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    • 51. 发明授权
    • Multi-room type air-conditioner
    • 多房型空调
    • US6044652A
    • 2000-04-04
    • US171046
    • 1998-10-07
    • Yoshikazu NishiharaKeiji NakaoHisao Kusuhara
    • Yoshikazu NishiharaKeiji NakaoHisao Kusuhara
    • F24F11/02F24F3/06F24F11/00F25B1/00F25B13/00F25B49/02F25B7/00F24F3/00
    • F25B13/00F24F11/008F24F3/065F25B49/022F25B2313/023
    • This invention aims to provide more comfortable air-conditioning and save energy by exerting capacity of an air-conditioning system responsive to requested capacities from plural rooms through the following process: first, establish a refrigerating cycle for a multi-room air-conditioning system, second, obtain data from differential temperature calculation means, capacity storing means, ON-OFF recognition means and load constant storing means, then calculate a compressor's capacity at a predetermined cycle, and provide compressor capacity control means which controls the capacity of variable capacity compressor based on the calculation result, and also provide operating unit recognition means which recognizes a number of operating units through the ON-OFF recognition means, finally, change a method of controlling the compressor capacity depending on the number of operating units.
    • PCT No.PCT / JP98 / 00497 Sec。 371日期:1998年10月7日 102(e)日期1998年10月7日PCT 1998年2月6日PCT PCT。 第WO98 / 35189号公报 日期1998年8月13日本发明旨在通过以下过程响应多个房间的要求能力,通过发挥空调系统的能力来提供更舒适的空调和节能:首先,建立多房间的制冷循环 空调系统,其次,从差分温度计算装置,容量存储装置,开 - 关识别装置和负载常数存储装置获取数据,然后以预定的周期计算压缩机的容量,并提供控制容量的压缩机容量控制装置 基于计算结果的可变容量压缩机,并且还提供通过ON-OFF识别装置识别多个操作单元的操作单元识别装置,最后根据操作单元的数量改变控制压缩机容量的方法。
    • 52. 发明授权
    • Air conditioning system
    • 空调系统
    • US5907956A
    • 1999-06-01
    • US961311
    • 1997-10-30
    • Hidetoshi ArimaKazuhiro ShimuraNaohito SakamotoMamoru KuboAkira Hatakeyama
    • Hidetoshi ArimaKazuhiro ShimuraNaohito SakamotoMamoru KuboAkira Hatakeyama
    • F24F11/00F25B25/00F24F5/00
    • F24F11/008F25B25/005
    • In an air conditioning system comprising a heat source side machine for condensing a fluid which can change a phase between a liquid phase and a gas phase to a predetermined temperature and for supplying, and a plurality of user side machines more than half of which are disposed below said heat source side machine, in which piping is constructed in such a manner as to circulate the fluid supplied from said heat source side machine by using a difference in specific gravity between the liquid phase and the gas phase, between said heat source side machine and said user side machine and a cooling of said user side machine is performed by evaporating said fluid in said user side machine, the heat source side machine is provided with a control means for descending a set temperature of said fluid discharged from said heat source side machine after condensed by changing the operating capacity of said heat source side machine when a state that the temperature of said fluid returned back after evaporated in the user side machine at a time of a cooling is higher than a predetermined temperature continues for a predetermined time period. Accordingly, even when the cooling effect is insufficient due to the super-heated state of the fluid in the user side machine, the super-heated state of the fluid is resolved after the predetermined time has passed, thereby returning to the normal cooling
    • 在一种空调系统中,包括一个用于冷凝可将液相和气相之间的相位改变到预定温度并用于供应的流体的热源侧机器,以及多个其中一半以上的用户侧机器 在所述热源侧机器的下方,在所述热源侧机器中,通过使用液相和气相之间的比重差在所述热源侧机器之间循环从所述热源侧机器供给的流体, 并且所述用户侧机器和所述用户侧机器的冷却通过蒸发所述用户侧机器中的所述流体而进行,所述热源侧机器设置有控制装置,用于使从所述热源侧排出的所述流体的设定温度下降 机器在通过改变所述热源侧机器的操作能力而被冷凝后,当所述流体的温度在e 在冷却时在用户侧机器中蒸发高于预定温度持续预定时间段。 因此,即使由于使用者机器中的流体的超加热状态而导致的冷却效果不充分,在预定时间过去之后,流体的过热状态被解除,从而返回正常冷却
    • 57. 发明授权
    • Heating, ventilation, and air conditioning system
    • 暖气,通风和空调系统
    • US09587849B2
    • 2017-03-07
    • US13782296
    • 2013-03-01
    • Stephen Schlesinger
    • Stephen Schlesinger
    • F25B27/00F24F11/00F24F3/044F25B49/02F25B13/00
    • F24F11/008F24F3/044F24F11/83F24F2203/02F25B13/00F25B27/00F25B49/02F25B2313/0293F25B2600/0253Y02B30/741Y02B30/767
    • A high-efficiency HVAC system and method of operation, for use in a house or building, having a plurality of components, including flexible, plastic duct tubing forming supply pipes that connect an air handler and a plurality of zones to deliver supply air to the zones and return pipes that connect the air handler and the zones to re-circulate return air; the air handler having a fan assembly powered by a variable blower motor to blow supply air to the zones; a heat pump having a variable compressor powered by a variable compressor motor to direct a working fluid to and from the air handler and a variable fan motor that rotates a fan blade within the heat pump; and a circuit control system for adjusting the variable compressor motor and the variable fan motor in the heat pump and the variable blower motor in the air handler.
    • 一种高效率HVAC系统和操作方法,用于房屋或建筑物中,具有多个部件,包括柔性的塑料管道管道,其形成连接空气处理器和多个区域的供应管道,以将供应空气输送到 连接空气处理器和区域的区域和回流管道以再循环回流空气; 所述空气处理器具有由可变鼓风机马达供电的风扇组件,以将空气吹送到所述区域; 具有由可变压缩机电动机驱动的可变压缩机的热泵,以将工作流体引导到空气处理器和从空气处理器引导工作流体;以及可变风扇电动机,其使所述热泵内的风扇叶片旋转; 以及用于调节热泵中的可变压缩机电动机和可变风扇电动机的电路控制系统以及空气处理机中的可变风机电动机。