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    • 2. 发明授权
    • Central air conditioning equipment
    • 中央空调设备
    • US4406397A
    • 1983-09-27
    • US336162
    • 1981-12-31
    • Keiji KamataHikoshiro SuzukiYutaka Fukushi
    • Keiji KamataHikoshiro SuzukiYutaka Fukushi
    • F24F13/06F24F3/048F24F11/04F24F11/047F24F13/14G05D23/19F24F7/00F25B29/00
    • F24F11/04F24F11/047F24F3/048G05D23/1934F24F2011/0038Y10S236/09
    • Central air conditioning equipment which performs air conditioning for a plurality of rooms, comprises a terminal air quantity control unit which is installed in order to communicate with each room and which controls the quantity of the air stream which is distributed to each room through a duct, and an air quantity control device, attached to an air conditioner, which controls a blower to reduce the blown air quantity until at least one of dampers reaches a first position to allow air flow when all of the dampers are not in the first position, which controls the blower to decrease the blown air quantity when an air quantity detected by an air quantity sensor is smaller than an air quantity set by a setter while at least one of the dampers is located in the first position, and which controls the blower to maintain the blown air quantity when the air quantity detected by the air quantity sensor is equal to the air quantity set by the setter.
    • 对多个房间进行空调的中央空调设备包括终端空气量控制单元,其安装为与每个房间通信并且通过管道控制分配给每个房间的空气流量, 以及安装在空气调节器上的空气量控制装置,其控制吹风机以减少吹风空气量,直到阻尼器中的至少一个到达第一位置以允许当所有阻尼器不处于第一位置时气流。 控制鼓风机以在空气量传感器检测到的空气量小于由设定器设定的空气量时减少吹出空气量,同时至少一个风门位于第一位置,并且控制鼓风机保持 当由空气量传感器检测到的空气量等于由设定器设定的空气量时的吹出空气量。
    • 3. 发明授权
    • Air conditioning system
    • 空调系统
    • US4491061A
    • 1985-01-01
    • US536502
    • 1983-09-28
    • Toshio NishizawaKeiji KamataOsamu NonomuraYutaka Fukushi
    • Toshio NishizawaKeiji KamataOsamu NonomuraYutaka Fukushi
    • F24F11/02F24F11/04F25B29/00F24F13/00
    • F24F11/04
    • In an air conditioning system, a damper unit disposed in the middle of a circulating duct is controlled so that a throttle valve of at least one of air quantity regulating devices for controlling incoming outside air quantity and exhaust air quantity is fully open, and that the quantity of air passing through the device whose throttle valve is fully open is equal to a set air quantity. The control system for the damper unit is so-called floating control system that is responsive to the control conditions. If none of the throttle valves of the devices is fully open, then there must be too great a pressure difference to pass the set quantity of air through all the devices. Accordingly, the excessive pressure applied to the devices can be lowered to a proper level by driving the damper unit in an opening direction, thereby reducing pressure loss between the discharging and charging blowers. If the throttle valve of at least one of the devices is fully open, and if the passage air quantity is smaller than the set air quantity, then the pressure applied to the devices must be too small to pass the set quantity of air. Accordingly, the insufficient pressure applied to the devices can be increased to the proper level by driving the damper unit in a closing direction, thereby increasing the resistance between the discharging and charging blowers.
    • 在空调系统中,控制设置在循环管道中间的阻尼器单元,使得用于控制进入的外部空气量和排出空气量的空气量调节装置中的至少一个的节流阀完全打开, 通过节流阀完全打开的装置的空气量等于设定的空气量。 用于阻尼器单元的控制系统是所谓的浮动控制系统,其响应于控制条件。 如果设备的节流阀都没有完全打开,那么必须有太大的压力差才能通过所有设备的设定数量的空气。 因此,通过沿打开方向驱动阻尼器单元,施加到装置的过大的压力可以降低到适当的水平,从而减小排气和充气鼓风机之间的压力损失。 如果至少一个装置的节流阀完全打开,并且如果通过空气量小于设定的空气量,则施加到装置的压力必须太小而不能通过设定量的空气。 因此,通过沿关闭方向驱动阻尼器单元,可以将施加到装置的不足的压力增加到适当的水平,从而增加排气和充气鼓风机之间的阻力。