JP2009145025A - Air conditioner - Google Patents

Air conditioner Download PDF

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JP2009145025A
JP2009145025A JP2007325686A JP2007325686A JP2009145025A JP 2009145025 A JP2009145025 A JP 2009145025A JP 2007325686 A JP2007325686 A JP 2007325686A JP 2007325686 A JP2007325686 A JP 2007325686A JP 2009145025 A JP2009145025 A JP 2009145025A
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circulation passage
air conditioner
air
grill
heat exchanger
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JP5057958B2 (en
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Yoshinobu Hori
好伸 堀
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Rinnai Corp
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Rinnai Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an air conditioner capable of effectively exerting capability of a heat exchanger 30, and having high thermal efficiency, in an air conditioner 1 provided with a circulation passage 11 continuing from a suction opening 13 opened on the undersurface of a casing to a blowout opening 14, a circulation fan 20 circulating indoor air through the circulation passage 11, a heat exchanger 30 incorporated in the upper side of the suction opening 13 in the circulation passage 11, and exchanging heat with air introduced in the circulation passage 11, and a water reception part receiving drain dripping from the inside of the circulation passage 11 toward the suction port 13. <P>SOLUTION: The suction opening 13 is provided with a suction grille 15 formed by arranging a groove-shaped grille bars 150 opened upward in a grid-like form; the grille bars 150 adjacent to each other are arranged without space between in the top view in a state having a space in the vertical direction; and the suction grille 15 is used as the water reception part. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、空気調和機、特に、循環通路の内壁や熱交換器の表面等から吸込口側へ滴下するドレンを回収可能な構成の空気調和機に関するものである。   The present invention relates to an air conditioner, and more particularly to an air conditioner having a configuration capable of collecting drain dripping from an inner wall of a circulation passage, a surface of a heat exchanger, and the like to a suction port side.

熱交換器を介して室内の空気を循環させる空気調和機において、熱交換器の表面で生じた結露、所謂、ドレンがケーシングの吸込口から室内へ漏出するのを阻止すべく、熱交換器の下方にそのドレンを回収し得る水受け皿を設けたものがある。   In an air conditioner that circulates indoor air through a heat exchanger, condensation on the surface of the heat exchanger, that is, so-called drain, is prevented from leaking into the room through the suction port of the casing. Some have a water tray that can collect the drain below.

図10は、上記水受け皿を備えた従来の空気調和機6の縦断面概略図であり、室内の壁面へ固定されるケーシング60内には、ケーシング60の下面に開設された吸込口63から吹出口64へ繋がる循環通路61が形成されている。また、上記吸込口63は、格子状に並ぶ複数のグリル桟650からなる吸気グリル65で覆われており、このグリル桟650相互の間隙(以下、「スリット」という)630を通って室内の空気が循環通路61内へ流れ込む。   FIG. 10 is a schematic vertical cross-sectional view of a conventional air conditioner 6 equipped with the above-described water tray. In the casing 60 fixed to the wall surface of the room, air is blown from a suction port 63 provided on the lower surface of the casing 60. A circulation passage 61 connected to the outlet 64 is formed. The suction port 63 is covered with an intake grill 65 composed of a plurality of grill bars 650 arranged in a lattice pattern, and the indoor air passes through a gap (hereinafter referred to as “slit”) 630 between the grill bars 650. Flows into the circulation passage 61.

また、循環通路61の中間部には、この循環通路61を経て室内の空気を循環させる循環ファン70と、循環通路61内へ取り込まれた空気との熱交換を行う熱交換器80とが配設されている。   In addition, a circulation fan 70 that circulates indoor air through the circulation passage 61 and a heat exchanger 80 that performs heat exchange with the air taken into the circulation passage 61 are arranged at the intermediate portion of the circulation passage 61. It is installed.

さらに、熱交換器80の下方には、熱交換器80の表面で生じた結露を受けるための水受け皿90が配設されている。   Further, below the heat exchanger 80, a water tray 90 for receiving condensation generated on the surface of the heat exchanger 80 is disposed.

従って、このものでは、例えば、熱交換器80の表面で生じた結露、所謂、ドレンが上記吸込口63側へ滴下しても、そのドレンは、熱交換器80の下方に設けられた水受け皿90に回収される。これにより、上記ドレンが吸込口63から上記スリット630を通って室内へ漏出する不都合を回避できる。
特開2000−337652号公報
Therefore, in this case, for example, even if dew condensation generated on the surface of the heat exchanger 80, that is, so-called drain is dropped on the suction port 63 side, the drain is provided in the water tray provided below the heat exchanger 80. 90 is recovered. Accordingly, it is possible to avoid the inconvenience that the drain leaks from the suction port 63 through the slit 630 into the room.
JP 2000-337652 A

しかしながら、上記従来のものでは、熱交換器80の表面から滴下するドレンを回収すべく、その熱交換器80の下方の比較的広い範囲が水受け皿90で覆われているから、上記スリット630を通じて吸込口63側から循環通路61内へ取り込まれた空気は、水受け皿90を迂回する経路を通って熱交換器80へ到達する。このため、熱交換器80の表面全体を上記空気が均一に通過せず、熱交換器80の能力が十分に発揮されていなかった。   However, in the above-mentioned conventional one, since a relatively wide range below the heat exchanger 80 is covered with the water tray 90 in order to collect drain dripping from the surface of the heat exchanger 80, the slit 630 is used. The air taken into the circulation passage 61 from the suction port 63 side reaches the heat exchanger 80 through a path that bypasses the water tray 90. For this reason, the said air did not pass uniformly over the whole surface of the heat exchanger 80, and the capability of the heat exchanger 80 was not fully exhibited.

本発明は係る点に鑑みてなされたもので、
『ケーシングの下面に開設された吸込口から吹出口へ繋がる循環通路と、循環通路を経て室内の空気を循環させる循環ファンと、循環通路内の前記吸込口の上方に組み込まれ且つ循環通路内へ取り込まれた空気との熱交換を行う熱交換器と、循環通路内から吸込口側へ滴下するドレンを受ける水受け部とを備えた空気調和機』において、熱交換器の能力を効果的に発揮し得る、熱効率の高い空気調和機の提供を図ることを課題とする。
The present invention has been made in view of such points,
“A circulation passage that is connected to the air outlet from the suction port established on the lower surface of the casing, a circulation fan that circulates the indoor air through the circulation passage, and the above-described suction port in the circulation passage and into the circulation passage. In the air conditioner equipped with a heat exchanger that performs heat exchange with the air that has been taken in and a water receiver that receives the drain dripping from the inside of the circulation passage to the suction port side, the capacity of the heat exchanger is effectively reduced. It is an object to provide an air conditioner with high thermal efficiency that can be demonstrated.

上記課題を解決するための請求項1に係る発明の技術的手段は、
『前記吸込口には、上方へ開放する溝状のグリル桟を格子状に並設した吸気グリルが設けられ、
隣り合う前記グリル桟相互は、上下方向への間隙を存した状態で上面視において間隙なく配列され、
前記吸気グリルが前記水受け部であることを特徴とする』ものである。
The technical means of the invention according to claim 1 for solving the above-mentioned problem is as follows:
“The intake port is provided with an intake grille in which groove-like grill bars that open upward are arranged in a grid,
The adjacent grill bars are arranged without a gap in a top view with a gap in the vertical direction,
The intake grill is the water receiving portion ”.

このものでは、溝状に形成されているとともに上面視において間隙なく並設されたグリル桟からなる吸気グリルが、ケーシング下面の吸込口に設けられているから、循環通路内から吸込口側へ滴下するドレンは、上記吸気グリルで受けられる。   In this case, since the intake grille, which is formed in a groove shape and is arranged in parallel with no gap in the top view, is provided at the suction port on the lower surface of the casing, it drops from the circulation passage to the suction port side. The drain to be received is received by the intake grill.

一方、隣り合う上記グリル桟相互は、上下方向への間隙を有しているから、室内の空気は、上記グリル桟相互の間隙を通過して循環通路内へ導かれ、そのまま直接的に熱交換器へ到達する。   On the other hand, since the adjacent grill bars have a gap in the vertical direction, the indoor air is guided into the circulation passage through the gap between the grill bars, and directly exchanges heat as it is. Reach the vessel.

即ち、循環通路内から吸込口側へ滴下するドレンを吸気グリルで受ける構成としたことにより、循環通路内へ取り込まれた空気は、迂回しないで熱交換器の表面全体を通過する。これにより、熱交換器の能力が効果的に発揮される。   That is, by adopting a configuration in which the drain that drops from the circulation passage to the suction port side is received by the intake grille, the air taken into the circulation passage passes through the entire surface of the heat exchanger without detouring. Thereby, the capability of a heat exchanger is exhibited effectively.

請求項2に係る発明の技術的手段は、
前記請求項1において、
『前記グリル桟は、両側縁が斜め上方へ起立する断面略V字状に形成された』ことである。
The technical means of the invention according to claim 2 is:
In claim 1,
“The grill bar is formed in a substantially V-shaped cross section with both side edges rising obliquely upward”.

このものでは、グリル桟の両側縁が斜め上方へ起立しているから、室内の空気は、この側縁に沿って層流状態で循環通路内へ導かれ、熱交換器の表面全体へ均一に行き渡る。これにより、熱交換器の能力が一層効果的に発揮される。   In this case, since both side edges of the grill bar stand up diagonally upward, the indoor air is led into the circulation passage in a laminar flow state along the side edges, and is uniformly distributed over the entire surface of the heat exchanger. Go around. Thereby, the capability of a heat exchanger is exhibited more effectively.

請求項3に係る発明の技術的手段は、
前記請求項1または2において、
『前記吸気グリルの外周側には、ドレンを貯留可能な凹部が形成され、
前記グリル桟の上面底部は、前記凹部へ向かって下降傾斜している』ことである。
The technical means of the invention according to claim 3 is:
In the claim 1 or 2,
“On the outer peripheral side of the intake grill, a recess capable of storing drain is formed,
The bottom of the upper surface of the grill bar is inclined downward toward the concave portion.

このものでは、グリル桟へ滴下したドレンは、その上面底部を伝って凹部へ順次送り込まれるから、循環通路内で比較的大量のドレンが発生した場合であっても、グリル桟からドレンが溢れ出ない。   In this case, the drain dripped onto the grill bar is sequentially sent to the concave part along the bottom of the upper surface, so that even if a relatively large amount of drain is generated in the circulation passage, the drain overflows from the grill bar. Absent.

本発明は、上記構成であるから次の特有の効果を有する。
請求項1に係る発明では、循環通路内へ取り込まれた空気を迂回させずにそのまま直接的に熱交換器の表面全体へ導くことで、熱交換器の能力が効果的に発揮されるから、熱効率が向上する。
Since the present invention has the above configuration, the present invention has the following specific effects.
In the invention according to claim 1, the ability of the heat exchanger is effectively exhibited by guiding the air taken into the circulation passage directly to the entire surface of the heat exchanger without detouring. Thermal efficiency is improved.

請求項2に係る発明では、上記空気を熱交換器の表面全体へ均一に行き渡らせることで、熱交換器の能力が一層効果的に発揮されるから、熱効率が一層向上する。   In the invention which concerns on Claim 2, since the capability of a heat exchanger is exhibited more effectively by distributing the said air uniformly on the whole surface of a heat exchanger, thermal efficiency improves further.

請求項3に係る発明では、グリル桟で受けたドレンを速やかに凹部へ回収することで、循環通路内で比較的大量のドレンが発生した場合であっても、グリル桟からドレンが溢れ出ないから、ドレンが吸込口側から室内へ漏出する不都合を回避できる。   In the invention according to claim 3, by draining the drain received by the grill bar to the recess quickly, even if a relatively large amount of drain is generated in the circulation passage, the drain does not overflow from the grill bar. Therefore, it is possible to avoid the inconvenience that the drain leaks into the room from the suction port side.

次に、上記した本発明を実施するための最良の形態について、添付図面を参照しながら詳述する。   Next, the best mode for carrying out the present invention will be described in detail with reference to the accompanying drawings.

図1は、本発明の実施の形態に係る空気調和機の縦断面概略図であり、図2がその吸込口近傍の縦断面拡大図である。以下、各部の詳細を説明する。   FIG. 1 is a schematic vertical cross-sectional view of an air conditioner according to an embodiment of the present invention, and FIG. 2 is an enlarged vertical cross-sectional view of the vicinity of the suction port. Details of each part will be described below.

図1に示す空気調和機1は、天井に埋設される形式のミスト機能付の浴室暖房乾燥機であり、浴室の天井Cに開設された取付口Sへ下方から埋め込み状態で装着される本体ケース10Aと、本体ケース10A下端のケース開口部100を覆うフロントパネル10Bとでその外郭のケーシングが構成されている。   An air conditioner 1 shown in FIG. 1 is a bathroom heating / drying machine with a mist function embedded in a ceiling, and is attached to a mounting port S opened on a ceiling C of the bathroom in an embedded state from below. The outer casing is formed by 10A and the front panel 10B covering the case opening 100 at the lower end of the main body case 10A.

また、本体ケース10A側壁のユニット接続口101には、浴室内の空気を屋外へ排出する換気ユニット12が接続されている。   Further, a ventilation unit 12 for discharging the air in the bathroom to the outdoors is connected to the unit connection port 101 on the side wall of the main body case 10A.

本体ケース10A内には、両端が上記ケース開口部100側へ開放する略逆U字状の循環通路11が形成されている。   In the main body case 10A, a substantially inverted U-shaped circulation passage 11 having both ends opened toward the case opening 100 is formed.

また、上記循環通路11の中間部には、浴室内の空気を循環通路11内へ取り込み、再び浴室へ送り出す循環ファン20が組み込まれており、この循環ファン20を挟んで吸気側となる通路(以下、「吸気通路」という)11aの下端開口部が後述するフロントパネル10Bの吸込口13へ繋がり、排気側となる通路(以下、「排気通路」という)11bの下端開口部が後述するフロントパネル10Bの吹出口14へ繋がっている。   In addition, a circulation fan 20 that incorporates the air in the bathroom into the circulation passage 11 and sends it back into the bathroom is incorporated in the intermediate portion of the circulation passage 11, and a passage (on the intake side across the circulation fan 20) ( Hereinafter, the lower end opening of 11a is connected to a suction port 13 of the front panel 10B, which will be described later, and the lower end opening of the exhaust side passage (hereinafter referred to as "exhaust passage") 11b is the front panel, which will be described later. It is connected to the outlet 14 of 10B.

循環ファン20は、循環通路11の側壁相互間に回動自在な状態で軸支されるクロスフローファンであり、図示しないファンモータの回転駆動力によって回転する。   The circulation fan 20 is a cross flow fan that is pivotally supported between the side walls of the circulation passage 11 so as to be rotatable, and is rotated by a rotational driving force of a fan motor (not shown).

さらに、上記吸気通路11aには、図示しない給湯器から温水配管を介して高温の温水が供給される熱交換器30が組み込まれており、循環ファン20の吸気通路11a側を覆っている。   Further, a heat exchanger 30 to which high-temperature hot water is supplied from a water heater (not shown) through a hot water pipe is incorporated in the intake passage 11a, and covers the intake passage 11a side of the circulation fan 20.

熱交換器30は、上記温水配管へ繋がる放熱パイプ31と、放熱パイプ31に対して交差するように並設される複数の放熱フィン32とで構成されており、これら放熱パイプ31や放熱フィン32の表面から空気中へ上記温水の熱が放出される。   The heat exchanger 30 includes a heat radiating pipe 31 connected to the hot water pipe and a plurality of heat radiating fins 32 arranged side by side so as to intersect the heat radiating pipe 31. The heat of the hot water is released into the air from the surface.

さらに、吸気通路11aの側壁には、上記ユニット接続口101へ繋がる換気用開口部11cが設けられている。   Further, a ventilation opening 11c connected to the unit connection port 101 is provided on the side wall of the intake passage 11a.

一方、換気ユニット12の側壁には、屋外へ繋がる図示しない換気ダクトを接続するためのダクト接続口120が設けられている。   On the other hand, a duct connection port 120 for connecting a ventilation duct (not shown) connected to the outdoors is provided on the side wall of the ventilation unit 12.

また、換気ユニット12内には、浴室内の空気を後述するフロントパネル10Bの吸込口13から上記換気用開口部11cを通して換気ユニット12内へ取り込み、ダクト接続口120側から換気ダクトを介して屋外へ排出する換気ファン40が収容されている。   Further, in the ventilation unit 12, air in the bathroom is taken into the ventilation unit 12 from the suction port 13 of the front panel 10B, which will be described later, through the ventilation opening 11c, and is outdoors from the duct connection port 120 through the ventilation duct. A ventilation fan 40 for discharging the air is accommodated.

フロントパネル10Bには、格子状の吸気グリル15を有する吸込口13と、風向調整用のルーバ140で被蓋される吹出口14とが開設されている。   The front panel 10B is provided with a suction port 13 having a lattice-shaped intake grille 15 and a blower outlet 14 covered with a louver 140 for adjusting the wind direction.

また、上記吸気グリル15の下面側には、吸気通路11a内へ取り込まれる空気中の埃や菌類等の浮遊物を除去するエアフィルタ110が装着されており、吸込口13の全体を覆っている。   Further, an air filter 110 for removing floating matters such as dust and fungi in the air taken into the intake passage 11 a is attached to the lower surface side of the intake grill 15 and covers the entire intake port 13. .

さらに、フロントパネル10Bの吹出口14近傍には、本体ケース10A内の図示しないミスト用の温水熱交換器によって生成された高温の湯をミストとして浴室へ放散させるミストノズル50が設けられている。   Further, a mist nozzle 50 is provided in the vicinity of the air outlet 14 of the front panel 10B to dissipate high-temperature hot water generated by a mist hot water heat exchanger (not shown) in the main body case 10A as a mist into the bathroom.

吸気グリル15は、上記吸気通路11aの側壁相互間へ同一方向に横架される複数のグリル桟150で構成されており、この隣り合うグリル桟150相互の間隙(以下、「スリット」という)130を通って浴室内の空気が吸気通路11a内へ取り込まれる。   The intake grill 15 is composed of a plurality of grill bars 150 which are horizontally mounted in the same direction between the side walls of the intake passage 11a, and a gap (hereinafter referred to as “slit”) 130 between the adjacent grill bars 150. The air in the bathroom passes through the intake passage 11a.

上記グリル桟150は、図2に示すように、その右側縁15aおよび左側縁15bがそれぞれ斜め上方へ起立する断面略V字の溝状に形成されている。   As shown in FIG. 2, the grill bar 150 is formed in a groove shape having a substantially V-shaped cross section in which the right edge 15 a and the left edge 15 b stand up obliquely upward.

さらに、上記右側縁15aは、対向する隣のグリル桟150の左側縁15bよりも上方へ迫り出し、尚且つ、上面視においてそれら右側縁15aおよび左側縁15bの端面相互が重なり合うように構成されている。   Further, the right side edge 15a protrudes upward from the left side edge 15b of the adjacent adjacent grill bar 150, and the end surfaces of the right side edge 15a and the left side edge 15b overlap each other when viewed from above. Yes.

即ち、隣り合うグリル桟150相互は、上下方向へ所定幅の間隙を存した状態で、尚且つ、上面視において間隙なく配列されている。従って、後述する循環通路11内で生じたドレンは上記スリット130を通過しないでグリル桟150の上面で受けられる一方、浴室内の空気はスリット130を通過して循環通路11内へ到達する。   That is, the adjacent grill bars 150 are arranged with a gap of a predetermined width in the vertical direction and without gaps when viewed from above. Accordingly, drain generated in the circulation passage 11 described later is received on the upper surface of the grill bar 150 without passing through the slit 130, while air in the bathroom passes through the slit 130 and reaches the circulation passage 11.

尚、上記「右側縁15a」および「左側縁15b」が、既述請求項2の発明特定事項としての「側縁」に対応する。   The “right edge 15a” and the “left edge 15b” correspond to “side edges” as the invention-specifying matters of claim 2 described above.

また、図3に示すように、上記グリル桟150の底部15cの上面は、フロントパネル10Bの上面に形成された凹部102へ向かって下降傾斜している。   Further, as shown in FIG. 3, the upper surface of the bottom portion 15c of the grill bar 150 is inclined downward toward the concave portion 102 formed on the upper surface of the front panel 10B.

上記凹部102は、吸気グリル15や吹出口14を囲む周壁とフロントパネル10Bの外周壁とで囲まれた領域の略全面に形成されている。   The concave portion 102 is formed on substantially the entire area surrounded by the peripheral wall surrounding the intake grill 15 and the air outlet 14 and the outer peripheral wall of the front panel 10B.

このものでは、例えば、入浴後に換気運転の開始が指示された場合は、換気ファン40が回転し、浴室内に充満する湿気を多く含んだ高温の空気が上記スリット130から吸気通路11a内へ流れ込む。そして、吸気通路11aの換気用開口部11cを通って換気ユニット12内へ取り込まれ、さらに、ダクト接続口120から図示しない換気ダクトを通って屋外へ排出される。   In this case, for example, when the start of ventilation operation is instructed after bathing, the ventilation fan 40 rotates, and high-temperature air containing a lot of moisture filling the bathroom flows into the intake passage 11a from the slit 130. . And it is taken in into the ventilation unit 12 through the opening part 11c for ventilation of the intake passage 11a, and is further discharged | emitted outside through the ventilation duct which is not shown in figure from the duct connection port 120. FIG.

その際、吸気通路11a内へ取り込まれた空気の一部は、熱交換器30の放熱パイプ31や放熱フィン32の表面を通過するが、寒冷期のように、その放熱パイプ31内の水温が著しく低い場合には、放熱パイプ31や放熱フィン32の表面温度と上記空気との温度差によってそれらの表面に結露を生じ、吸込口13側へ滴下する。   At that time, part of the air taken into the intake passage 11a passes through the surfaces of the heat radiating pipes 31 and the heat radiating fins 32 of the heat exchanger 30, but the water temperature in the heat radiating pipes 31 is low as in the cold season. When the temperature is extremely low, condensation occurs on the surfaces of the heat radiating pipe 31 and the heat radiating fins 32 due to the temperature difference between the surface air and the air, and the dew drops toward the suction port 13.

また、ミスト運転の開始が指示された場合は、ルーバ140が開かれるとともに循環ファン20が回転し、さらに、図示しないミスト用の温水熱交換器からミストノズル50へ高温の湯が送り込まれ、浴室内へミストを放散する。   When the start of the mist operation is instructed, the louver 140 is opened and the circulation fan 20 is rotated. Further, hot water is sent from a hot water heat exchanger (not shown) to the mist nozzle 50, and the bathroom Disperse the mist inside.

その際、浴室内に放散させたミストの一部は、上記スリット130から吸気通路11a内へ吸い込まれ、上記放熱パイプ31や放熱フィン32の表面、循環通路11の内壁へ付着し、吸込口13側へ滴下する。   At that time, a part of the mist diffused in the bathroom is sucked into the intake passage 11a from the slit 130 and adheres to the surface of the heat radiating pipe 31 and the heat radiating fin 32 and the inner wall of the circulation passage 11, and the air inlet 13 Drip to the side.

しかしながら、吸込口13は、上面視において間隙なく配列された上記グリル桟150によってその全体が覆われているから、熱交換器30の表面に生じた結露や循環通路11の内壁に付着した水、さらには放熱パイプ31の欠損部からの微小な漏れ水等のドレンは、全てグリル桟150の右側縁15aや左側縁15b、底部15c上へ滴下する。   However, since the suction port 13 is entirely covered by the grill bars 150 arranged without gaps when viewed from above, the dew generated on the surface of the heat exchanger 30 and water adhering to the inner wall of the circulation passage 11, Furthermore, all drainage such as minute leakage water from the missing portion of the heat radiating pipe 31 drops on the right edge 15a, the left edge 15b, and the bottom 15c of the grill bar 150.

そして、右側縁15aや左側縁15bで受けられたドレンは、それら傾斜面を伝って底部15cの上面へ集められ、さらにその底部15cの上面を伝ってフロントパネル10Bの凹部102へ回収される。これにより、循環通路11内や熱交換器30の表面等から大量のドレンが吸込口13側へ滴下した場合であっても、グリル桟15から溢れ出ないから、ドレンが吸込口13側から浴室へ漏出する不都合を回避できる。また、エアフィルタ110の水濡れも回避できる。   The drain received at the right edge 15a and the left edge 15b is collected on the upper surface of the bottom portion 15c along the inclined surfaces, and further collected on the concave portion 102 of the front panel 10B along the upper surface of the bottom portion 15c. As a result, even if a large amount of drain has dropped from the inside of the circulation passage 11 or the surface of the heat exchanger 30 to the suction port 13 side, the drain does not overflow from the grill bar 15, so The inconvenience of leaking out can be avoided. In addition, the air filter 110 can be prevented from getting wet.

尚、上記凹部102へ回収されたドレンは、フロントパネル10B上面の比較的広い範囲に形成された凹部102上で薄く広がり、自然蒸発が促される。   The drain collected in the recess 102 spreads thinly on the recess 102 formed in a relatively wide area on the upper surface of the front panel 10B, and natural evaporation is promoted.

一方、浴室内の空気は、上記スリット130から、隣り合うグリル桟150相互間に形成された上下方向への間隙を通って吸気通路11a内へ導かれ、吸気通路11a内で迂回しないでそのまま直接的に熱交換器30へ到達し、その表面全体を通過する。その結果、熱交換器30の放熱能力が効果的に発揮されるから、空気調和機1の熱効率が向上する。   On the other hand, the air in the bathroom is guided from the slit 130 through the vertical gap formed between the adjacent grill bars 150 into the intake passage 11a and directly without being detoured in the intake passage 11a. To the heat exchanger 30 and pass through its entire surface. As a result, since the heat dissipation capability of the heat exchanger 30 is effectively exhibited, the thermal efficiency of the air conditioner 1 is improved.

また、スリット130から吸気通路11aへ吸い込まれる空気は、右斜め上方へ直線的に起立する各右側縁15aに沿って層流状態で吸気通路11a内へ導かれる。これにより、上記空気が熱交換器30の表面全体へ均一に行き渡り、その結果、熱交換器30の放熱能力が一層効果的に発揮されるから、空気調和機1の熱効率が一層向上する。   Further, the air sucked into the intake passage 11a from the slit 130 is guided into the intake passage 11a in a laminar flow state along each right edge 15a rising linearly upward to the right. Thereby, since the said air spreads over the whole surface of the heat exchanger 30, and since the heat dissipation capability of the heat exchanger 30 is exhibited more effectively as a result, the thermal efficiency of the air conditioner 1 improves further.

[その他]
上記実施の形態では、隣り合うグリル桟150の右側縁15aと左側縁15bとの端面相互が上面視において重なり合うように構成されているが、上記右側縁15aが左側縁15bの端面を超えて迫り出すように構成しても良い。
[Others]
In the above embodiment, the end faces of the right edge 15a and the left edge 15b of the adjacent grill bars 150 are configured to overlap each other when viewed from above, but the right edge 15a approaches the end face of the left edge 15b. You may comprise so that it may take out.

また、吸気グリル150は、断面略V字状のグリル桟150を同一方向に並設した構成であるが、隣り合うグリル桟150相互が、上下方向へ所定幅の間隙を存した状態で、尚且つ、上面視において間隙なく配列された構成であれば、図4に示すように、断面略J字状のグリル桟150を同一方向に並設した構成であっても良いし、図5に示すように、断面略U字状のグリル桟150を同一方向に上下二列で並設した構成であっても良い。   The intake grill 150 has a configuration in which grill bars 150 having a substantially V-shaped cross section are arranged side by side in the same direction, but in a state where adjacent grill bars 150 have a gap of a predetermined width in the vertical direction. As shown in FIG. 4, the grill bars 150 having a substantially J-shaped cross section may be arranged in parallel in the same direction as long as they are arranged without gaps when viewed from above. As described above, a configuration in which grill bars 150 having a substantially U-shaped cross section are arranged in two rows in the same direction may be employed.

尚、上記実施の形態におけるグリル桟150や凹部102は、その全体をステンレスや抗菌樹脂等、菌類の繁殖を抑制する効果の高い素材で形成するのが好ましい。   In addition, it is preferable that the grill crosspiece 150 and the recessed part 102 in the said embodiment are formed with the material with the high effect which suppresses propagation of fungi, such as stainless steel and an antibacterial resin.

また、図6に示すように、上記凹部102の最も低い面に水抜き穴16を設け、使用者がメンテナンスする際にその凹部102内のドレンを適宜排出できるようにしても良いし、図7に示すように、凹部102の最も低い面から浴室の側壁Wへ延びる排水通路17を設け、この排水通路17から上記ドレンを常時排水しても良いし、図8に示すように、凹部102の最も低い面に排水ポンプ18を設け、この排水ポンプ18によって上記ドレンを浴室外へ排出しても良い。   Further, as shown in FIG. 6, a drain hole 16 may be provided on the lowest surface of the concave portion 102 so that the drain in the concave portion 102 can be appropriately discharged when maintenance is performed by the user. As shown in FIG. 8, a drainage passage 17 extending from the lowest surface of the recess 102 to the side wall W of the bathroom may be provided, and the drain may be always drained from the drainage passage 17. A drainage pump 18 may be provided on the lowest surface, and the drainage may be discharged outside the bathroom by the drainage pump 18.

或いは、図9に示すように、排気通路11bから凹部102上面近傍まで延びる分流通路19を設け、暖房運転時、この分流通路19から凹部102上へ温風を導いて上記ドレンを強制的に蒸発させる構成にしても良い。   Alternatively, as shown in FIG. 9, a diversion passage 19 extending from the exhaust passage 11b to the vicinity of the upper surface of the concave portion 102 is provided, and during the heating operation, the warm air is guided from the diversion passage 19 to the concave portion 102 to force the drain. It may be configured to evaporate.

これらのものでは、凹部102に大量のドレンが回収された場合であっても、その凹部102からドレンを積極的に排除することが可能であるから、凹部102の表面におけるカビや雑菌等の繁殖を一層効果的に抑制できる。   In these cases, even when a large amount of drain is collected in the recess 102, it is possible to positively remove the drain from the recess 102. Therefore, propagation of mold, germs, etc. on the surface of the recess 102 Can be more effectively suppressed.

上記実施の形態における空気調和機1は、天井埋設式の浴室暖房乾燥機として説明したが、本体ケース10Aを浴室の天井や側壁に固定する壁面取付式の浴室暖房乾燥機であっても良い。   Although the air conditioner 1 in the above embodiment has been described as a ceiling-buried bathroom heating dryer, it may be a wall-mounted bathroom heating dryer that fixes the main body case 10A to the ceiling or side wall of the bathroom.

本発明の実施の形態に係る空気調和機1の縦断面概略図1 is a schematic vertical sectional view of an air conditioner 1 according to an embodiment of the present invention. 本発明の実施の形態に係る空気調和機1の吸込口13周辺の縦断面図The longitudinal cross-sectional view of the suction inlet 13 periphery of the air conditioner 1 which concerns on embodiment of this invention. 本発明の実施の形態に係る空気調和機1の図1に示すX−X断面図XX sectional view shown in Drawing 1 of air harmony machine 1 concerning an embodiment of the invention 本発明の他の実施形態に係る空気調和機1のグリル桟150を示す図The figure which shows the grill crosspiece 150 of the air conditioner 1 which concerns on other embodiment of this invention. 本発明の他の実施形態に係る空気調和機1のグリル桟150を示す図The figure which shows the grill crosspiece 150 of the air conditioner 1 which concerns on other embodiment of this invention. 本発明の他の実施形態に係る空気調和機1の水抜き穴16を示す図The figure which shows the drain hole 16 of the air conditioner 1 which concerns on other embodiment of this invention. 本発明の他の実施形態に係る空気調和機1の排水通路17を示す面The surface which shows the drainage channel | path 17 of the air conditioner 1 which concerns on other embodiment of this invention. 本発明の他の実施形態に係る空気調和機1の排水ポンプ18を示す面The surface which shows the drainage pump 18 of the air conditioner 1 which concerns on other embodiment of this invention. 本発明の他の実施形態に係る空気調和機1の分流通路19を示す図The figure which shows the shunt path 19 of the air conditioner 1 which concerns on other embodiment of this invention. 従来の空気調和機6の縦断面概略図Schematic diagram of longitudinal section of a conventional air conditioner 6

符号の説明Explanation of symbols

1・・・空気調和機
11・・・循環通路
13・・・吸込口
14・・・吹出口
15・・・吸気グリル
150・・・グリル桟
15a,15b・・・側縁
20・・・循環ファン
30・・・熱交換器
DESCRIPTION OF SYMBOLS 1 ... Air conditioner 11 ... Circulation channel | path 13 ... Suction inlet 14 ... Outlet 15 ... Intake grill 150 ... Grill crosspiece 15a, 15b ... Side edge 20 ... Circulation Fan 30 ... heat exchanger

Claims (3)

ケーシングの下面に開設された吸込口から吹出口へ繋がる循環通路と、循環通路を経て室内の空気を循環させる循環ファンと、循環通路内の前記吸込口の上方に組み込まれ且つ循環通路内へ取り込まれた空気との熱交換を行う熱交換器と、循環通路内から吸込口側へ滴下するドレンを受ける水受け部とを備えた空気調和機において、
前記吸込口には、上方へ開放する溝状のグリル桟を格子状に並設した吸気グリルが設けられ、
隣り合う前記グリル桟相互は、上下方向への間隙を存した状態で上面視において間隙なく配列され、
前記吸気グリルが前記水受け部であることを特徴とする、空気調和機。
A circulation passage that is connected to the air outlet from the suction port established on the lower surface of the casing, a circulation fan that circulates indoor air through the circulation passage, and a part that is incorporated above the suction port in the circulation passage and is taken into the circulation passage In an air conditioner including a heat exchanger that performs heat exchange with the air and a water receiving portion that receives drain dripping from the circulation passage to the suction port side,
The suction port is provided with an intake grille in which groove-like grill bars that open upward are arranged in a grid,
The adjacent grill bars are arranged without a gap in a top view with a gap in the vertical direction,
The air conditioner, wherein the intake grill is the water receiving portion.
請求項1に記載の空気調和機において、
前記グリル桟は、両側縁が斜め上方へ起立する断面略V字状に形成された、空気調和機。
In the air conditioner according to claim 1,
The grill bar is an air conditioner formed with a substantially V-shaped cross section with both side edges rising obliquely upward.
請求項1または2に記載の空気調和機において、
前記吸気グリルの外周側には、ドレンを貯留可能な凹部が形成され、
前記グリル桟の上面底部は、前記凹部へ向かって下降傾斜している、空気調和機。
In the air conditioner according to claim 1 or 2,
On the outer peripheral side of the intake grill, a recess capable of storing drain is formed,
An air conditioner, wherein the bottom of the upper surface of the grill bar is inclined downward toward the recess.
JP2007325686A 2007-12-18 2007-12-18 Air conditioner Expired - Fee Related JP5057958B2 (en)

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Publication number Priority date Publication date Assignee Title
JP2013142503A (en) * 2012-01-11 2013-07-22 Toto Ltd Bath room air conditioning device
JP2013185800A (en) * 2012-03-12 2013-09-19 Fujitsu General Ltd Ceiling embedded type air conditioner
JP2017172951A (en) * 2016-02-25 2017-09-28 ハルトン オイ Apparatus for conditioning space
CN108253609A (en) * 2018-03-20 2018-07-06 广东美的制冷设备有限公司 Drip tray and air-conditioning

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JPH06229578A (en) * 1993-01-29 1994-08-16 Sanyo Electric Co Ltd Ceiling recessed type indoor machine
JPH0926154A (en) * 1995-07-14 1997-01-28 Toshiba Corp Air conditioner

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JPH05187650A (en) * 1992-01-08 1993-07-27 Mitsubishi Electric Corp Air conditioner
JPH06229578A (en) * 1993-01-29 1994-08-16 Sanyo Electric Co Ltd Ceiling recessed type indoor machine
JPH0926154A (en) * 1995-07-14 1997-01-28 Toshiba Corp Air conditioner

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013142503A (en) * 2012-01-11 2013-07-22 Toto Ltd Bath room air conditioning device
JP2013185800A (en) * 2012-03-12 2013-09-19 Fujitsu General Ltd Ceiling embedded type air conditioner
JP2017172951A (en) * 2016-02-25 2017-09-28 ハルトン オイ Apparatus for conditioning space
US11262085B2 (en) 2016-02-25 2022-03-01 Halton Oy Apparatus for conditioning a space
JP7101456B2 (en) 2016-02-25 2022-07-15 ハルトン オイ A device for adjusting the space
CN108253609A (en) * 2018-03-20 2018-07-06 广东美的制冷设备有限公司 Drip tray and air-conditioning
CN108253609B (en) * 2018-03-20 2024-02-27 广东美的制冷设备有限公司 Water pan and air conditioner

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