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    • 1. 发明授权
    • Hybrid drying system and method for controlling a hybrid drying system
    • 混合干燥系统及混合干燥系统的控制方法
    • US08978269B2
    • 2015-03-17
    • US13142817
    • 2010-05-19
    • Seung Tae ParkHue Jae KimHyun Woong ChoiKyung Rok YooDong Hyuk Kim
    • Seung Tae ParkHue Jae KimHyun Woong ChoiKyung Rok YooDong Hyuk Kim
    • F26B3/00F26B21/08F24F3/14F26B21/06
    • F26B21/08F24F3/14F24F2203/1016F24F2203/1032F26B21/06F26B21/086Y02P70/40
    • Disclosed is a hybrid drying system where a cold-air drier and a desiccant drier are combined to increase drying efficiency (extent of dehumidification/power consumption), thereby shortening drying time and significantly reducing operation costs. The hybrid drying system includes a desiccant drier installed between an evaporator and a condenser and having an absorbing part configured to produce dry air from the cold-air dried air which has passed through the evaporator and a detaching part configured to supply recycled air heated by the condensation heat of the condenser as a recycling heat source; a heat exchanger configured to heat-exchange exterior air with recycled exhaust air with the recycled air to retrieve exhaust heat; and a control unit configured to simultaneously control a cold-air drying operation and a desiccant drying operation according to the humidity and temperature of the drying chamber. The hybrid drying system is operated through a freezing cycle, a drying cycle, a drying chamber circulating cycle, and a recycling cycle.
    • 公开了一种混合干燥系统,其中组合了冷空气干燥器和干燥剂干燥器以提高干燥效率(除湿/功率消耗的程度),从而缩短干燥时间并显着降低操作成本。 混合干燥系统包括安装在蒸发器和冷凝器之间的干燥剂干燥器,并具有构造成从已经通过蒸发器的冷空气干燥空气产生干燥空气的吸收部分,以及被配置为供应由 冷凝器的冷凝热作为回收热源; 热交换器,被配置为利用再循环的空气将外部空气与再循环的废气进行热交换以回收废热; 以及控制单元,被配置为根据干燥室的湿度和温度同时控制冷风干燥操作和干燥剂干燥操作。 混合干燥系统通过冷冻循环,干燥循环,干燥室循环循环和循环循环进行操作。
    • 2. 发明申请
    • HYBRID DRYING SYSTEM AND METHOD FOR CONTROLLING A HYBRID DRYING SYSTEM
    • 混合干燥系统和控制混合干燥系统的方法
    • US20110271548A1
    • 2011-11-10
    • US13142817
    • 2010-05-19
    • Seung Tae ParkHue Jae KimHyun Woong ChoiKyung Rok YooDong Hyuk Kim
    • Seung Tae ParkHue Jae KimHyun Woong ChoiKyung Rok YooDong Hyuk Kim
    • F26B21/08F26B21/10F26B3/02
    • F26B21/08F24F3/14F24F2203/1016F24F2203/1032F26B21/06F26B21/086Y02P70/40
    • Disclosed is a hybrid drying system where a cold-air drier and a desiccant drier are combined to increase drying efficiency (extent of dehumidification/power consumption), thereby shortening drying time and significantly reducing operation costs. The hybrid drying system includes a desiccant drier installed between an evaporator and a condenser and having an absorbing part configured to produce dry air from the cold-air dried air which has passed through the evaporator and a detaching part configured to supply recycled air heated by the condensation heat of the condenser as a recycling heat source ; a heat exchanger configured to heat-exchange exterior air with recycled exhaust air with the recycled air to retrieve exhaust heat; and a control unit configured to simultaneously control a cold-air drying operation and a desiccant drying operation according to the humidity and temperature of the drying chamber. The hybrid drying system is operated through a freezing cycle, a drying cycle, a drying chamber circulating cycle, and a recycling cycle.
    • 公开了一种混合干燥系统,其中组合了冷空气干燥器和干燥剂干燥器以提高干燥效率(除湿/功率消耗的程度),从而缩短干燥时间并显着降低操作成本。 混合干燥系统包括安装在蒸发器和冷凝器之间的干燥剂干燥器,并具有构造成从已经通过蒸发器的冷空气干燥空气产生干燥空气的吸收部分,以及被配置为供应由 冷凝器的冷凝热作为回收热源; 热交换器,被配置为利用再循环的空气将外部空气与再循环的废气进行热交换以回收废热; 以及控制单元,被配置为根据干燥室的湿度和温度同时控制冷风干燥操作和干燥剂干燥操作。 混合干燥系统通过冷冻循环,干燥循环,干燥室循环循环和循环循环进行操作。