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    • 42. 发明申请
    • AIR-CONDITIONING APPARATUS
    • 空调设备
    • US20140150483A1
    • 2014-06-05
    • US14235898
    • 2011-08-19
    • Keisuke TakayamaKoji AzumaYuji Motomura
    • Keisuke TakayamaKoji AzumaYuji Motomura
    • F25B30/02
    • F25B30/02F25B13/00F25B25/005F25B49/00F25B49/02F25B2313/0231F25B2313/0232
    • An air-conditioning apparatus includes a plurality of intermediate heat exchangers performing the same function (as a condenser or an evaporator) and allows each intermediate heat exchanger to exchange heat between a refrigerant heated or cooled in a refrigeration cycle on a heat source side and a heat medium flowing through a heat medium circuit on a use side such that heat energy produced on the heat source side is transmitted to use side heat exchangers. A controller calculates the difference between a heat medium inlet temperature and a heat medium outlet temperature Two of the use side heat exchanger which is operating to obtain a heat medium temperature difference for the use side heat exchanger, and controls a heat medium flow control device such that the heat medium temperature difference reaches a target heat medium temperature difference.
    • 空调装置包括多个执行相同功能的中间热交换器(作为冷凝器或蒸发器),并且允许每个中间热交换器在热源侧的制冷循环中被加热或冷却的制冷剂和 热介质流过使用侧的热介质回路,使得在热源侧产生的热能传递到使用侧热交换器。 控制器计算热介质入口温度和热介质出口温度之间的差异两个使用侧热交换器,其操作以获得用于侧面热交换器的热介质温度差,并且控制热介质流量控制装置 热介质温差达到目标热介质温差。
    • 43. 发明申请
    • AIR-CONDITIONING APPARATUS
    • 空调设备
    • US20140060105A1
    • 2014-03-06
    • US14115018
    • 2012-05-23
    • Koji AzumaDaisuke ShimamotoOsamu Morimoto
    • Koji AzumaDaisuke ShimamotoOsamu Morimoto
    • F25B30/02
    • F25B30/02F24F3/065F24F11/65F24F11/70F24F11/89F25B13/00F25B25/005F25B2313/0231F25B2313/02334F25B2313/0272F25B2313/02732F25B2313/02741F25B2700/2106
    • An air-conditioning apparatus has a heating only temporary operation mode in which, in changing from a heating main operation mode to a heating only operation mode, when an outside air temperature is at or above a predetermined temperature, at least one of heat exchangers functioning as a condenser in the heating main operation mode continues functioning as the condenser, and the refrigerant is not supplied to the intermediate heat exchanger functioning as an evaporator in the heating main operation mode and a cooling only temporary operation mode in which, in changing from a cooling main operation mode to a cooling only operation mode, when the outside air temperature is at or below a predetermined temperature, at least one of heat exchangers functioning as the evaporator in the cooling main operation mode continues functioning as the evaporator, and the refrigerant is not supplied to the intermediate heat exchanger functioning as the condenser in the cooling main operation mode.
    • 一种空气调节装置仅具有仅加热的临时操作模式,其中在从加热主操作模式转换到仅加热操作模式时,当外部空气温度等于或高于预定温度时,至少一个热交换器起作用 作为加热主运转模式中的冷凝器继续作为冷凝器运转,并且在加热主运行模式和制冷仅临时运转模式中,制冷剂不供给到作为蒸发器起作用的中间热交换器,其中,从 冷却主运行模式为冷却运转模式,当外部空气温度处于或低于预定温度时,在冷却主运行模式下作为蒸发器起作用的热交换器中的至少一个作为蒸发器继续运转,制冷剂为 在冷却主运行模式中不供给作为冷凝器起作用的中间热交换器。
    • 44. 发明申请
    • VIBRATION DAMPING DEVICE
    • 振动阻尼装置
    • US20130104467A1
    • 2013-05-02
    • US13704573
    • 2011-06-14
    • Toshitaka YamaoTakuro KatayamaKoji Azuma
    • Toshitaka YamaoTakuro KatayamaKoji Azuma
    • E04B1/98
    • E04B1/98E04B1/985E04H9/02E04H9/021E04H9/028F16F7/08
    • A vibration damping device for suppressing vibrations of a structure includes: a slide body mechanism having a concave slide body and a convex slide body which are fixed to the structure and are arranged so as to be slidable relative to each other in a reciprocating manner; and a biasing means which pushes the slide bodies to each other. Each slide body has: a first slide surface having a shape which increases a height of the slide body mechanism 2 along with the increase of a displacement amount of the slide body in one sliding direction from a neutral position relative to the counterpart slide body; and a second slide surface having a shape by which the height of the slide body mechanism is increased along with the increase of the displacement of the slide body in the other sliding direction from the neutral position.
    • 一种用于抑制结构振动的减振装置,包括:滑动体机构,其具有固定在该结构体上的凹形滑动体和凸形滑动体,并且能够以往复方式相对于彼此滑动; 以及将滑动体彼此推动的偏置装置。 每个滑动体具有:随着滑动体在相对于对方滑动体的中立位置的一个滑动方向上的位移量的增加而具有增加滑动体机构2的高度的形状的第一滑动表面; 以及第二滑动面,其具有随着滑动体在另一滑动方向上从中立位置的位移的增加而使滑动体机构的高度增大的形状。
    • 50. 发明授权
    • Vibration damping device
    • 减震装置
    • US09051733B2
    • 2015-06-09
    • US13704573
    • 2011-06-14
    • Toshitaka YamaoTakuro KatayamaKoji Azuma
    • Toshitaka YamaoTakuro KatayamaKoji Azuma
    • E04B1/98E02D31/08F16F7/08E04H9/02
    • E04B1/98E04B1/985E04H9/02E04H9/021E04H9/028F16F7/08
    • A vibration damping device for suppressing vibrations of a structure includes: a slide body mechanism having a concave slide body and a convex slide body which are fixed to the structure and are arranged so as to be slidable relative to each other in a reciprocating manner; and a biasing means which pushes the slide bodies to each other. Each slide body has: a first slide surface having a shape which increases a height of the slide body mechanism 2 along with the increase of a displacement amount of the slide body in one sliding direction from a neutral position relative to the counterpart slide body; and a second slide surface having a shape by which the height of the slide body mechanism is increased along with the increase of the displacement of the slide body in the other sliding direction from the neutral position.
    • 一种用于抑制结构振动的减振装置,包括:滑动体机构,其具有固定在该结构体上的凹形滑动体和凸形滑动体,并且能够以往复方式相对于彼此滑动; 以及将滑动体彼此推动的偏置装置。 每个滑动体具有:随着滑动体在相对于对方滑动体的中立位置的一个滑动方向上的位移量的增加而具有增加滑动体机构2的高度的形状的第一滑动表面; 以及第二滑动面,其具有随着滑动体在另一滑动方向上从中立位置的位移的增加而使滑动体机构的高度增大的形状。