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公开(公告)号:US07871252B2
公开(公告)日:2011-01-18
申请号:US10556346
申请日:2004-04-30
申请人: Ji Young Bae , Kyoung Jun Park , Chang Yong Jang , Chul Gi Roh , Jong Bong Kim , Young Hwan Ko
发明人: Ji Young Bae , Kyoung Jun Park , Chang Yong Jang , Chul Gi Roh , Jong Bong Kim , Young Hwan Ko
CPC分类号: F04C23/008 , F01C21/108 , F04C18/3564 , F04C28/04 , F04C28/14
摘要: A rotary compressor includes a driving shaft rotatable clockwise and counterclockwise, and an eccentric portion of a predetermined size; a cylinder forming a predetermined inner volume; a roller installed rotatably on an outer circumference of the eccentric portion to contact an inner circumference of the cylinder; a vane installed elastically in the cylinder to contact the roller continuously; a first bearing installed in the cylinder, for supporting the driving shaft rotatably; a second bearing rotatably supporting the driving shaft and preliminarily storing the fluid to be sucked; discharge ports communicating with the fluid chamber; and a valve assembly having openings separated by predetermined angle from each other, wherein compression spaces that have different volumes from each other are formed in the fluid chamber according to the rotation direction of the driving shaft so that two different compression capacities are formed.
摘要翻译: 旋转压缩机包括顺时针和逆时针可旋转的驱动轴和预定尺寸的偏心部分; 形成预定内容积的圆筒; 可旋转地安装在所述偏心部分的外周上以与所述气缸的内周接触的辊; 安装在气缸中的叶片连续接触滚筒; 安装在气缸中的第一轴承,用于可旋转地支撑驱动轴; 第二轴承,其可旋转地支撑所述驱动轴并预先存储要吸入的流体; 与流体室连通的排出口; 以及具有彼此分开预定角度的开口的阀组件,其中根据驱动轴的旋转方向在流体室中形成彼此不同的压缩空间,从而形成两个不同的压缩容量。
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公开(公告)号:US20090218077A1
公开(公告)日:2009-09-03
申请号:US12160097
申请日:2007-01-03
申请人: Young Hwan Ko , Hyuk Soo Lee , Bum Suk Kim , Sang Kyoung Park , Byung Soon Kim
发明人: Young Hwan Ko , Hyuk Soo Lee , Bum Suk Kim , Sang Kyoung Park , Byung Soon Kim
CPC分类号: F25B13/00 , F25B1/10 , F25B31/004 , F25B43/00 , F25B43/006 , F25B2313/02741 , F25B2341/0662 , F25B2400/075 , F25B2400/0751 , F25B2400/13 , F25B2400/23 , F25B2500/01 , F25B2600/0253 , F25B2600/2509 , F25B2600/2519 , Y02B30/741
摘要: The present invention discloses an air conditioning system comprises a phase separator separating a gaseous refrigerant and a liquid refrigerant from a flowing refrigerant, an evaporator evaporating the liquid refrigerant separated by the phase separator, and at least one compressor including a first compressing part receiving the refrigerant via the evaporator and a second compressing part receiving both of the gaseous refrigerant separated by the phase separator and the refrigerant via the first compressing part, wherein a volume of a first cylinder of the first compressing part is different from a volume of a second cylinder of the second compressing part.
摘要翻译: 本发明公开了一种空调系统,包括从流动制冷剂分离气态制冷剂和液体制冷剂的相分离器,蒸发由相分离器分离的液体制冷剂的蒸发器和至少一个压缩机,该压缩机包括接收制冷剂的第一压缩部件 通过蒸发器和第二压缩部件,其接收由相分离器分离的气态制冷剂和经由第一压缩部件的制冷剂,其中第一压缩部件的第一气缸的体积与第一压缩部件的第二气缸的体积不同, 第二压缩部。
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公开(公告)号:US07918098B2
公开(公告)日:2011-04-05
申请号:US12213486
申请日:2008-06-19
申请人: Young Hwan Ko , Bum Suk Kim , Man Ho Chun
发明人: Young Hwan Ko , Bum Suk Kim , Man Ho Chun
CPC分类号: F25B13/00 , F25B1/10 , F25B41/04 , F25B49/02 , F25B2313/02741 , F25B2313/0314 , F25B2313/0315 , F25B2341/0662 , F25B2400/13 , F25B2400/23 , F25B2500/28 , F25B2600/21 , F25B2600/2509 , F25B2700/1931 , F25B2700/21151 , F25B2700/21152
摘要: An air conditioning system can improve the cooling/heating performance of the system because the injection of refrigerant into the compressor is achieved. The air conditioning system can further improve the cooling/heating performance in a low temperature region by injecting refrigerant as a two-phase refrigerant or a superheated vapor state into the compressor. The air conditioning system can prevent damage of the compressor and further improve reliability by controlling such that the ratio of a liquid refrigerant in the refrigerant injected into the compressor may be less than a set value.
摘要翻译: 空调系统可以提高系统的冷却/加热性能,因为实现了将制冷剂注入压缩机。 空调系统可以通过将制冷剂作为二相制冷剂或过热蒸汽状态注入压缩机,从而进一步提高低温区域的制冷/制热性能。 空调系统可以防止压缩机的损坏,并通过控制使得注入到压缩机中的制冷剂中的液体制冷剂的比例可能小于设定值来进一步提高可靠性。
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公开(公告)号:US07854602B2
公开(公告)日:2010-12-21
申请号:US10556428
申请日:2004-04-27
申请人: Ji Young Bae , Chul Gi Roh , Kyoung Jun Park , Chang Yong Jang , Jong Bong Kim , Young Hwan Ko
发明人: Ji Young Bae , Chul Gi Roh , Kyoung Jun Park , Chang Yong Jang , Jong Bong Kim , Young Hwan Ko
CPC分类号: F04C28/14 , F04C18/3564 , F04C28/04 , Y10T137/86638
摘要: A rotary compressor for changing a compression capacity of the compressor includes a driving shaft being rotatable clockwise and counterclockwise, and having an eccentric portion of a predetermined size; a cylinder forming a predetermined inner volume; a roller installed rotatably on an outer circumference of the eccentric portion so as to contact an inner circumference of the cylinder; a vane installed elastically in the cylinder to contact the roller continuously; a first bearing installed in the cylinder, for rotatably supporting the driving shaft; a second bearing installed in the cylinder, for rotatably supporting the driving shaft and guiding the fluid into the fluid chamber; discharge ports communicating with the fluid chamber; and a valve assembly having openings separated by a predetermined angle from each other, the valve assembly having a center which is eccentrically installed by a predetermined distance from a center of the cylinder.
摘要翻译: 用于改变压缩机的压缩容量的旋转式压缩机包括可顺时针和逆时针旋转的驱动轴,并具有预定尺寸的偏心部分; 形成预定内容积的圆筒; 可旋转地安装在所述偏心部的外周上以与所述气缸的内周接触的辊; 安装在气缸中的叶片连续接触滚筒; 安装在所述气缸中的用于可旋转地支撑所述驱动轴的第一轴承; 安装在气缸中的第二轴承,用于可旋转地支撑驱动轴并将流体引导到流体室中; 与流体室连通的排出口; 以及具有彼此分开预定角度的开口的阀组件,所述阀组件具有偏心地安装在距所述气缸中心预定距离的中心。
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公开(公告)号:US07849705B2
公开(公告)日:2010-12-14
申请号:US11730921
申请日:2007-04-04
申请人: Hyuk Soo Lee , Young Hwan Ko , Byung Soon Kim
发明人: Hyuk Soo Lee , Young Hwan Ko , Byung Soon Kim
CPC分类号: F25B43/003 , C22C1/08 , F25B2500/01 , F25B2500/12
摘要: An air conditioning system, comprising: a channel to carry a flow of refrigerant, and a first noise reducer to change at least one property of the refrigerant as the refrigerant flows through the channel.
摘要翻译: 一种空调系统,包括:用于承载制冷剂流动的通道,以及第一降噪器,用于当制冷剂流过通道时改变制冷剂的至少一个特性。
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公开(公告)号:US20100275624A1
公开(公告)日:2010-11-04
申请号:US12223163
申请日:2007-02-15
申请人: Hyuk Soo Lee , Young Hwan Ko , Byung Soon Kim
发明人: Hyuk Soo Lee , Young Hwan Ko , Byung Soon Kim
CPC分类号: F25B49/02 , F24F11/83 , F25B1/10 , F25B13/00 , F25B2313/02741 , F25B2341/0662 , F25B2400/13 , F25B2400/23 , F25B2500/19 , F25B2600/0253 , F25B2600/2509 , F25B2600/2513 , F25B2700/19 , F25B2700/2104 , F25B2700/2106 , F25B2700/2109 , Y02B30/741
摘要: An air-conditioning system and a controlling method for the same that is capable of improving the operational efficiency of the air-conditioning system are disclosed. The air-conditioning system includes a phase separator (500) for separating a flowing refrigerant into a gas-phase refrigerant and a liquid-phase refrigerant, an evaporator (600) for evaporating the liquid-phase refrigerant separated by the phase separator (500), a compressor (100) having a first compression part into which the refrigerant having passed through the evaporator (600) is introduced and a second compression part into which both the gas-phase refrigerant separated by the phase separator (500) and the refrigerant having passed through the first compression part are introduced, and a control unit for simultaneously or selectively controlling the amount of the refrigerant introduced into the phase separator (500) and the amount of the refrigerant discharged from the phase separator (500).
摘要翻译: 公开了一种能够提高空调系统的运行效率的空调系统及其控制方法。 空调系统包括用于将流动的制冷剂分离成气相制冷剂和液相制冷剂的相分离器(500),用于蒸发由相分离器(500)分离的液相制冷剂的蒸发器(600) ,具有通过蒸发器(600)的制冷剂被引入到其中的第一压缩部的压缩机(100)和由所述相分离器(500)分离的所述气相制冷剂与所述制冷剂分离的第二压缩部, 引入通过第一压缩部的控制单元,以及用于同时或选择性地控制引入相分离器(500)的制冷剂量和从相分离器(500)排出的制冷剂量的控制单元。
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公开(公告)号:US20100131115A1
公开(公告)日:2010-05-27
申请号:US12312457
申请日:2007-10-23
申请人: Bum Suk Kim , Sang Kyoung Park , Young Hwan Ko , Hyuk Soo Lee
发明人: Bum Suk Kim , Sang Kyoung Park , Young Hwan Ko , Hyuk Soo Lee
IPC分类号: G05D7/00
CPC分类号: F25B13/00 , F25B1/10 , F25B2313/02741 , F25B2341/0662 , F25B2400/13 , F25B2400/23 , F25B2500/19 , F25B2500/28 , F25B2600/21 , F25B2600/2513 , F25B2700/197 , F25B2700/21151 , F25B2700/21175
摘要: The present invention relates to a controlling method of an air conditioner. The controlling method of an air conditioner having a phase separator, an expansion valve, a control valve, an evaporator, a multistage compressor, and a condenser, includes the steps of sensing an order to operate the air conditioner, stabilizing the air conditioner, setting a degree of superheat of refrigerant in the air conditioner, and setting an optimum intermediate pressure of the refrigerant of the air conditioner.
摘要翻译: 本发明涉及空调的控制方法。 具有相分离器,膨胀阀,控制阀,蒸发器,多级压缩机和冷凝器的空调的控制方法包括以下步骤:感测空调的操作顺序,稳定空调,设定 空气调节器中的制冷剂的过热度,并且设定空气调节器的制冷剂的最佳中间压力。
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公开(公告)号:US20090165481A1
公开(公告)日:2009-07-02
申请号:US12213292
申请日:2008-06-17
申请人: Young Hwan Ko , Bum Suk Kim , Man Ho Chun , Sang Kyoung Park
发明人: Young Hwan Ko , Bum Suk Kim , Man Ho Chun , Sang Kyoung Park
CPC分类号: F25B49/005 , F25B2400/01 , F25B2400/0401 , F25B2400/13 , F25B2500/11 , F25B2500/28 , F25B2600/2509
摘要: It is possible to prevent that a liquid refrigerant is included in a refrigerant injected into a compressor. Accordingly, the risk of liquid compression of the compressor is greatly reduced, thereby decreasing the possibility of damage to the compressor and improving reliability and performance.
摘要翻译: 可以防止在注入到压缩机中的制冷剂中包含液体制冷剂。 因此,压缩机的液体压缩的风险大大降低,从而降低了压缩机损坏的可能性并提高了可靠性和性能。
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公开(公告)号:US20080131274A1
公开(公告)日:2008-06-05
申请号:US11547784
申请日:2004-08-19
申请人: In Gyu Kim , Byung Il Park , Ja Hyung Koo , Yang Ho Kim , Kyeong Wook Heo , Si Kyong Sung , Dong Hyuk Lee , Young Hwan Ko , Jun Hyeon Hwang , Ho Jin Song , Jin Seong Hwang , Young Ho Hong , Hwan Jong Choi , Geun Bae Hwang , Chun Su Kang , Tac Geun Kim
发明人: In Gyu Kim , Byung Il Park , Ja Hyung Koo , Yang Ho Kim , Kyeong Wook Heo , Si Kyong Sung , Dong Hyuk Lee , Young Hwan Ko , Jun Hyeon Hwang , Ho Jin Song , Jin Seong Hwang , Young Ho Hong , Hwan Jong Choi , Geun Bae Hwang , Chun Su Kang , Tac Geun Kim
IPC分类号: F04D29/42
CPC分类号: H02K7/14 , F04D25/064 , F04D25/0646 , F04D29/668 , F24F1/0007 , F24F1/0018 , F24F1/0022 , H02K3/522
摘要: Fan apparatus including a fan, a shaft coupled to the fan for transmission of driving force from a motor to the fan, a rotor bushing of an insulating material joined to a rear end portion of the shaft, a rotor joined to the rotor bushing for transmission of the driving force to the shaft through the rotor bushing, and a stator mounted so as to be positioned on an inside of the rotor to form a BLDC motor together with the rotor, thereby reducing noise and enhancing fan efficiency by employing the BLDG motor which can make stable operation of the fan and increase an air flow rate.
摘要翻译: 风扇装置,包括风扇,联接到风扇的轴,用于将驱动力从电动机传递到风扇;连接到轴的后端部的绝缘材料的转子衬套;转子,其连接到用于传递的转子衬套 通过转子衬套向轴提供驱动力的定子,以及安装成定位在转子内侧的定子,以与转子一起形成BLDC电动机,从而通过采用BLDG电动机来降低噪音并提高风扇效率 可以使风机稳定运行,提高风量。
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公开(公告)号:US09480388B2
公开(公告)日:2016-11-01
申请号:US13067680
申请日:2011-06-20
申请人: Seung Gee Hong , Woo Jin Shin , Jae Man Joo , Young Hwan Ko
发明人: Seung Gee Hong , Woo Jin Shin , Jae Man Joo , Young Hwan Ko
CPC分类号: A47L15/481 , A47L15/483 , A47L15/488 , D06F58/20 , D06F58/24
摘要: A drying duct and a household appliance having the same. The household appliance includes a main body, a drying space placed in the main body and including an air suction hole and an air drain hole, a drying duct including at least one inside-air suction hole communicating with the air drain hole, an inside-air discharge hole communicating with the air suction hole, and an outside-air suction hole and an outside-air discharge hole communicating with the outside of the drying space, and at least one dehumidifying agent placed in the drying duct. The drying duct includes an inside-air suction path into which air inside of the drying space is suctioned, an outside-air suction path into which air outside of the drying space is suctioned, and an inside/outside air movement path communicating with the inside-air suction path and the outside-air suction path.
摘要翻译: 干燥管道和具有该干燥管道的家用电器。 家用电器包括:主体,设置在主体中的干燥空间,包括空气吸入孔和排气孔;干燥管,包括与排气孔连通的至少一个内部空气吸入孔;内部空气吸入孔, 与空气吸入孔连通的排气孔,与干燥空间的外部连通的外部空气吸入孔和外部空气排出孔,以及配置在干燥管道中的至少一个除湿剂。 干燥管道包括:内部空气吸入路径,干燥空间内部的空气被抽吸到该内部空气吸入路径;干燥空间外部的空气被吸入的外部空气吸入路径;以及与内部连通的内部/外部空气移动路径 吸气路径和外部空气吸入路径。
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