냉동 사이클 장치, 히트 펌프 급탕 에어컨 및 그 실외기
    1.
    发明公开
    냉동 사이클 장치, 히트 펌프 급탕 에어컨 및 그 실외기 有权
    制冷循环装置,热泵型热水空调机及其室外机

    公开(公告)号:KR1020110074214A

    公开(公告)日:2011-06-30

    申请号:KR1020090131120

    申请日:2009-12-24

    Abstract: PURPOSE: A freezing-cycle device, a heat pump type of an air conditioner with a hot water supplier function, and an outdoor unit of the air conditioner are provided to cool and heat indoor air and to heat water to be used to heat the floor. CONSTITUTION: A freezing-cycle device comprises a refrigerant pipe and firs to fourth bypass pipes(17A~17D). A compressor(12), first and second three-way valves(16A,16B), an outdoor heat exchanger(13), a third three-way valve (16C), an electronic expansion valve, a fourth three-way valve(16D), a water heat exchanger(15), a fifth three-way valve(16E), an indoor heat exchanger(21) are successively connected to the refrigerant pipe. The first bypass pipe connects the first three-way valve to the refrigerant pipe between the fifth three-way valve and the water heat exchanger. The second bypass pipes the second and third three-way valves. The third bypass pipe connects the fourth three-way valve to the indoor heat exchanger. The fourth bypass pipe connects the second and third bypass pipes.

    Abstract translation: 目的:提供冷冻循环装置,具有热水供应器功能的热泵式空调机和空调机的室外机,以冷却和加热室内空气并加热用于加热地板的水 。 构成:冷冻循环装置包括制冷剂管和第四至第四旁通管(17A〜17D)。 压缩机(12),第一和第二三通阀(16A,16B),室外热交换器(13),第三三通阀(16C),电子膨胀阀,第四三通阀(16D ),水热交换器(15),第五三通阀(16E),室内热交换器(21)连续地连接到制冷剂管。 第一旁通管将第一三通阀连接到第五三通阀和水热交换器之间的制冷剂管道。 第二个旁路管道是第二和第三个三通阀。 第三个旁通管将第四个三通阀连接到室内热交换器。 第四旁通管连接第二和第三旁通管。

    히트 펌프 장치 및 그 실외기
    2.
    发明公开
    히트 펌프 장치 및 그 실외기 有权
    热泵装置及其室外装置

    公开(公告)号:KR1020110072250A

    公开(公告)日:2011-06-29

    申请号:KR1020090129105

    申请日:2009-12-22

    Abstract: PURPOSE: A heat pump device and an outdoor unit therefore are provided to use waste heat recovered from a first heat exchange unit for cooling, for the heating operation of a second heat exchange unit. CONSTITUTION: A heat pump device comprises a compressor(10), four-way valves, an outdoor heat exchanger(23), a first expansion unit, a receiver(25), a second expansion unit(27), a third expansion unit(28), heat exchange units and an accumulator(26). The outdoor heat exchanger comprises a first part and a second part. The four-way valves comprise a first four-way valve(21) and a second four-way valve(22). The first four-way valve is connected to the first part of the outdoor heat exchanger. The second four-way valve is arranged in parallel with the first four-way valve. The second four-way valve is connected to the second part of the outdoor heat exchanger. The heat exchange units comprises a first heat exchange unit(3) and a second heat exchange unit(4). The first heat exchanger is connected to the first four-way valve. The second heat exchange unit is connected to the second four-way valve.

    Abstract translation: 目的:提供一种热泵装置和室外机,以利用从第一热交换单元回收的废热用于第二热交换单元的加热运转。 构成:热泵装置包括压缩机(10),四通阀,室外热交换器(23),第一膨胀单元,接收器(25),第二膨胀单元(27),第三膨胀单元 28),热交换单元和蓄能器(26)。 室外热交换器包括第一部分和第二部分。 四通阀包括第一四通阀(21)和第二四通阀(22)。 第一个四通阀连接到室外热交换器的第一部分。 第二四通阀与第一四通阀平行布置。 第二四通阀连接到室外热交换器的第二部分。 热交换单元包括第一热交换单元(3)和第二热交换单元(4)。 第一个热交换器连接到第一个四通阀。 第二热交换单元连接到第二四通阀。

    태양광열 이용장치 및 그 조립방법
    3.
    发明公开
    태양광열 이용장치 및 그 조립방법 无效
    PHOTOHVOLTAIC-THERMAL HYBRID装置及其组装方法

    公开(公告)号:KR1020100073084A

    公开(公告)日:2010-07-01

    申请号:KR1020080131670

    申请日:2008-12-22

    Abstract: PURPOSE: A photovoltaic-thermal hybrid apparatus and an assembly method thereof are provided to obtain a slim photovoltaic-thermal module by embedding a flat solar collector with a solar cell and a cooling path in a frame. CONSTITUTION: A photovoltaic-thermal hybrid apparatus comprises one or more solar collecting units, a solar cell(30), a frame(70), and a plurality of photovoltaic-thermal modules. The solar cell is installed in at least one side of the solar collecting units. The frame surrounds the solar collecting units and the solar cell. The photovoltaic-thermal modules including a flow path part(50) for cooling the solar cell are installed adjacently to each other in the frame. Each flow path part of the photovoltaic-thermal module is connected to the flow path part of at least one adjacent photovoltaic-thermal module.

    Abstract translation: 目的:提供一种光伏热混合设备及其组装方法,通过将具有太阳能电池和冷却路径的扁平太阳能收集器嵌入框架中来获得纤薄的光伏热模块。 构成:光伏热混合设备包括一个或多个太阳能收集单元,太阳能电池(30),框架(70)和多个光伏热模块。 太阳能电池安装在太阳能收集单元的至少一侧。 框架围绕太阳能收集单元和太阳能电池。 包括用于冷却太阳能电池的流路部分(50)的光电热模块在框架中彼此相邻地安装。 光伏热模块的每个流路部分连接至至少一个相邻光电热模块的流路部分。

    히트펌프장치
    6.
    发明公开
    히트펌프장치 审中-实审
    热泵装置

    公开(公告)号:KR1020140054552A

    公开(公告)日:2014-05-09

    申请号:KR1020120120165

    申请日:2012-10-29

    Abstract: Disclosed is a heat pump device capable of increasing water temperature above 50°C without a separate heating source at the process of heating water. The heat pump device comprises: a first condenser, which condenses a first refrigerant; a first heat exchanger, which heat-exchanges the first refrigerant with outside air; an outdoor unit, which is equipped with a first expansion valve for expanding the first refrigerant; a second heat exchanger, which heat-exchanges the first refrigerant with indoor air; an indoor unit, which is equipped with a second expansion valve for expanding the first refrigerant; a second condenser, which condenses a second refrigerant; a third heat exchanger, which heat-exchanges the first refrigerant with the second refrigerant; a fourth heat exchanger, which heat-exchanges the first refrigerant with water; a fifth heat exchanger, which heat-exchanges the second refrigerant with water; a third expansion valve and a fourth expansion valve, which expand the first refrigerant; a hydro unit, which is equipped with a fifth expansion valve for expanding the second refrigerant; a refrigerant flow path switching unit, which switches the flow path of the first refrigerant between the first condenser and the first heat exchanger, between the first condenser and the second heat exchanger, between the first condenser and the third heat exchanger, and between the first condenser and the fourth heat exchanger; and a water flow path switching unit, which switches water flow path so that water flows into either the fourth heat exchanger or the fifth heat exchanger.

    Abstract translation: 公开了一种能够在加热水的过程中不用单独的加热源将水温提高到50℃以上的热泵装置。 热泵装置包括:第一冷凝器,其冷凝第一制冷剂; 第一热交换器,其与外部空气热交换第一制冷剂; 室外机组,其具有用于使第一制冷剂膨胀的第一膨胀阀; 第二热交换器,其与室内空气热交换第一制冷剂; 室内机,其配备有用于使第一制冷剂膨胀的第二膨胀阀; 第二冷凝器,其冷凝第二制冷剂; 第三热交换器,其与第二制冷剂热交换第一制冷剂; 第四热交换器,其与水热交换第一制冷剂; 第五热交换器,其与水热交换第二制冷剂; 第三膨胀阀和第四膨胀阀,其膨胀第一制冷剂; 一个装有第五膨胀阀的液压单元,用于膨胀第二制冷剂; 制冷剂流路切换单元,其将第一冷凝器和第一热交换器之间的第一制冷剂的流路在第一冷凝器和第二热交换器之间,第一冷凝器和第三热交换器之间,以及第一 冷凝器和第四换热器; 以及水流路切换单元,其切换水流路,使水流入第四热交换器或第五热交换器。

    히트펌프 및 그 제어방법
    7.
    发明公开
    히트펌프 및 그 제어방법 审中-实审
    热泵及其控制方法

    公开(公告)号:KR1020140052778A

    公开(公告)日:2014-05-07

    申请号:KR1020120119337

    申请日:2012-10-25

    Abstract: The present invention relates to a control method for a heat pump that provides heating to a heating space through heat exchange between an external air and a refrigerant and between the refrigerant and circulating water. The present invention includes the steps of calculating a maximum permissible frequency of a compressor based on a temperature of the external air and a heating load of a heating space; calculating an average operating frequency of the compressor while operating the compressor according to the calculated maximum permissible frequency; recalculating the maximum permissible frequency based on the results of comparison between the average operating frequency and the maximum permissible frequency; and operating the compressor according to the recalculated maximum permissible frequency. According to the heat pump control method, heating efficiency of the heat pump can be improved.

    Abstract translation: 本发明涉及一种热泵的控制方法,其通过外部空气和制冷剂之间以及制冷剂和循环水之间的热交换向加热空间提供加热。 本发明包括基于外部空气的温度和加热空间的加热负荷来计算压缩机的最大允许频率的步骤; 根据计算的最大允许频率计算压缩机的运行频率; 基于平均工作频率和最大允许频率之间的比较结果重新计算最大允许频率; 并根据重新计算的最大允许频率操作压缩机。 根据热泵控制方法,可以提高热泵的加热效率。

    냉장고 및 그 제어방법
    9.
    发明公开
    냉장고 및 그 제어방법 无效
    制冷机及其控制方法

    公开(公告)号:KR1020100072944A

    公开(公告)日:2010-07-01

    申请号:KR1020080131501

    申请日:2008-12-22

    Inventor: 오재혁 우성제

    Abstract: PURPOSE: A refrigerator and a control method are provided to reduce power consumption by not operating a defrost operation in order to prevent the frosting of an evaporator or delaying the time of a defrosting operation. CONSTITUTION: A refrigerator(1) comprises evaporators(5,9) which are installed in a flow path in which cool air of a storage room circulates, a dehumidifying unit(38) and a regeneration unit(33) which are attachable and detachably installed in both sides with having the evaporator in between, a humidity sensor(62) which senses the humidity of the cool air passing through the dehumidifying unit, a control unit which determines the replacement time of the dehumidifying unit according to the detected humidity, and a display unit which indicates the replacement time of the dehumidifying unit.

    Abstract translation: 目的:提供冰箱和控制方法,以通过不进行除霜操作来减少功率消耗,以防止蒸发器的结霜或延迟除霜操作的时间。 构成:冰箱(1)包括安装在储存室循环的冷气的流路中的蒸发器(5,9),可附接和可拆卸地安装的除湿单元(38)和再生单元(33) 在其间具有蒸发器的两侧,检测通过除湿单元的冷气的湿度的湿度传感器(62),根据检测到的湿度确定除湿单元的更换时间的控制单元,以及 显示单元,其指示除湿单元的更换时间。

    태양전지를 구비한 블라인드 및 그 제어방법
    10.
    发明公开
    태양전지를 구비한 블라인드 및 그 제어방법 无效
    带有太阳能电池的电池及其控制方法

    公开(公告)号:KR1020100072941A

    公开(公告)日:2010-07-01

    申请号:KR1020080131498

    申请日:2008-12-22

    Abstract: PURPOSE: A blind with a solar battery and a control method thereof are provided to reduce manufacturing costs by reducing the installation area of a solar battery attached to the blind. CONSTITUTION: A control method of a blind with a solar battery is as follows. A user inputs an order to an input part(181). A clock part(191) provides current time information. A storage part(190) stores the position information of a blind. A light sensor(123) provides an output value to a control part(180). A driving unit(130) comprises a motor(131) and a motor driving part(130a). The control part controls the position of the blind using the position information.

    Abstract translation: 目的:提供具有太阳能电池的盲人及其控制方法,以通过减少安装在盲人上的太阳能电池的安装面积来降低制造成本。 规定:使用太阳能电池的盲人控制方法如下。 用户向订单输入订单(181)。 时钟部分(191)提供当前时间信息。 存储部(190)存储盲人的位置信息。 光传感器(123)向控制部件(180)提供输出值。 驱动单元(130)包括马达(131)和马达驱动部(130a)。 控制部分使用位置信息来控制盲人的位置。

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