INTEGRATED AIR CONDITIONING DEVICE

PROBLEM TO BE SOLVED: To provide an integrated air conditioning device capable of cooling the inside of a room with high efficiency regardless of an outside air temperature.SOLUTION: The inside of a housing 9 of an integrated air conditioning device 1 is divided into an indoor-side air flow channel...

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Bibliographische Detailangaben
Hauptverfasser: KIMURA SEISHU, YAMAGUCHI SHOICHI, OKI JUNICHI
Format: Patent
Sprache:eng ; jpn
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Zusammenfassung:PROBLEM TO BE SOLVED: To provide an integrated air conditioning device capable of cooling the inside of a room with high efficiency regardless of an outside air temperature.SOLUTION: The inside of a housing 9 of an integrated air conditioning device 1 is divided into an indoor-side air flow channel 3 for sucking indoor-side air and discharging the same indoors, and outdoor-side air flow channels 6-1, 6-2 for sucking outdoor-side air and discharging the same outdoors. In the indoor-side air flow channel 3, an evaporator 101 of an ebullient cooling type first refrigeration cycle 100 is disposed at an upstream side of a flow 11 of the indoor-side air, and an evaporator 203 of a steam compression type second refrigeration cycle 200 is disposed at a downstream side of the flow 11 of the indoor-side air in series. An indoor-side air distribution device 7 is disposed in the indoor-side air flow channel 3, and the flow 11 of the indoor-side air is generated by driving of the indoor-side air distribution device 7.SELECTED DRAWING: Figure 1 【課題】外気温度の状態によらず高効率に室内を冷却することを可能とする一体型空調装置を提供する。【解決手段】一体型空調装置1のハウジング9は、室内側空気を吸入して室内へ吐出する室内側空気流路3と、室外側空気を吸入して室外へ吐出する室外側空気流路6−1,6−2とに内部が区分される。室内側空気流路3の内部において、沸騰冷却式の第1冷凍サイクル100の蒸発器101が室内側空気流れ11の上流側、蒸気圧縮式の第2冷凍サイクル200の蒸発器203を室内側空気の流れ11の下流側に直列に配置される。室内側送風装置7は、室内側空気流路3に設けられ、室内側送風装置7の駆動によって室内側空気の流れ11が生成される。【選択図】図1