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    • 42. 发明申请
    • Dehumidifier with Console and Pre-Programmed Modes
    • 带控制台和预编程模式的除湿机
    • US20140306022A1
    • 2014-10-16
    • US14312643
    • 2014-06-23
    • Chu Simon
    • Chu Simon
    • F24F11/00
    • F24F11/0008F24F3/14F24F11/30F24F11/52F24F2110/20
    • A dehumidifier is pre-programmed with user-friendly modes. Each mode is named for a particular room in the house. Each mode has a pre-programmed default target humidity level most suitable for that kind of room. The default target humidity levels are determined by the manufacturer and need not be known to the end user. The names of the modes appear on the console of the dehumidifier. The human user controls the dehumidifier by reference to the names of the modes, rather than by setting particular percentage levels of relative humidity. The dehumidifier may offer optional features such as means to raise/lower the target humidity level by a fixed interval, and/or a continuous mode of operation.
    • 除湿机采用用户友好的模式进行预编程。 每个模式都被命名为房子里的特定房间。 每个模式都有一个预编程的默认目标湿度水平最适合这种房间。 默认目标湿度水平由制造商确定,最终用户不需要知道。 模式的名称显示在除湿机的控制台上。 人类用户通过参考模式的名称来控制除湿器,而不是通过设置相对湿度的特定百分比水平。 除湿器可以提供可选特征,例如将目标湿度水平提高/降低固定间隔和/或连续操作模式的手段。
    • 44. 发明申请
    • REFRIGERATION AND AIR-CONDITIONING APPARATUS AND HUMIDITY CONTROL DEVICE
    • 制冷和空气调节装置和湿度控制装置
    • US20140230479A1
    • 2014-08-21
    • US14349098
    • 2011-10-28
    • Shinichi ItoFumitake UnezakiMamoru Hamada
    • Shinichi ItoFumitake UnezakiMamoru Hamada
    • F25B30/02
    • F25B30/02F24F3/1429F24F5/0014F24F11/0008F24F12/006Y02B30/563
    • An air-conditioning system includes a pump that sends, to an evaporator, a cooling fluid that exchanges heat with a refrigerant at the evaporator, and a first heat exchanger that exchanges heat between ambient air and the cooling fluid that has undergone the heat exchange at the evaporator. A sensible heat exchange cycle is formed by annularly connecting the evaporator, the heat exchanger, and the pump by using a pipe. This system is also includes an air-sending unit that sends air to a second heat exchanger, moisture absorbing-and-desorbing devices that are provided at a passage of the air sent by the air-sending unit and that are disposed in front of and behind the first heat exchanger, and an air-path switching device that reverses a passing direction of air passing through the moisture absorbing-and-desorbing device, the first heat exchanger, and the moisture absorbing-and-desorbing device.
    • 空调系统包括:泵,其向蒸发器发送与蒸发器中的制冷剂进行热交换的冷却流体;以及第一热交换器,其在环境空气和经过热交换的冷却流体之间进行热交换 蒸发器。 通过使用管道环形连接蒸发器,热交换器和泵来形成明显的热交换循环。 该系统还包括将空气送至第二热交换器的送风单元,设置在由送风单元送出的空气通道的吸湿解吸装置, 在第一热交换器之后,以及使通过吸湿解吸装置,第一热交换器和吸湿解吸装置的空气的通过方向反转的风路切换装置。
    • 47. 发明申请
    • Vapor Compression Dehumidifier
    • 蒸汽压缩除湿机
    • US20130298579A1
    • 2013-11-14
    • US13468852
    • 2012-05-10
    • Steven S. DingleMarco A. TejedaTimothy S. O'BrienTodd R. DeMonteVincent Yu
    • Steven S. DingleMarco A. TejedaTimothy S. O'BrienTodd R. DeMonteVincent Yu
    • F25D17/06F25D17/04F25B29/00
    • F24F3/153F24F3/1405F24F11/0008
    • A dehumidification apparatus comprises an air inlet configured to receive an inlet airflow that is separated into a process airflow and a bypass airflow. An evaporator unit is operable to cool the process airflow by facilitating heat transfer from the process airflow to a flow of refrigerant as the process airflow passes through the evaporator unit. A condenser unit operable to (1) reheat the process airflow by facilitating heat transfer from the flow of refrigerant to the process airflow as the process airflow passes through a first portion of the condenser unit, and (2) heat the bypass airflow by facilitating heat transfer from the flow of refrigerant to the bypass airflow as the bypass airflow passes through a second portion of the condenser unit. The process airflow is discharged into the structure via a process airflow outlet and the bypass airflow is discharged into the structure via a bypass airflow outlet.
    • 除湿装置包括空气入口,其构造成接收分离成过程气流和旁路气流的入口气流。 蒸发器单元可操作以在处理气流通过蒸发器单元时促进从处理气流到制冷剂流的热传递来冷却过程气流。 一种冷凝器单元,其可操作以(1)当处理气流穿过冷凝器单元的第一部分时,促进从制冷剂流向工艺空气流的热传递来再加热过程气流,以及(2)通过促进热量来加热旁路气流 当旁路气流通过冷凝器单元的第二部分时,从制冷剂流转向旁路气流。 工艺气流通过工艺气流出口排放到结构中,旁路气流通过旁路气流出口排入结构。
    • 49. 发明申请
    • INTELLIGENT AIR CONDITIONING SYSTEM FOR A PAINT BOOTH
    • 智能空调系统
    • US20130171920A1
    • 2013-07-04
    • US13777491
    • 2013-02-26
    • Shubho Bhattacharya
    • Shubho Bhattacharya
    • B05B15/12F24F11/00
    • B05B15/1222B05B12/08B05B12/12B05B16/60F24F11/0008
    • A conditioning system that conditions exterior air for use in a spray booth. The exterior air is conditioned and subsequently used to carry away coating mist, dust, and contaminants from a spray area. The conditioning system heats, cools, humidifies, and dehumidifies the exterior air to a variable set point. The variable set point, while bounded by dry-bulb temperature and relative humidity constraints, is selected based upon cost and/or energy minimization. Additionally, the set point selection may be based upon future predicted weather conditions that are determined with a mathematical profile of previous weather conditions and weather trends in a localized domain, where the localized domain is a geographic area surrounding a manufacturing plant that includes a spray booth.
    • 调节外部空气用于喷雾室的调节系统。 外部空气被调节,随后用于从喷雾区域携带涂层雾,灰尘和污染物。 调节系统加热,冷却,加湿并将外部空气除湿到可变设定点。 基于成本和/或能量最小化选择可变设定点,同时受干球温度和相对湿度约束的限制。 另外,设定点选择可以基于未来预测的天气条件,这些天气条件是由局部区域中的先前天气状况和天气趋势的数学概况确定的,其中局部区域是包括喷雾室的制造工厂周围的地理区域 。
    • 50. 发明申请
    • CONTROLLER AND AIR CONDITIONING PROCESSING SYSTEM
    • 控制器和空调处理系统
    • US20130167571A1
    • 2013-07-04
    • US13822938
    • 2011-09-27
    • Yoshihiro Nakagawa
    • Yoshihiro Nakagawa
    • F24F11/00
    • F24F11/0008F24F11/30F24F11/46F24F11/56F24F2110/20F24F2130/00F24F2130/10F24F2140/60
    • A controller controls the operations of a humidity control apparatus and an air conditioner. The controller includes a power consumption detector, a target value setting processor, and an operation control unit. The power consumption detector detects the power consumption of the humidity control apparatus and the air conditioner. The target value setting processor performs optimal target value setting processing by performing first or second processing. The first processing lowers a target operating frequency of a humidity controlling compressor and a target evaporation temperature in a utilization-side heat exchanger. The second processing raises the target operating frequency and the target evaporation temperature. The optimal target value setting processing sets the target operating frequency and the target evaporation temperature so as to minimize the power consumption. The operation control unit controls the humidity control apparatus to achieve the target operating frequency and the air conditioner to achieve the target evaporation temperature.
    • 控制器控制湿度控制装置和空调的操作。 控制器包括功耗检测器,目标值设定处理器和操作控制单元。 功耗检测器检测湿度控制装置和空调的功耗。 目标值设定处理器通过执行第一或第二处理来执行最佳目标值设定处理。 第一处理降低了利用侧热交换器中的调湿压缩机的目标工作频率和目标蒸发温度。 第二个处理提高了目标工作频率和目标蒸发温度。 最佳目标值设定处理将目标工作频率和目标蒸发温度设定为最小化功耗。 操作控制单元控制湿度控制装置以实现目标操作频率和空调以实现目标蒸发温度。