会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Cogeneration system
    • 热电联产系统
    • US07243505B2
    • 2007-07-17
    • US11046815
    • 2005-02-01
    • Eun Jun ChoYun Ho RyuYoung Seob ChoiBaik Young CheongJae Won Lee
    • Eun Jun ChoYun Ho RyuYoung Seob ChoiBaik Young CheongJae Won Lee
    • F25B27/02
    • F25B13/00F25B27/00F25B2327/00F25B2400/06F25B2400/075F25B2500/02Y02E20/14Y02P80/15
    • A cogeneration system including an engine, which drives a generator to generate electricity, a cooling/heating unit, which includes at least one compressor, a four-way valve, an outdoor heat exchanger, an expansion device, and an indoor heat exchanger, to establish a heat pump type refrigerant cycle, and a refrigerant over-heating unit to supply heat of cooling water used to cool the engine to a suction-side refrigerant line of the compressor of the cooling/heating unit, and to supply heat of exhaust gas discharged from the engine to the suction-side refrigerant line of the compressor and to a discharge-side refrigerant line of the compressor. In accordance with the cogeneration system, it is possible to maximize absorption of the waste heat of the engine while preventing compressor malfunction, and thus, to increase the refrigerant condensing temperature of the indoor heat exchanger. Thus, an enhancement in heating performance is achieved.
    • 一种热电联产系统,包括驱动发电机发电的发动机,包括至少一个压缩机,四通阀,室外热交换器,膨胀装置和室内热交换器的冷却/加热单元, 建立热泵式制冷剂循环,以及制冷剂过热单元,其将用于将发动机冷却的冷却水的热量供给到冷却/加热单元的压缩机的吸入侧制冷剂管线,并且提供废气的热量 从发动机排出到压缩机的吸入侧制冷剂管路和压缩机的排出侧制冷剂管路。 根据热电联产系统,可以最大限度地吸收发动机的废热,同时防止压缩机故障,从而提高室内热交换器的制冷剂冷凝温度。 因此,实现了加热性能的提高。
    • 6. 发明申请
    • AIR CONDITIONING SYSTEM AND CONTROL METHOD THEREOF
    • 空调系统及其控制方法
    • US20080223065A1
    • 2008-09-18
    • US12033787
    • 2008-02-19
    • Song ChoiBaik Young ChungYun Ho Ryu
    • Song ChoiBaik Young ChungYun Ho Ryu
    • F25B13/00F25B1/10
    • F25B1/10F25B41/04F25B2400/0401
    • An air conditioning system including an outdoor heat-exchanging unit, at least one indoor heat-exchanging unit, a gaseous refrigerant line connected between the outdoor heat-exchanging unit and the indoor heat-exchanging unit, to allow a refrigerant in a gaseous state to flow between the outdoor heat-exchanging unit and the indoor heat-exchanging unit, and a pressure compensation device for increasing a pressure of the gaseous refrigerant flowing through the gaseous refrigerant line. The pressure compensation device is located along the gaseous refrigerant line at a position closer to the indoor heat-exchanging unit than to the outdoor heat-exchanging unit. A pressure compensation device for use in an air conditioning system is also provided.
    • 一种空调系统,包括室外热交换单元,至少一个室内热交换单元,连接在室外热交换单元与室内热交换单元之间的气态制冷剂管线,以使气态的制冷剂 室外热交换单元和室内热交换单元之间的流动,以及用于增加流过气态制冷剂管线的气态制冷剂的压力的压力补偿装置。 压力补偿装置比室外热交换单元更靠近室内热交换单元的位置沿着气态制冷剂管线配置。 还提供了一种用于空调系统的压力补偿装置。
    • 7. 发明授权
    • Air conditioning system having a pressure compensation device
    • 具有压力补偿装置的空调系统
    • US08141376B2
    • 2012-03-27
    • US12033787
    • 2008-02-19
    • Song ChoiBaik Young ChungYun Ho Ryu
    • Song ChoiBaik Young ChungYun Ho Ryu
    • F25B41/00F25B49/00
    • F25B1/10F25B41/04F25B2400/0401
    • An air conditioning system including an outdoor heat-exchanging unit, at least one indoor heat-exchanging unit, a gaseous refrigerant line connected between the outdoor heat-exchanging unit and the indoor heat-exchanging unit, to allow a refrigerant in a gaseous state to flow between the outdoor heat-exchanging unit and the indoor heat-exchanging unit, and a pressure compensation device for increasing a pressure of the gaseous refrigerant flowing through the gaseous refrigerant line. The pressure compensation device is located along the gaseous refrigerant line at a position closer to the indoor heat-exchanging unit than to the outdoor heat-exchanging unit. A pressure compensation device for use in an air conditioning system is also provided.
    • 一种空调系统,包括室外热交换单元,至少一个室内热交换单元,连接在室外热交换单元和室内热交换单元之间的气态制冷剂管线,以使气态的制冷剂 室外热交换单元和室内热交换单元之间的流动,以及用于增加流过气态制冷剂管线的气态制冷剂的压力的压力补偿装置。 压力补偿装置比室外热交换单元更靠近室内热交换单元的位置沿着气态制冷剂管线配置。 还提供了一种用于空调系统的压力补偿装置。
    • 8. 发明授权
    • Method for controlling air conditioner having multi-compressor
    • 用于控制具有多压缩机的空调的方法
    • US06519957B2
    • 2003-02-18
    • US09964427
    • 2001-09-28
    • Deok HuhYun Ho Ryu
    • Deok HuhYun Ho Ryu
    • F25B700
    • F25B49/022F25B2400/075F25B2600/0251F25B2700/2104
    • Disclosed is a method for controlling an air conditioner having a multi-compressor. The method comprises the steps of: first determining, in order to accomplish a set temperature after a user starts the air conditioner, a cooling load of a room by measuring an on-time for which at least two compressors are run, in a manner such that the more the one-time of the compressors is long, the more the cooling load of the room is judged to be large; and operating the air conditioner by changing a compressing capacity of the compressors in response to a first determined cooing load, in a manner such that, when the cooling load is large, the air conditioner is operated by a first combination of compressors, having a large compressing capacity, and, when the cooling load is small, the air conditioner is operated by a second combination of compressors, having a small compressing capacity.
    • 公开了一种用于控制具有多压缩机的空调的方法。 该方法包括以下步骤:首先确定为了在用户启动空调之后实现设定温度,通过以如下方式测量运行至少两台压缩机的导通时间来确定房间的冷却负荷 压缩机的一次性越长,判断室内的冷却负荷越大; 并且通过以下方式改变压缩机的压缩容量来操作空调机,即,当冷却负荷较大时,空调机由具有大的压缩机的第一组合运行 压缩能力,并且当冷却负荷小时,通过具有小压缩能力的压缩机的第二组合来操作空调。