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    • 2. 发明申请
    • Cogeneration system
    • 热电联产系统
    • US20060123820A1
    • 2006-06-15
    • US11155467
    • 2005-06-20
    • Cheol KimCheol KoSim HaBaik Chung
    • Cheol KimCheol KoSim HaBaik Chung
    • F25B13/00F25B27/00F25D21/00
    • F25B27/02F25B13/00F25B2313/02523Y02A30/274Y02E20/14
    • A cogeneration system including a heat pump type air conditioner including an outdoor heat exchanger and an outdoor heat exchanger bypass conduit, and a cogeneration unit including a second outdoor heat exchanger, an outdoor heat exchanger bypass conduit, second outdoor heat exchanger connecting conduits, and second outdoor heat exchanger bypass conduit to cause the refrigerant to be evaporated in the second outdoor heat exchanger during a heating operation of the heat pump type air conditioner, and to cause the refrigerant to be condensed in the outdoor heat exchanger during a cooling operation of the heat pump type air conditioner, so that the heat pump type air conditioner can provide a constant heating capacity irrespective of a variation in outdoor temperature during the heating operation thereof.
    • 一种热电联产系统,包括具有室外热交换器和室外热交换器旁通管道的热泵式空调机,以及包括第二室外热交换器,室外热交换器旁通管道,第二室外热交换器连接管道和第二室外热交换器旁通管道的热电联产机 室外热交换器旁路管道,在热泵式空调机的制热运转时使第二室外热交换器中的制冷剂蒸发,并且在制热运转中使制冷剂在室外热交换器中冷凝 泵式空调器,使得热泵式空调器可以提供恒定的加热能力,而不管室外温度在其加热操作期间的变化。
    • 3. 发明申请
    • Apparatus and method for monitoring state information in trial run mode of multi-airconditioner
    • 多空调试机运行方式状态信息监控装置及方法
    • US20060123808A1
    • 2006-06-15
    • US11249432
    • 2005-10-14
    • Kwang KimSe ChangBaik ChungJeong Oh
    • Kwang KimSe ChangBaik ChungJeong Oh
    • G01K13/00F25B5/00
    • F24F11/30F24F11/54F24F11/62F25B49/005
    • An apparatus and method for monitoring state information in a trial run mode of a multi-airconditioning system in which a plurality of indoor units are controlled by only one outdoor unit is disclosed. The apparatus and method connects a dedicated controller to the outdoor unit in a trial run mode of the multi-airconditioning system, such that it controls the indoor units and monitors state information of the indoor and outdoor units. The apparatus includes a trial-run-mode controller and a control input & state display unit. The trial-run-mode controller connected to the outdoor unit includes a trial-run-mode program for automatically detecting poor installation of the multi-airconditioning system. The control input & state display unit is connected to the trial-run-mode controller, enters control signals capable of performing control and monitoring operations of the trial run mode executed after the multi-airconditioning system has been installed, and outputs information associated with the control signals.
    • 公开了一种用于监视多个室内单元仅由一个室外单元控制的多空调系统的试运行模式中的状态信息的装置和方法。 该装置和方法以多空调系统的试运行方式将专用控制器连接到室外机,从而控制室内单元并监视室内和室外单元的状态信息。 该装置包括一个试运行模式控制器和一个控制输入和状态显示单元。 连接到室外机的试运行模式控制器包括用于自动检测多空调系统的安装不良的试运行程序。 控制输入​​和状态显示单元连接到试运行模式控制器,输入能够执行在安装了多空调系统之后执行的试运行模式的控制和监视操作的控制信号,并输出与 控制信号。
    • 5. 发明申请
    • Air conditioner
    • 冷气机
    • US20060080990A1
    • 2006-04-20
    • US11249706
    • 2005-10-14
    • Yoon LeeSong ChoiBaik ChungSe Chang
    • Yoon LeeSong ChoiBaik ChungSe Chang
    • F25B13/00F25B1/10
    • F25B31/004F25B1/10F25B13/00F25B2500/02F25B2700/1931F25B2700/1933F25B2700/2106
    • Disclosed is an air conditioner. The air conditioner a main compressor for compressing a refrigerant; a four-way valve disposed at a discharge side of the main compressor and switching a fluid path; an outdoor heat exchanger having one side connected with the four-way valve; an indoor heat exchanger having one side connected with the outdoor heat exchanger and the other side connected with the four-way valve; an expansion valve disposed between the outdoor heat exchanger and the indoor heat exchanger; and an auxiliary compression unit for reducing the load on the main compressor. Accordingly, since the load on the main compressor decreases, efficiency and reliability of the main compressor are enhanced and noises are reduced. In addition, an instrumental part such as a bearing inside the main compressor is not subject to abrasion and high heat damage to a motor unit is prevented.
    • 公开了一种空调。 空调机是用于压缩制冷剂的主压缩机; 四通阀,设置在主压缩机的排出侧并切换流体路径; 一侧与四通阀连接的室外热交换器; 室内热交换器,其一侧与室外热交换器连接,另一侧与四通阀连接; 设置在室外热交换器和室内热交换器之间的膨胀阀; 以及用于减小主压缩机上的负载的辅助压缩单元。 因此,由于主压缩机上的负载下降,主压缩机的效率和可靠性提高,噪音降低。 此外,诸如主压缩机内部的轴承的工具部件不会磨损,并且防止对电动机单元的高热损坏。
    • 6. 发明申请
    • Ventilating system
    • 通风系统
    • US20060021742A1
    • 2006-02-02
    • US11147346
    • 2005-06-08
    • Gi LeeKyung KimHo KimIn ChoiBaik Chung
    • Gi LeeKyung KimHo KimIn ChoiBaik Chung
    • F28F3/08
    • F24F12/006Y02B30/563
    • Disclosed is a compact ventilating system, in which a heat exchange is carried out between the indoor air being exhausted to the outside of a room and the outdoor air being supplied to the inside of the room. The ventilating system includes a case fluid-communicated with the inside of a room and the outside of the room. An air-supply fan unit is secured to the case and introduces the outside air into the inside of the room. An air-exhaust fan unit is secured to the case and exhausts the indoor air to the outside of the room. A pre-heat exchanger is provided inside the case so as to face the air-supply fan unit and the air-exhaust fan unit. The pre-heat exchanger carries out a heat exchange between the indoor air and the outdoor air.
    • 公开了一种紧凑的通风系统,其中在被排出到室外的室内空气和供应到房间内部的室外空气之间进行热交换。 通气系统包括与房间内部和室外流体连通的箱体。 供气风扇单元被固定到壳体并将外部空气引入房间的内部。 排风扇单元固定在箱体上,并将室内空气排出到室外。 在壳体内设置预热交换器,以便面对供气风扇单元和排风扇单元。 预热交换器在室内空气与室外空气之间进行热交换。
    • 9. 发明申请
    • Hybrid generation system and control method thereof
    • 混合发电系统及其控制方法
    • US20060259200A1
    • 2006-11-16
    • US11432513
    • 2006-05-12
    • Chang ChoiYeong ChoeWon ChoiJae LeeBaik ChungSe Chang
    • Chang ChoiYeong ChoeWon ChoiJae LeeBaik ChungSe Chang
    • H02P9/00H02J13/00
    • H02J3/005
    • The present invention relates to a hybrid generation system and a control method thereof. The hybrid generation system can maximize operation efficiency of a generator by selectively supplying normal utility power or power, which is generated by the generator, based on a power level supplied to a load. A hybrid generation system includes a generator and a generator controller. The generator generates power, and the generator controller performs a control activity to supply one of the normal utility power and the generated power to the load. The selective supply of the normal utility power or the generated power can maximize efficiency of the generator and as a result, a power consumption level of the hybrid generation system can be decreased, thereby reducing related costs.
    • 本发明涉及混合发电系统及其控制方法。 混合发电系统可以通过基于提供给负载的功率电平选择性地提供由发电机产生的正常公用电力或功率来最大化发电机的运行效率。 混合发电系统包括发电机和发电机控制器。 发电机产生电力,发电机控制器执行控制活动,以向负载提供正常公用电力和发电功率之一。 选择性地供应正常公用电力或产生的电力可以最大化发电机的效率,结果可以降低混合发电系统的功率消耗水平,从而降低相关成本。
    • 10. 发明申请
    • Cogeneration system
    • 热电联产系统
    • US20060242977A1
    • 2006-11-02
    • US11412137
    • 2006-04-27
    • Eun ChoSim HaBaik ChungCheol KimSe Chang
    • Eun ChoSim HaBaik ChungCheol KimSe Chang
    • F25B27/00F25B13/00
    • F25B27/00F25B13/00F25B2313/0253F25B2600/021Y02B30/741Y02E20/14Y02P80/15Y02P80/152
    • A cogeneration system according to the present invention includes a waste heat supply heat exchanger that supplies waste heat, which is recovered from an engine, to a suction unit side of a compressor. Accordingly, the present invention is advantageous in that it can maximize the use efficiency of the waste heat. Furthermore, a low compression inverter type compressor having a compression ratio of 1.5 to 2.5, which is lower than that of the related art, is used. Therefore, the present invention is advantageous in that it can maximize the efficiency of the system since the waste heat supplied from the waste heat supply heat exchanger can be utilized to a greater extent. The present invention is also advantageous in that it can prevent damage to the compressor and can save consumption power since a difference in pressure between the suction and discharge units of the compressor becomes small.
    • 根据本发明的热电联产系统包括将从发动机回收的废热提供给压缩机的吸入单元侧的废热供给热交换器。 因此,本发明的优点在于能够使废热的使用效率最大化。 此外,使用比现有技术低的压缩比为1.5〜2.5的低压缩型逆变式压缩机。 因此,本发明的优点在于,由于可以更大程度地利用从废热供给用热交换器供给的废热,能够使系统的效率最大化。 本发明的优点在于,能够防止压缩机的损坏,并且能够节省消耗功率,因为​​压缩机的吸入和排出单元之间的压力差变小。