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    • 4. 发明申请
    • INDOOR UNIT
    • 室内单位
    • US20160245566A1
    • 2016-08-25
    • US15031800
    • 2014-10-24
    • DAIKIN INDUSTRIES, LTD.
    • Masato HIRAKIShinji NAGAOKAShigeharu TAIRA
    • F25B49/00
    • F25B49/005F24F1/0007F24F11/36F24F11/83F24F2001/004F25B49/02F25B2313/0293F25B2400/12F25B2500/222
    • An indoor unit includes: a casing; a heat exchanger through which a flammable refrigerant flows; a fan; a detection sensor detecting a leak of the flammable refrigerant; a warning device emitting a warning about a leak of the flammable refrigerant; a control unit controlling operations of the fan and the warning device; and an operation device inputting stop commands for the fan and the warning device to the control unit based on its manual operation. Upon detection of a leak of the flammable refrigerant by the detection sensor, the control unit starts up the fan on condition that the fan is at a stop, starts up the warning device, disregards a stop command for the fan by the operation device, and permits a stop command for the warning device by the operation device. As a result, a user is enabled to arbitrarily stop a warning started based on occurrence of a refrigerant leak.
    • 室内机包括:壳体; 易燃制冷剂流过的热交换器; 粉丝; 检测所述可燃性制冷剂的泄漏的检测传感器; 警告装置发出关于可燃性致冷剂的泄漏的警告; 控制单元,控制风扇和警告装置的操作; 以及操作装置,基于其手动操作向风扇和警告装置输入停止命令到控制单元。 在通过检测传感器检测到可燃性制冷剂的泄漏的情况下,控制单元在风扇停止的状态下启动风扇,启动警告装置,忽视操作装置对风扇的停止命令,以及 允许操作装置对警告装置执行停止命令。 结果,使用者能够任意地停止基于制冷剂泄漏的发生开始的警告。
    • 9. 发明授权
    • System for purification of air in an inner space
    • 内部空间净化系统
    • US08366817B2
    • 2013-02-05
    • US12806330
    • 2010-08-10
    • Gennady Ulunov
    • Gennady Ulunov
    • B01D47/00
    • F24F3/14F24F1/0003F24F2001/004F24F2001/0051F24F2003/1617F24F2003/1667F24F2006/006F24F2006/008Y02A50/21
    • A system for purification of air in an inner space has a housing having air inlet unit and air outlet units; air filtering means located in the housing between the air inlet unit and the air outlet units; and vertical attachment attached to the air outlet units and extending vertically upwardly so that air enters the housing at a lower level through the air inlet units and leaves the system at an outlet of the attachment at a level substantially higher than the level of the inlet units and air conditioner located in said housing, a humidifier located in the vertical attachment, a water container for supplying water to said humidifier. The air conditioner is connected with the water container so that a spray of water from the air conditioner flows into the container.
    • 用于在内部空间中净化空气的系统具有壳体,其具有进气单元和空气出口单元; 空气过滤装置,位于空气入口单元和出气单元之间的壳体中; 并且垂直附接附接到空气出口单元并且垂直向上延伸,使得空气通过空气入口单元在较低的水平处进入壳体,并将该系统在附件的出口处以基本上高于入口单元的水平的水平离开 和位于所述壳体中的空调器,位于垂直附件中的加湿器,用于向所述加湿器供水的水容器。 空气调节器与水容器连接,使得来自空调的水的喷雾流入容器。
    • 10. 发明申请
    • DISPLACEMENT-INDUCTION NEUTRAL WALL AIR TERMINAL UNIT
    • 位移感应中性空气终端单元
    • US20120270494A1
    • 2012-10-25
    • US13090988
    • 2011-04-20
    • Daniel P. McCarty
    • Daniel P. McCarty
    • F24F7/00
    • F24F1/0007F24D1/00F24D3/02F24D10/003F24D19/0087F24D19/1003F24D19/1009F24F1/0033F24F1/01F24F2001/004F24F2221/34F24F2221/54
    • An induction-displacement neutral wall air terminal unit includes a housing defining a supply airflow path, a connected return airflow path, and a heating airflow path separated from the supply and return airflow paths by at least one interior wall. The unit also includes a plurality of induction-type nozzles located within the supply airflow path, that are deliver a ventilation air flow stream into the supply air flow path. The nozzles induce a return air flow stream through the return air flow path that mixes with the ventilation air flow stream to form a supply air flow stream delivered to a supply air outlet. A heating element is disposed within the heating airflow path to heat air within the heating air flow path. A plurality of fans may be placed within the heating airflow path to increase the overall heating capacity of the unit.
    • 感应位移中性壁空气端子单元包括限定供应气流路径的壳体,连接的返回气流路径和通过至少一个内壁与供气和返回气流路径分离的加热气流路径。 该单元还包括位于供应气流路径内的多个感应型喷嘴,其将通风空气流输送到供应空气流动路径中。 喷嘴引导回流气流通过返回空气流动路径,与回流空气流动流混合,形成输送到供气口的供气流。 加热元件设置在加热气流路径内,以加热加热空气流路中的空气。 多个风扇可以被放置在加热气流路径内以增加单元的总体加热能力。