等のように外気温が高いため、水槽1内の水温が設定温度より高くなることがある。
このような場合は、予め操作パネル7に設けられた温度設定スイッチ10を操作して、本体2が動作する温度を設定しておく。
いま本体2の動作温度を例えば28°Cに設定しておくと、水槽1内の水温が28°C以上になったのを図示しない水温検出手段が検出した場合、本体2の冷却ファン5及び水ポンプ6が動作を開始する。
これによって吸水管14に取り付けられたフィルタ15により不純物が濾過された水槽1内の水が水ポンプ6により吸水された後、吐出管16より熱交換器4の放熱管4aへ流入される。
Next, the action of the cooling device for the aquarium fish tank constructed as described above will be described.
A thermostat and a heater (not shown) are provided in the water tank 1, and when the water temperature in the water tank 1 falls below a preset temperature set in the thermostat in advance, the heater is energized and the water in the water tank 1 is heated by the heater. Therefore, although the water temperature in the water tank 1 is always maintained at the set temperature, the water temperature in the water tank 1 may be higher than the set temperature because the outside air temperature is high as in summer.
In such a case, the temperature setting switch 10 provided on the operation panel 7 is operated in advance to set the temperature at which the main body 2 operates.
If the operating temperature of the main body 2 is set to 28 ° C., for example, when a water temperature detecting means (not shown) detects that the water temperature in the water tank 1 has become 28 ° C. or higher, the cooling fan 5 of the main body 2 and The water pump 6 starts operating.
Thus, the water in the water tank 1 from which impurities have been filtered by the filter 15 attached to the water absorption pipe 14 is absorbed by the water pump 6 and then flows from the discharge pipe 16 into the heat radiating pipe 4 a of the heat exchanger 4.

また冷却ファン5の回転により、ケース3の水平部3aの上面に開口された吸気口3fより本体2上方の空気が熱交換器4内へ吸引され、熱交換器4の各放熱フィン4b間を通過する空気により放熱管4a内を流通する水が冷却される。
放熱管4aに取り付けられた多数の放熱フィン4bにより熱交換器4の伝熱面積が大幅に拡大されているため、放熱管4a内を流通する水を効率よく冷却すると共に、水槽1内の水は放熱管4内を流通して放熱フィン4bの間を流れることがないため、フィルタ15により除去しきれなかった不純物や水垢が、放熱フィン4bの表面に付着堆積することがない。
熱交換器4により冷却された水は、散水管17の散水孔17aより水平部3aの下方に向けてほぼ水平に散水された後、水槽1内へ流下するが、このとき冷却ファン5により排気口3hから下方へ向けて排出される空気が、散水管17より散水される霧状の水滴に上方より吹き付けられるため、水はさらに冷却されると同時に、水滴に酸素が供給されるため、水槽1内の水に酸素の供給が十分に行えるようになる。
Further, due to the rotation of the cooling fan 5, the air above the main body 2 is sucked into the heat exchanger 4 from the air inlet 3 f opened on the upper surface of the horizontal portion 3 a of the case 3, and between the radiation fins 4 b of the heat exchanger 4. The water flowing through the heat radiating pipe 4a is cooled by the passing air.
Since the heat transfer area of the heat exchanger 4 is greatly expanded by the large number of radiating fins 4b attached to the radiating pipe 4a, the water circulating in the radiating pipe 4a is efficiently cooled and the water in the water tank 1 is also cooled. Does not flow through the heat radiating pipe 4 and flows between the heat radiating fins 4b, so that impurities and scales that cannot be removed by the filter 15 are not deposited on the surface of the heat radiating fins 4b.
The water cooled by the heat exchanger 4 is sprinkled almost horizontally from the sprinkling hole 17a of the sprinkling pipe 17 toward the lower part of the horizontal portion 3a, and then flows down into the water tank 1. At this time, the water is exhausted by the cooling fan 5. Since the air discharged downward from the mouth 3h is sprayed from above onto the mist-like water droplets sprayed from the water spray pipe 17, the water is further cooled and at the same time oxygen is supplied to the water droplets. The oxygen in the water in 1 can be sufficiently supplied.

前記水槽1内の水の冷却は、水槽1内の水温が設定温度にまで続けられ、水温が設定温度の例えば28°Cになったのを水温検出手段が検出すると冷却ファン5及び水ポンプ6が動作を停止する。
これによって外気温が設定温度より高くなる夏季等であっても、水槽1内の水温が設定温度より高くなることがないので、水温に敏感な熱帯魚等であっても、安全に飼育することができるようになる。
また霧状の水滴を含んだ空気が冷却ファン5を通過することがない上、本体2を水槽1に取り付けている本体取り付け手段20は、フレキシブル管20aにより排気口3hより吹き出される空気の向きを自由に変えることができるため、水槽1内の水温が高くなることが予想される水面に向けて空気を吹き付けるように本体2の位置や角度を調整することにより、水槽1内の水を水面からも冷却することができるため、より効率よく水槽1内の水の冷却が行えるようになる。
The cooling of the water in the water tank 1 is continued until the water temperature in the water tank 1 reaches the set temperature, and when the water temperature detecting means detects that the water temperature has reached the set temperature, for example, 28 ° C., the cooling fan 5 and the water pump 6. Stops working.
As a result, even in summer when the outside air temperature is higher than the set temperature, the water temperature in the aquarium 1 does not become higher than the set temperature. Therefore, even tropical fish sensitive to the water temperature can be safely raised. become able to.
In addition, air containing mist-like water droplets does not pass through the cooling fan 5, and the body attachment means 20 for attaching the body 2 to the water tank 1 is the direction of the air blown out from the exhaust port 3h by the flexible tube 20a. Since the position and angle of the main body 2 are adjusted so that air is blown toward the water surface where the water temperature in the aquarium 1 is expected to rise, the water in the aquarium 1 can be changed. Therefore, the water in the water tank 1 can be cooled more efficiently.

なお以上は、水温検出手段からの信号により自動的に冷却ファン5及び水ポンプ6をオン、オフして水を冷却する場合であるが、水槽1内の水温を検出する水温計から得た温度情報を元にポンプスイッチ7及びファンスイッチ8を手動で操作して、水槽1内の水を冷却するようにしても勿論よい。
また前記実施の形態では、本体2のケース3内に設置した水ポンプ6により水槽1内の水を吸い上げるようにしたが、水槽1内に設置した水中ポンプにより水をケース3内の熱交換器4へ供給して、水の冷却を行うようにしても勿論よい。
The above is a case where the cooling fan 5 and the water pump 6 are automatically turned on and off to cool the water in response to a signal from the water temperature detecting means, but the temperature obtained from the water thermometer for detecting the water temperature in the water tank 1 Of course, the pump switch 7 and the fan switch 8 may be manually operated based on the information to cool the water in the water tank 1.
Moreover, in the said embodiment, although the water in the water tank 1 was sucked up by the water pump 6 installed in the case 3 of the main body 2, the water is transferred to the heat exchanger in the case 3 by the submersible pump installed in the water tank 1. Of course, the water may be supplied to 4 to cool the water.

本発明の実施の形態になる鑑賞魚用水槽の冷却装置の使用状態の構成図である。It is a block diagram of the use condition of the cooling device of the tank for appreciation fish which becomes embodiment of this invention. 本発明の実施の形態になる鑑賞魚用水槽の冷却装置の斜視図である。It is a perspective view of the cooling device of the tank for appreciation fish which becomes an embodiment of the invention. 本発明の実施の形態になる鑑賞魚用水槽の冷却装置の断面図である。It is sectional drawing of the cooling device of the tank for appreciation fish which becomes embodiment of this invention. 本発明の実施の形態になる鑑賞魚用水槽の冷却装置の内部の斜視図である。It is a perspective view inside the cooling device of the aquarium for appreciation fish which becomes an embodiment of the invention.

符号の説明Explanation of symbols

1 水槽
2 本体
3 ケース
4 熱交換器
4a 放熱管
4b 放熱フィン
5 冷却ファン
6 水ポンプ
15 フィルタ
17 散水管
20 本体取り付け手段
20a フレキシブル管
20b 把持部
DESCRIPTION OF SYMBOLS 1 Water tank 2 Main body 3 Case 4 Heat exchanger 4a Radiation pipe 4b Radiation fin 5 Cooling fan 6 Water pump 15 Filter 17 Sprinkling pipe 20 Main body attachment means 20a Flexible pipe 20b Grip part

Claims (3)

鑑賞魚を飼育する水槽内の水を冷却する鑑賞魚用水槽の冷却装置であって、本体取り付け手段により前記水槽の上部に取り付け自在な本体と、前記本体のケース内に設けられ、かつ放熱管と放熱フィンとからなる熱交換器と、前記熱交換器の近傍に設置され、かつ前記熱交換器内に空気を流通させると共に、前記熱交換器を冷却した空気を前記水槽の水面に向けて排出する冷却ファンと、前記水槽内の水をフィルタにより濾過した後前記熱交換器の放熱管へ流通させる水ポンプと、前記熱交換器により冷却された水を前記水槽の水面に向けて散水する散水管とを具備したことを特徴とする鑑賞魚用水槽の冷却装置。   A cooling device for an aquarium for aquarium that cools water in an aquarium for breeding appreciation fish, a body that can be attached to the upper part of the aquarium by a body attachment means, and a radiator pipe provided in a case of the body And a heat exchanger composed of radiating fins, and installed in the vicinity of the heat exchanger, and air is circulated through the heat exchanger, and the air that has cooled the heat exchanger is directed toward the water surface of the water tank. A cooling fan to be discharged, a water pump that filters water in the water tank through a filter and then circulates to the heat radiating pipe of the heat exchanger, and water that is cooled by the heat exchanger is sprayed toward the water surface of the water tank. A cooling device for an aquarium fish tank comprising a watering pipe. 前記散水管より前記水槽の水面に向けて散水される水滴に向けて、前記熱交換器を冷却した空気を排出してなる請求項1に記載の鑑賞魚用水槽の冷却装置。   The cooling device for an aquarium fish tank according to claim 1, wherein the air that has cooled the heat exchanger is discharged toward water droplets sprayed from the water spray pipe toward the water surface of the water tank. 前記本体取り付け手段を、前記水槽の上部を把持する把持部と、前記把持部と前記ケースの間を連結するフレキシブル管とから形成してなる請求項1または2に記載の鑑賞魚用水槽の冷却装置。
The cooling of the fish tank for appreciation fish according to claim 1 or 2, wherein the main body attaching means is formed of a grip part for gripping an upper part of the water tank and a flexible tube connecting the grip part and the case. apparatus.
JP2005021103A 2005-01-28 2005-01-28 Fish tank cooling device Expired - Fee Related JP4330010B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
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CN112040768A (en) * 2019-03-11 2020-12-04 伊莱克坤有限公司 Fish tank water temperature adjusting method and device based on direct heat exchange

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CN103548761A (en) * 2013-10-31 2014-02-05 无锡同春新能源科技有限公司 Cooling device for spraying cold water into lobster culture trench applying chilled water made by solar energy
KR102005068B1 (en) * 2015-03-27 2019-07-30 주식회사 휴엔 1,2-Naphthoquinone-based Derivatives and Methods for Preparing them

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112040768A (en) * 2019-03-11 2020-12-04 伊莱克坤有限公司 Fish tank water temperature adjusting method and device based on direct heat exchange
CN112040768B (en) * 2019-03-11 2023-06-30 伊莱克坤有限公司 Fish tank water temperature adjusting method and device based on direct heat exchange

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