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    • 5. 发明公开
    • Ventilator/dryer assembly
    • Lüfter-Trockner,统一性
    • EP0693660A2
    • 1996-01-24
    • EP95108035.7
    • 1995-05-24
    • SANYO ELECTRIC CO. LTD
    • Hashimoto, MasuyukiNakayama, ToshioNamatame, TatuoKayama, Kunio
    • F24F3/14
    • F24F3/1423F24F2203/1004F24F2203/1012F24F2203/1036F24F2203/104F24F2203/106F24F2203/1068F24F2203/1088
    • A ventilator/dryer assembly for drying wet air comprising a treatment chamber (7), a rotary drying device and a forced circulation mechanism housed in a case main body provided with an air inlet port (3) and an air outlet port (4) exposed to the outside is characterized in that the treatment chamber (7) is divided into a primary side section (7A) and a secondary side section (7B) with the rotary drying device (20) disposed therebetween, that the forced circulation mechanism draws air from the room where the ventilator/dryer assembly is installed via said air inlet port (3) to the primary side section (7A) of the treatment chamber (7), passes it through the rotary drying device (20) and sends it back into the room through the secondary side section (7B) of the treatment chamber (7) and the air outlet port (4) by means of a single blower (10) and that the rotary drying device (20) is adapted to take a drying position (20A), a regenerating position (20B) and a heat recovering position (20C) sequentially in the sense of rotation, the device adsorbing moisture from the air passing therethrough from the primary side section (7A) of the treatment chamber (7) in the drying position (20A), hot air being made to pass through the device in the regenerating position (20B) to remove moisture adsorbed by the device in said drying position, cooled air being made to pass through the heated device in the heat recovering position to cool the device heated in said regenerating position (20B). With such an arrangement, the operation of drying wet air in the room where the assembly is installed by means of the rotary drying device and that of regenerating the rotary drying device can be carried out on a continuous basis in the drying mode of operation. Additionally, since the forced circulation mechanism of the ventilator/dryer assembly comprises a single blower (10) that draws and discharges air both for air circulation in the room and for regeneration of the rotary drying device (20), the overall configuration of the ventilation system of the room can be simplified for downsizing to realize a lightweight apparatus at reduced cost. Finally, the assembly can significantly reduce the contamination of the rotary drying device (20) as compared with a comparable conventional apparatus that use ambient air as regenerating air.
    • 一种用于干燥湿空气的通风机/干燥器组件,包括处理室(7),旋转干燥装置和容纳在设置有空气入口(3)和空气出口(4))的壳体主体中的强制循环机构 其特征在于,处理室(7)被分为初级侧部分(7A)和次级侧部分(7B),旋转干燥装置(20)位于它们之间,强制循环机构将空气从 通过所述空气入口(3)将所述呼吸机/干燥器组件安装到所述处理室(7)的所述初级侧部分(7A)的房间将其通过所述旋转干燥装置(20)并将其送回 房间通过处理室(7)的次级侧部分(7B)和空气出口(4)通过单个鼓风机(10),并且旋转干燥装置(20)适于采取干燥位置 20A),再生位置(20B)和热回收位置(20) C)顺序地在旋转的方向上,该装置从干燥位置(20A)的处理室(7)的初级侧部分(7A)吸收来自空气的空气中的水分,使热空气通过装置 在再生位置(20B)中,以除去所述干燥位置中被所述装置吸收的水分,使被冷却的空气在所述热回收位置通过所述加热装置,以冷却在所述再生位置(20B)中加热的装置。 通过这样的布置,通过旋转干燥装置安装组件的房间中的湿空气的干燥和再生旋转干燥装置的湿空气的操作可以在干燥操作模式下连续进行。 此外,由于通风机/干燥器组件的强制循环机构包括单独的鼓风机(10),其用于吸入和排出用于室内空气循环并用于再生旋转干燥装置(20)的空气,所以通风的整体结构 可以简化房间的系统,以减小成本,从而实现轻量化的设备。 最后,与使用环境空气作为再生空气的类似的常规装置相比,组件可以显着减少旋转干燥装置(20)的污染。
    • 8. 发明公开
    • Ventilator/dryer assembly
    • 风扇机单元
    • EP0693660A3
    • 1997-10-29
    • EP95108035.7
    • 1995-05-24
    • SANYO ELECTRIC CO. LTD
    • Hashimoto, MasuyukiNakayama, ToshioNamatame, TatuoKayama, Kunio
    • F24F3/14
    • F24F3/1423F24F2203/1004F24F2203/1012F24F2203/1036F24F2203/104F24F2203/106F24F2203/1068F24F2203/1088
    • A ventilator/dryer assembly for drying wet air comprising a treatment chamber (7), a rotary drying device and a forced circulation mechanism housed in a case main body provided with an air inlet port (3) and an air outlet port (4) exposed to the outside is characterized in that the treatment chamber (7) is divided into a primary side section (7A) and a secondary side section (7B) with the rotary drying device (20) disposed therebetween, that the forced circulation mechanism draws air from the room where the ventilator/dryer assembly is installed via said air inlet port (3) to the primary side section (7A) of the treatment chamber (7), passes it through the rotary drying device (20) and sends it back into the room through the secondary side section (7B) of the treatment chamber (7) and the air outlet port (4) by means of a single blower (10) and that the rotary drying device (20) is adapted to take a drying position (20A), a regenerating position (20B) and a heat recovering position (20C) sequentially in the sense of rotation, the device adsorbing moisture from the air passing therethrough from the primary side section (7A) of the treatment chamber (7) in the drying position (20A), hot air being made to pass through the device in the regenerating position (20B) to remove moisture adsorbed by the device in said drying position, cooled air being made to pass through the heated device in the heat recovering position to cool the device heated in said regenerating position (20B). With such an arrangement, the operation of drying wet air in the room where the assembly is installed by means of the rotary drying device and that of regenerating the rotary drying device can be carried out on a continuous basis in the drying mode of operation. Additionally, since the forced circulation mechanism of the ventilator/dryer assembly comprises a single blower (10) that draws and discharges air both for air circulation in the room and for regeneration of the rotary drying device (20), the overall configuration of the ventilation system of the room can be simplified for downsizing to realize a lightweight apparatus at reduced cost. Finally, the assembly can significantly reduce the contamination of the rotary drying device (20) as compared with a comparable conventional apparatus that use ambient air as regenerating air.