JP2005098606A - Air conditioner - Google Patents

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JP2005098606A
JP2005098606A JP2003333030A JP2003333030A JP2005098606A JP 2005098606 A JP2005098606 A JP 2005098606A JP 2003333030 A JP2003333030 A JP 2003333030A JP 2003333030 A JP2003333030 A JP 2003333030A JP 2005098606 A JP2005098606 A JP 2005098606A
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drain
air conditioner
water
drain water
conditioner according
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JP4111113B2 (en
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Masahiko Takagi
昌彦 高木
Atsushi Edayoshi
敦史 枝吉
Takuya Furuhashi
拓也 古橋
Yoji Fujita
洋司 藤田
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F2013/228Treatment of condensate, e.g. sterilising

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  • Water Treatment By Electricity Or Magnetism (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide an air conditioner capable of inhibiting the propagation of bacteria in drain water in a drain pan, and preventing the clogging of a drain pump and drainage path. <P>SOLUTION: This air conditioner comprises an indoor-side heat exchanger for conditioning the indoor air, the drain pan mounted on a bottom part of the indoor-side heat exchanger and receiving the drain water from the heat exchanger, a drain pump mounted on a specific position from the bottom part of the drain pan for pumping out the drain water, and a sterilizing device mounted at a height approximately same as a height of a suction port of the drain pump for sterilizing the bacteria in the drain water by metallic ion. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

この発明は室内空気を空調した時に発生するドレン水の雑菌を金属イオン滅菌する空気調和機に関するものである。   The present invention relates to an air conditioner for sterilizing metal ions of drainage bacteria generated when air is conditioned in room air.

従来の空気調和機は減菌装置を具備していなかった。
しかし、給水タンクまたは水槽内に銀または銅、あるいは銀合金等の電極を設け、該電極に電流を流し、電極の金属をイオン化させ、銀イオン等の殺菌作用により、水中に繁殖する雑菌を殺菌するものはあった(例えば、特許文献1参照)。
また、ノズルと水槽とをつなぐ水の供給管路内に金属溶出装置を設置し、その管路内を流動する水に金属イオンを溶出し、ノズルへ供給すべき水中の雑菌を除去するものはあった(例えば、特許文献1参照)。
Conventional air conditioners have not been equipped with a sterilizer.
However, an electrode such as silver, copper, or a silver alloy is provided in a water supply tank or a water tank, current is passed through the electrode, the electrode metal is ionized, and germs that propagate in water are sterilized by sterilizing action such as silver ions. There was something to do (see, for example, Patent Document 1).
In addition, a metal elution device is installed in the water supply pipe connecting the nozzle and the water tank, and metal ions are eluted into the water flowing in the pipe to remove various germs in the water to be supplied to the nozzle. (For example, see Patent Document 1).

実開昭57-87227号公報(第1−5頁、第2図参照)Japanese Utility Model Publication No. 57-87227 (see page 1-5, Fig. 2) 特開平11-1679751号公報(第2−5頁、第3図参照)。Japanese Patent Laid-Open No. 11-1679751 (see page 2-5, FIG. 3).

従来の空気調和機においては、室内空気を空調する室内側熱交換器から滴下するドレン水を受けるドレンパンにドレン水の雑菌を金属イオン滅菌する滅菌装置を具備しておらず、しかも、ドレンポンプが運転されている時でも、ドレン水はドレンポンプの吸込口よりも下に溜まり、また、ドレンポンプが停止された時には、ドレンポンプ内のドレン水がドレンパンに戻ってくるため、より多く溜まるので、雑菌が繁殖しやすく、この雑菌の繁殖によりドレン水がヘドロ又はゼリー状となつてドレンポンプを詰まらせたり、或いはそのドレン排水通路を詰まらせたりして、排出不良を引き起す原因となっていた。   In the conventional air conditioner, the drain pan that receives the drain water dripped from the indoor heat exchanger that air-conditions the indoor air is not equipped with a sterilizer that sterilizes the drain water germs with metal ions, and the drain pump Even during operation, the drain water is stored below the suction port of the drain pump, and when the drain pump is stopped, the drain water in the drain pump returns to the drain pan, so it accumulates more. It was easy for bacteria to propagate, which caused the drainage water to become sludge or jelly, clogging the drain pump, or clogging the drainage drainage path, causing poor discharge. .

この発明は、上記のような課題を解決するためになされたもので、第1の目的は、ドレンパン内のドレン水の雑菌繁殖を抑制して、ドレン水がヘドロ状やゼリー状になるのを防いで、ドレンポンプやその排水通路の詰まりを防止した空気調和機を得ることを目的としたものである。   The present invention has been made to solve the above-mentioned problems. The first object is to suppress the proliferation of drain water in the drain pan, so that the drain water becomes sludge-like or jelly-like. The purpose is to obtain an air conditioner that prevents the drain pump and its drainage passage from being clogged.

この発明に係る空気調和機においては、室内空気を空調する室内側熱交換器と、この室内側熱交換器の底部に設けられ、当該熱交換器からのドレン水を受けるドレンパンと、このドレンパンの底部から所定の位置に設けられ、前記ドレン水を排水するドレンポンプと、このドレンポンプの吸込口の高さにほぼ配置され、前記ドレン水の雑菌を金属イオン滅菌する滅菌装置と、を備えたものである。   In the air conditioner according to the present invention, an indoor heat exchanger that air-conditions indoor air, a drain pan that is provided at the bottom of the indoor heat exchanger, receives drain water from the heat exchanger, and the drain pan A drain pump that is provided at a predetermined position from the bottom and drains the drain water, and a sterilization device that is disposed substantially at the height of the suction port of the drain pump and sterilizes the drain water with bacteria by metal ions. Is.

また、前記滅菌装置が陽極としての銀電極と陰極としての金属電極とのを所定の間隔で具備し、当該電極間に所定の電位を印加して前記ドレン水の電極間雑菌を滅菌するものである。   Further, the sterilizer comprises a silver electrode as an anode and a metal electrode as a cathode at a predetermined interval, and applies a predetermined potential between the electrodes to sterilize germs between the drain water electrodes. is there.

また、前記銀電極及び前記金属電極が一隅を三壁面で囲う形状からなるものである。   Further, the silver electrode and the metal electrode have a shape in which one corner is surrounded by three wall surfaces.

また、プラスチク等の非電気伝導材料からなるスペーサが、前記電極間に設けられ、前記所定の間隔を維持するものである。   In addition, a spacer made of a non-electrically conductive material such as plastic is provided between the electrodes, and maintains the predetermined interval.

また、前記スペーサが、前記ドレンパンのドレン水に浸水しないように前記三面のいずれかの面を前記ドレンパンの底面に設置した時、その底面に設置した面以外の壁面の頂部に配置されたものである。   Further, when any one of the three surfaces is installed on the bottom surface of the drain pan so as not to be submerged in the drain water of the drain pan, the spacer is disposed on the top of the wall surface other than the surface installed on the bottom surface. is there.

また、前記金属電極が、その表面に耐水性処理が施された金属又はステンレス等の耐水性合金からなるものである。   The metal electrode is made of a water-resistant alloy such as a metal or stainless steel whose surface is subjected to a water-resistant treatment.

また、前記ドレンパンがプラスチク材等の非電気伝導材料からなり、前記電極との間で電位が生じないように構成されたものである。   Further, the drain pan is made of a non-electrically conductive material such as a plastic material, and is configured so as not to generate a potential with the electrode.

また、制御手段が、前記ドレンポンプの動作信号に基づいて前記滅菌装置を駆動するものである。   Moreover, a control means drives the said sterilizer based on the operation signal of the said drain pump.

前記制御手段が、前記ドレンポンプの運転開始信号に基づいて前記滅菌装置を駆動するものである。   The said control means drives the said sterilizer based on the operation start signal of the said drain pump.

また、前記制御手段が、前記ドレンポンプの駆動停止信号に基づいて前記滅菌装置を駆動するものである。   Further, the control means drives the sterilizer based on a drive stop signal of the drain pump.

また、前記制御手段が、前記ドレン水の銀イオン濃度が3PPM以上を維持するように前記滅菌装置を前記ドレンパン内のドレン水量に応じて所定時間駆動するものである。   Moreover, the said control means drives the said sterilizer for the predetermined time according to the amount of drain water in the said drain pan so that the silver ion concentration of the said drain water may maintain 3PPM or more.

この発明の空気調和機は、室内空気を空調する室内側熱交換器と、この室内側熱交換器の底部に設けられ、当該熱交換器からのドレン水を受けるドレンパンと、このドレンパンの底部から所定の位置に設けられ、前記ドレン水を排水するドレンポンプと、このドレンポンプの吸込口の高さにほぼ配置され、前記ドレン水の雑菌を金属イオン滅菌する滅菌装置と、を備えたので、ドレンパン内のドレン水の雑菌繁殖を抑制して、ドレン水がヘドロ状やゼリー状になるのを防いで、ドレンポンプやその排水通路の詰まりを防止するため、信頼性の高い空気調和機が得られる。   The air conditioner of the present invention includes an indoor heat exchanger that air-conditions indoor air, a drain pan that is provided at the bottom of the indoor heat exchanger and receives drain water from the heat exchanger, and a bottom of the drain pan. Since the drain pump is provided at a predetermined position and drains the drain water, and is disposed substantially at the height of the suction port of the drain pump, and a sterilization apparatus for sterilizing the drain water bacteria with metal ions, A highly reliable air conditioner is obtained in order to prevent the drain water from becoming sludge and jelly by suppressing the proliferation of drain water in the drain pan, and to prevent the drain pump and its drainage passage from becoming clogged. It is done.

また、前記滅菌装置が陽極としての銀電極と陰極としての金属電極とのを所定の間隔で具備し、当該電極間に所定の電位を印加して前記ドレン水の電極間雑菌を滅菌するので、電極間ドレン水の雑菌を効率良く抑制するため、滅菌効果の高い空気調和機が得られる。   Further, the sterilization apparatus comprises a silver electrode as an anode and a metal electrode as a cathode at a predetermined interval, and applies a predetermined potential between the electrodes to sterilize bacteria between the drain water electrodes. An air conditioner having a high sterilization effect can be obtained in order to efficiently suppress germs of the drain water between the electrodes.

また、前記銀電極及び前記金属電極が一隅を三壁面で囲う形状からなるので、電極板の強度が向上するため、信頼性の高い空気調和機が得られる。   Further, since the silver electrode and the metal electrode have a shape in which one corner is surrounded by three wall surfaces, the strength of the electrode plate is improved, so that a highly reliable air conditioner is obtained.

また、プラスチク等の非電気伝導材料からなるスペーサが、前記電極間に設けられ、前記所定の間隔を維持するので、電極から雑菌を滅菌する金属イオンが効率良く安定的に放出されるため、滅菌効率の良い空気調和機が得られる。   In addition, since a spacer made of a non-electrically conductive material such as plastic is provided between the electrodes and maintains the predetermined interval, metal ions for sterilizing germs are efficiently and stably released from the electrodes. An efficient air conditioner can be obtained.

また、前記スペーサが、前記ドレンパンのドレン水に浸水しないように、前記三面のいずれかの面を前記ドレンパンの底面に設置した時、その底面に設置した面以外の壁面の頂部に配置されたので、雑菌を滅菌する金属イオンがスペーサに付着して発生する電極間の短絡を防止するようになるため、故障トラブルの少ない空気調和機が得られる。   In addition, when any one of the three surfaces is installed on the bottom surface of the drain pan so that the spacer is not immersed in the drain water of the drain pan, the spacer is disposed on the top of the wall surface other than the surface installed on the bottom surface. Since the metal ions for sterilizing various bacteria adhere to the spacer to prevent the short circuit between the electrodes, an air conditioner with few troubles can be obtained.

また、前記金属電極が、その表面に耐水性処理が施された金属又はステンレス等の耐水性合金からなるので、金属電極の腐食が抑制されるため、寿命の長い空気調和機が得られる。   In addition, since the metal electrode is made of a metal or a water-resistant alloy such as stainless steel whose surface is subjected to water resistance treatment, corrosion of the metal electrode is suppressed, so that an air conditioner having a long life can be obtained.

また、前記ドレンパンがプラスチク材等の非電気伝導材料からなり、前記電極との間で電位が生じないように構成されたので、ドレンパンを介して漏電しなくなるため、信頼性の高い空気調和機が得られる。   In addition, since the drain pan is made of a non-electrically conductive material such as a plastic material and is configured so as not to generate a potential between the electrode and the electrode, there is no leakage through the drain pan. can get.

また、制御手段が、前記ドレンポンプの動作信号に基づいて前記滅菌装置を駆動するので、ドレンパンのドレン水位に応じて雑菌の滅菌を行うようになるため、ドレン水を効果的に滅菌する空気調和機が得られる。   In addition, since the control means drives the sterilization device based on the operation signal of the drain pump, sterilization of germs is performed according to the drain water level of the drain pan. Therefore, the air conditioner effectively sterilizes the drain water. A machine is obtained.

前記制御手段が、前記ドレンポンプの運転開始信号に基づいて前記滅菌装置を駆動するので、ドレン水の流動時に滅菌するようになるため、ドレン水を効果的に滅菌する空気調和機が得られる。   Since the control means drives the sterilizer based on the operation start signal of the drain pump, sterilization is performed when the drain water flows, so that an air conditioner that effectively sterilizes the drain water is obtained.

また、前記制御手段が、前記ドレンポンプの駆動停止信号に基づいて前記滅菌装置を駆動するので、雑菌が繁殖しやすいドレン水の停滞時に滅菌するようになるため、効率良く滅菌する空気調和機が得られる。   In addition, since the control means drives the sterilization device based on the drive stop signal of the drain pump, the sterilization device is sterilized when stagnation of drain water in which miscellaneous bacteria are likely to propagate. can get.

また、前記制御手段が、前記ドレン水の銀イオン濃度が3PPM以上を維持するように前記滅菌装置を前記ドレンパン内のドレン水量に応じて所定時間駆動するので、効率良く滅菌する経済的な空気調和機が得られる。   In addition, since the control means drives the sterilization apparatus for a predetermined time according to the amount of drain water in the drain pan so that the silver ion concentration of the drain water is maintained at 3 PPM or more, economical air conditioning for efficient sterilization A machine is obtained.

実施の形態1
この実施の形態1について図1から図3を用いて説明する。なお、図1は本発明の実施の形態1における空気調和機の概略構成図、図2は実施の形態1における減菌装置の概略構成図、図3は実施の形態1における1隅を3面で囲う減菌装置の構造図である。図において、1は空調機の室内ユニットに設けられ、室内空気を空調する室内熱交換器、2はこの室内熱交換器1から滴下するドレン水、3は室内熱交換器1の低部に設けられ、ドレン水を貯留するドレンパン、4はこのドレンパン3の底部から所定の位置に設けられ、ドレン水1を排水するドレンポンプ、4aこのドレンポンプ4のドレン水2を吸込む吸込口、5はドレンポンプ4からのドレン水2を空調機ユニット外に排出する排水経路である
Embodiment 1
The first embodiment will be described with reference to FIGS. 1 is a schematic configuration diagram of an air conditioner according to Embodiment 1 of the present invention, FIG. 2 is a schematic configuration diagram of a sterilization apparatus according to Embodiment 1, and FIG. It is a block diagram of the sterilization apparatus enclosed with. In the figure, 1 is provided in an indoor unit of an air conditioner, an indoor heat exchanger that air-conditions indoor air, 2 is drain water dripped from the indoor heat exchanger 1, and 3 is provided in a lower portion of the indoor heat exchanger 1. Drain pan 4 for storing drain water, 4 is provided at a predetermined position from the bottom of drain pan 3, drain pump for draining drain water 1, 4a Suction port for sucking drain water 2 of this drain pump 4, 5 for drain This is a drainage path for draining drain water 2 from the pump 4 to the outside of the air conditioner unit.

また、6はドレンポンプ4の吸込口下部のドレンパン3内に設けられ、ドレン水2の雑菌を金属イオン滅菌する減菌装置、6aはこの減菌装置6の銀又はニッケル等を溶出する陽極板、6bはこの陽極板6aに所定間隔で対向配置された陰極板、7はこの陰極板6bと陽極板6aとの間に設けられ、電極間距離を維持するスペーサ、8は陽極板6aと陰極板6bとの間に所定電圧を印加する電源、9はこの電源8のオン・オフをドレンポンプ4の動作に応じて制御する制御装置である。   6 is a sterilization device provided in the drain pan 3 below the suction port of the drain pump 4 and sterilizes the bacteria of the drain water 2 with metal ions. 6a is an anode plate for eluting silver or nickel of the sterilization device 6. , 6b is a cathode plate disposed opposite to the anode plate 6a at a predetermined interval, 7 is a spacer provided between the cathode plate 6b and the anode plate 6a, and maintains a distance between the electrodes, and 8 is a cathode plate and the anode plate 6a. A power source 9 applies a predetermined voltage to the plate 6 b, and 9 is a control device that controls on / off of the power source 8 according to the operation of the drain pump 4.

次に、このように構成された動作について説明する。
まず、空調機の室内ユニットが運転され、その冷却器として機能する室内熱交換器1が室内空気を冷却すると、空気中の水分がドレン水2となって室内熱交換器1の表面に結露し、やがては、室内熱交換器1からその下に配置されたドレンパン3へ落下する。
Next, the operation thus configured will be described.
First, when the indoor unit of the air conditioner is operated and the indoor heat exchanger 1 that functions as a cooler cools the indoor air, moisture in the air becomes drain water 2 and is condensed on the surface of the indoor heat exchanger 1. Eventually, it falls from the indoor heat exchanger 1 to the drain pan 3 disposed below it.

その結果、ドレン水2が徐々にドレンパン3に溜まってゆき、ドレンポンプ4の吸込口4aから所定の水位まで溜まると、それを水位センサ(図示せず)が検知するので、ドレンポンプ4が運転を開始してドレンパン3のドレン水を排水経路5から外部に排出するため、ドレン水2の水位はほぼドレンポンプ4の吸込口4aまで下げるようになる。   As a result, the drain water 2 gradually accumulates in the drain pan 3, and when it accumulates from the suction port 4a of the drain pump 4 to a predetermined water level, this is detected by a water level sensor (not shown), so that the drain pump 4 operates. Since the drain water of the drain pan 3 is discharged from the drainage path 5 to the outside, the water level of the drain water 2 is substantially lowered to the suction port 4a of the drain pump 4.

次に、このドレンポンプ4の動作によりドレン水位がドレンポンプ吸込口4aよりも低下すると、これを水位センサが察知してドレンポンプ4を停止するので、排水経路5から排水されようとしていたドレン水2がドレンパン3内に戻るため、ドレン水位は図1の如く上昇し、かつ、空調運転が行われている限り、室内熱交換器1からのドレン水はドレンパン3に滴下して溜まってゆくので、再び所定のドレン水位に達すると、再びドレンポンプ4が駆動され、前述の動作の繰返しとなる。   Next, when the drain water level is lower than the drain pump suction port 4a due to the operation of the drain pump 4, the water level sensor detects this and stops the drain pump 4. Therefore, the drain water that is about to be drained from the drainage path 5 Since 2 returns to the drain pan 3, the drain water level rises as shown in FIG. 1, and the drain water from the indoor heat exchanger 1 drops and accumulates in the drain pan 3 as long as the air-conditioning operation is performed. When the predetermined drain water level is reached again, the drain pump 4 is driven again, and the above operation is repeated.

なお、水位センサが無い時は、ドレンポンプ4は空調機の冷房運転信号や除湿運転信号に基づいて動き、冷房停止信号や除湿停止信号に基づいて停止させることになるものの、ドレン水位はドレンポンプ4の運転に応じてほぼ前述したと同じ水位変化となる。   When there is no water level sensor, the drain pump 4 moves based on the cooling operation signal or the dehumidification operation signal of the air conditioner and is stopped based on the cooling stop signal or the dehumidification stop signal. According to the operation of No. 4, the water level changes almost as described above.

一方、このようなドレン水の水位変動において、言い換えれば、ドレンポンプ4の運転・停止による水位の変動状態において、ドレン水2内の雑菌は増えてゆくため、ドレン水2はヘドロ状又はゼリー状となり、流動状態を低下させ、流れ難くなるため、制御装置9は予め設定された図8から図10のような運転スケジュールに基づいて減菌装置6を駆動させ、雑菌の繁殖を抑制して流れ易くする。
即ち、制御装置9は減菌装置6の陽極6aと陰極6bとの間に所定の電圧を印加して、電導体として機能するドレン水2を介して両極板間に電流を流し、その陽極6aから雑菌を殺す銀イオン等の金属イオンを溶出して、ドレン水2内の雑菌繁殖による流動低下を抑制しながらドレン水2を排水通路5からスムースに排水できるようする。
On the other hand, in such a fluctuation of the drain water level, in other words, in the fluctuation level of the water level due to the operation / stop of the drain pump 4, the number of germs in the drain water 2 increases. Therefore, the control device 9 drives the sterilization device 6 on the basis of a preset operation schedule as shown in FIGS. 8 to 10 to suppress the propagation of various germs. Make it easier.
That is, the control device 9 applies a predetermined voltage between the anode 6a and the cathode 6b of the sterilization device 6 and causes a current to flow between the bipolar plates via the drain water 2 functioning as a conductor, and the anode 6a. The metal ions such as silver ions that kill germs are eluted from the drainage water so that the drainage water 2 can be smoothly drained from the drainage passage 5 while suppressing a decrease in flow due to the propagation of germs in the drainwater 2.

なお、この時の陽極6aと陰極6bの互いの電極間距離は電極の材質、表面積、減菌に必要な金属イオンの溶出量等から予め計算して求めておき、この求められた電極間距離を維持した状態で、互いの電極が対向していれば、所定の電流が流れ、雑菌の繁殖を抑制するので、問題は生じないものの、しかし、両極間距離が異なると、減菌効果が低下したり、或いは、電極間同士が接触すると、各種の故障トラブルを引き起すため、両電極間の距離を確実に維持する必要がある。   The distance between the electrodes of the anode 6a and the cathode 6b at this time is calculated in advance from the electrode material, surface area, elution amount of metal ions necessary for sterilization, and the obtained distance between the electrodes. If the electrodes are facing each other in a state that is maintained, a predetermined current flows and suppresses the propagation of germs, so there is no problem, but if the distance between the two poles is different, the sterilization effect decreases If the electrodes are in contact with each other, various troubles are caused, so that it is necessary to reliably maintain the distance between the electrodes.

従って、図3に示すように、陽極6aと陰極6bのそれぞれ構造を、1隅を3面で囲うような形状にして、この電極間にプラスチック等の非電気伝導材料からなるスペーサ7を挿入し、各電極の強度を向上させながら所定の間隔を確実に維持できるような構造にすると、陽極6aから雑菌の繁殖を抑制する金属イオンを安定的に溶出する最適な電極構造が得られることになる。   Therefore, as shown in FIG. 3, the structure of each of the anode 6a and the cathode 6b is formed so that one corner is surrounded by three surfaces, and a spacer 7 made of a non-electrically conductive material such as plastic is inserted between the electrodes. If the structure is such that the predetermined interval can be reliably maintained while improving the strength of each electrode, an optimal electrode structure that stably elutes metal ions that suppress the propagation of germs from the anode 6a can be obtained. .

また、この時、スペーサ7がドレン水2内に浸かると、溶出した銀イオン等の金属イオンが付着して陽極6aと陰極6bを短絡させるため、図4に示すように、スペーサ7をドレン水2に浸水しないように配置する。
即ち、例えば、前述の1隅を3面で囲うような構造においては、その三面のいずれかの面をドレンパン3の底面に設置した時、その設置した面以外の壁面頂部にスペーサ7を配置するようにする。言い換えれば、スペーサ7を電極間の頂部に配置してドレン水2に浸水しないようにする。
At this time, if the spacer 7 is immersed in the drain water 2, the eluted metal ions such as silver ions adhere to short-circuit the anode 6 a and the cathode 6 b, so that the spacer 7 is drained as shown in FIG. 4. 2 so as not to be submerged.
That is, for example, in the structure in which one corner is surrounded by three surfaces, when any one of the three surfaces is installed on the bottom surface of the drain pan 3, the spacer 7 is disposed on the top of the wall surface other than the installed surface. Like that. In other words, the spacer 7 is arranged at the top between the electrodes so as not to be immersed in the drain water 2.

なお、スペーサ7を電極間に固定する時は、接着材で固定しても良いが、金属ネジで図3、4の如く電極へ固定するような構造にすると、この金属ネジを利用して電源配線の端子が接続できるようになるため、電極間距離を維持しながら電源を接続できる経済的な構造が得られる。
但し、この固定ネジによって電極間同志が繋がらないように図3、4の如く電極板に切り欠きを設ける必要がある。
When the spacer 7 is fixed between the electrodes, it may be fixed with an adhesive. However, if the metal screw is used to fix the spacer 7 to the electrode as shown in FIGS. Since the wiring terminals can be connected, an economical structure can be obtained in which the power source can be connected while maintaining the distance between the electrodes.
However, it is necessary to provide a notch in the electrode plate as shown in FIGS. 3 and 4 so that the electrodes are not connected by the fixing screw.

また、これらの構造においては、ドレンパン3と電極6a,6bとの間に電流が流れないように、ドレンパン3をプラスチク等の非伝導材料で製作する必要がある。   In these structures, the drain pan 3 must be made of a non-conductive material such as plastic so that no current flows between the drain pan 3 and the electrodes 6a and 6b.

また、陰極の金属電極として、その表面に耐水性処理を施した金属、又はステンレスやアルミニウム等の耐水性の高い金属を用いると、錆びの発生によるドレンポンプ4の詰まりや電極短絡による不具合も防止できる。   In addition, when a metal having a water-resistant treatment on its surface or a metal having high water resistance such as stainless steel or aluminum is used as the cathode metal electrode, it is possible to prevent problems caused by clogging of the drain pump 4 due to rusting or short-circuiting of the electrode. it can.

次に、前述の制御装置9の動作について詳述する。まず、ドレン水の雑菌繁殖を抑制する銀イオン等の金属イオン濃度は、図6の如くある濃度N(3ppm)以上になると、滅菌効果がほぼ一定となり、また、その金属イオン濃度以上にするための滅菌電圧印加時間は、図7の如くドレンパン3内のドレン水2の量で異なるものの、ドレンパン3内のドレン水位におけるドレン水量が決まれば、電圧印加時間、即ち滅菌装置6の駆動時間は、図7から求めることができるので、この求めた駆動時間に基づいてドレンポンプ4の運転開始から、その時間だけ滅菌装置6を運転し、その後の新ドレン水の供給量を想定して停止時間や運転時間を決めれば良いことになる。   Next, the operation of the control device 9 will be described in detail. First, when the concentration of metal ions such as silver ions that suppress the proliferation of bacteria in the drain water is above a certain concentration N (3 ppm) as shown in FIG. 6, the sterilization effect becomes almost constant, and the concentration is higher than that metal ion concentration. Although the sterilization voltage application time differs depending on the amount of drain water 2 in the drain pan 3 as shown in FIG. 7, if the drain water amount at the drain water level in the drain pan 3 is determined, the voltage application time, that is, the driving time of the sterilizer 6 is Since it can be obtained from FIG. 7, from the start of the operation of the drain pump 4 based on the obtained drive time, the sterilizer 6 is operated for that time, and the stop time and Decide the driving time.

また、ドレン水内の雑菌の繁殖は、ドレン水が停止している時、即ち、ドレンポンプ4が停止している時の方が、室内熱交換器1が冷却器として作用していないため、ドレン水温度及びドレンパン3付近の温度が高くなり、しかも、停滞しているため、雑菌の繁殖力は約100倍から約1000倍高くなり、更に、溶出銀イオンは減菌装置6によっドレン水2と共に外部へ排出されなくなるため、ドレンポンプ4の運転信号ではなく、ドレンポンプ4の停止信号に基づいて滅菌装置6を前述の図7から求めた時間だけ運転するようにすると、短い駆時間で効果的に滅菌することができる。
即ち、一見、ドレンポンプ4が運転され、ドレン水が動いている方が滅菌装置6を通過する量が多くなるために、良さそうに思えるものの、しかし、滅菌イオンのドレン水への拡散率が非常に大きいため、ドレン水の流動有無についての滅菌差異は余り生じないこととなる。
Further, the propagation of germs in the drain water is because the indoor heat exchanger 1 does not act as a cooler when the drain water is stopped, that is, when the drain pump 4 is stopped. Since the drain water temperature and the temperature in the vicinity of the drain pan 3 are high and stagnant, the reproductive power of various bacteria increases from about 100 times to about 1000 times, and the eluted silver ions are drained by the sterilizer 6 by the drain water. When the sterilizer 6 is operated only for the time determined from FIG. 7 based on the stop signal of the drain pump 4 instead of the operation signal of the drain pump 4, it is possible to shorten the driving time. It can be sterilized effectively.
That is, at first glance, the drain pump 4 is operated and the drain water is moving, so that the amount passing through the sterilizer 6 increases. However, the diffusivity of sterilized ions into the drain water is high. Since it is very large, there is not much difference in sterilization regarding whether or not drain water flows.

以上の説明においては、金属イオン濃度が3ppm以上となるように滅菌装置6を運転開始又は駆動停止信号に基づいて所定時間駆動させるようにしたが、制御を簡単にするために、ドレンポンプ4の運転時のみ滅菌装置6を駆動させたり、ドレンポンプ4の停止時のみに滅菌装置6を駆動させたりするようにしても、図8から図10に示すように、ドレンポンプ4の運転・停止時間よりも滅菌装置6の駆動時間の方が短くても充分滅菌できるため、何ら問題はない。   In the above description, the sterilizer 6 is driven for a predetermined time based on the operation start or drive stop signal so that the metal ion concentration becomes 3 ppm or more. However, in order to simplify the control, Even if the sterilizer 6 is driven only during operation or the sterilizer 6 is driven only when the drain pump 4 is stopped, the operation / stop time of the drain pump 4 as shown in FIGS. Since the sterilization apparatus 6 can be sufficiently sterilized even if the driving time of the sterilizer 6 is shorter than that, there is no problem.

本発明の実施の形態1における空気調和機の概略構成図である。It is a schematic block diagram of the air conditioner in Embodiment 1 of this invention. 本発明の実施の形態1における減菌装置の概略構成図である。It is a schematic block diagram of the sterilization apparatus in Embodiment 1 of this invention. 本発明の実施の形態1における1隅を3面で囲う減菌装置の構造図である。It is a block diagram of the sterilizer which surrounds one corner in Embodiment 1 of this invention with three surfaces. 本発明の実施の形態1における減菌装置の各部品とドレン水の水位との位置関係を示した図である。It is the figure which showed the positional relationship of each component of the sterilizer in Embodiment 1 of this invention, and the water level of drain water. 本発明の実施の形態1における空気調和機の制御ブロック図である。It is a control block diagram of the air conditioner in Embodiment 1 of this invention. 本発明の実施の形態1における銀イオン濃度と減菌効果の関係を示した図である。It is the figure which showed the relationship between the silver ion concentration and the sterilization effect in Embodiment 1 of this invention. 本発明の実施の形態1における減菌銀イオン濃度以上にする電圧印加時間とドレン水量との関係を示した図である。It is the figure which showed the relationship between the voltage application time made more than the sterilization silver ion density | concentration in Embodiment 1 of this invention, and the amount of drain water. 本発明の実施の形態1における減菌装置の制御図である。It is a control diagram of the sterilizer in Embodiment 1 of the present invention. 本発明の実施の形態1における減菌装置のその他の制御図である。It is the other control figure of the sterilizer in Embodiment 1 of this invention. 本発明の実施の形態1における減菌装置のその他の制御図である。It is the other control figure of the sterilizer in Embodiment 1 of this invention.

符号の説明Explanation of symbols

1 室内熱交換器、 2 ドレン水、 3 ドレンパン、 4 ドレンポンプ、 5 排水経路、 6 減菌装置、 6a 陽極、 6b 陰極、
7 スペーサ、 8 電源、 9 制御装置。
1 indoor heat exchanger, 2 drain water, 3 drain pan, 4 drain pump, 5 drainage channel, 6 sterilizer, 6a anode, 6b cathode,
7 Spacer, 8 Power supply, 9 Control device.

Claims (11)

室内空気を空調する室内側熱交換器と、この室内側熱交換器の底部に設けられ、当該熱交換器からのドレン水を受けるドレンパンと、このドレンパンの底部から所定の位置に設けられ、前記ドレン水を排水するドレンポンプと、このドレンポンプの吸込口の高さにほぼ配置され、前記ドレン水の雑菌を金属イオン滅菌する滅菌装置と、を備えたことを特徴とする空気調和機。 A room-side heat exchanger that air-conditions the room air, a drain pan that is provided at the bottom of the room-side heat exchanger, receives drain water from the heat exchanger, and is provided at a predetermined position from the bottom of the drain pan, An air conditioner comprising: a drain pump that drains drain water; and a sterilization device that is disposed substantially at the height of a suction port of the drain pump and sterilizes metal ions in the drain water. 前記滅菌装置が陽極としての銀電極と陰極としての金属電極とのを所定の間隔で具備し、当該電極間に所定の電位を印加して前記ドレン水の電極間雑菌を滅菌することを特徴とする請求項1に記載の空気調和機。 The sterilization apparatus comprises a silver electrode as an anode and a metal electrode as a cathode at a predetermined interval, and applies a predetermined potential between the electrodes to sterilize the germs between the drain water electrodes. The air conditioner according to claim 1. 前記銀電極及び前記金属電極が一隅を三壁面で囲う形状からなることを特徴とする請求項2に記載の空気調和機。 The air conditioner according to claim 2, wherein the silver electrode and the metal electrode have a shape in which one corner is surrounded by three wall surfaces. プラスチク等の非電気伝導材料からなるスペーサが、前記電極間に設けられ、前記所定の間隔を維持することを特徴とする請求項2又は3に記載の空気調和機。 The air conditioner according to claim 2 or 3, wherein a spacer made of a non-electrically conductive material such as plastic is provided between the electrodes to maintain the predetermined distance. 前記スペーサが、前記ドレンパンのドレン水に浸水しないように前記三面のいずれかの面を前記ドレンパンの底面に設置した時、その底面に設置した面以外の壁面頂部に配置されたことを特徴とする請求項4に記載の空気調和機。 When any one of the three surfaces is installed on the bottom surface of the drain pan so that the spacer is not immersed in the drain water of the drain pan, the spacer is disposed on the top of the wall surface other than the surface installed on the bottom surface. The air conditioner according to claim 4. 前記金属電極が、その表面に耐水性処理が施された金属又はステンレス等の耐水性合金からなることを特徴とする請求項2から5までのいずれかに記載の空気調和機。 The air conditioner according to any one of claims 2 to 5, wherein the metal electrode is made of a metal having a water-resistant treatment applied to a surface thereof or a water-resistant alloy such as stainless steel. 前記ドレンパンがプラスチク材等の非電気伝導材料からなり、前記電極との間で電位が生じないように構成されたことを特徴とする請求項1から6までのいずれかに記載の空気調和機。 The air conditioner according to any one of claims 1 to 6, wherein the drain pan is made of a non-electrically conductive material such as a plastic material, and is configured not to generate a potential between the drain pan and the electrode. 制御手段が、前記ドレンポンプの動作信号に基づいて前記滅菌装置を駆動することを特徴とする請求項1から5までのいずれかに記載の空気調和機。 The air conditioner according to any one of claims 1 to 5, wherein the control means drives the sterilizer based on an operation signal of the drain pump. 前記制御手段が、前記ドレンポンプの運転開始信号に基づいて前記滅菌装置を駆動することを特徴とする請求項8に記載の空気調和機。 The air conditioner according to claim 8, wherein the control means drives the sterilizer based on an operation start signal of the drain pump. 前記制御手段が、前記ドレンポンプの駆動停止信号に基づいて前記滅菌装置を駆動することを特徴とする請求項8に記載の空気調和機。 The air conditioner according to claim 8, wherein the control means drives the sterilizer based on a drive stop signal of the drain pump. 前記制御手段が、前記ドレン水の銀イオン濃度が3PPM以上を維持するように前記滅菌装置を前記ドレンパン内のドレン水量に応じて所定時間駆動することを特徴とする請求項9又は10のいずれかに記載の空気調和機。 The said control means drives the said sterilizer for a predetermined time according to the amount of drain water in the said drain pan so that the silver ion concentration of the said drain water may maintain 3PPM or more, Either of Claim 9 or 10 characterized by the above-mentioned. Air conditioner as described in.
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