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    • 1. 发明申请
    • COUPLING STRUCTURE OF FLOW CONTROL VALVE
    • 流量控制阀的耦合结构
    • WO2011074786A3
    • 2011-11-03
    • PCT/KR2010007966
    • 2010-11-11
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F16K27/00F16K27/02F24D3/10F24D19/10
    • F16K27/02F24D19/1015
    • The present invention relates to a coupling structure of a flow control valve, having a reduced size for coupling a flow control valve to a pipe body, by means of having the pipe body extended toward the flow control valve and having the pipe body itself included in a portion of the body of the flow control valve; and also enabling easy maintenance and repair of the flow control valve, by means of enabling the flow control valve to be separated from and assembled to an outer side of the pipe body. To achieve these effects, a coupling structure of a flow control valve of the present invention comprises: a flow control valve including a height adjusting member that is vertically varied in position by means of the rotation of a motor, a guide member for guiding the vertical movement of a shaft axially coupled at the bottom of the height adjusting member, and a valve unit coupled to the bottom of the shaft to move vertically and control the opened degree of a passage; and a pipe body defining the passage and having a flow control valve connector formed extending at a side thereof, wherein the flow control valve is inserted from the outside of the pipe body into the flow control valve connector.
    • 流量控制阀的连接结构技术领域本发明涉及一种流量控制阀的连接结构,该连接结构通过使管体朝向流量控制阀延伸并且具有管体本身包括在内,从而减小了用于将流量控制阀连接到管体的尺寸 流量控制阀的主体的一部分; 并且还能够通过使流量控制阀与管体的外侧分离并组装到流体控制阀的外侧来实现流量控制阀的容易维护和修理。 为了实现这些效果,本发明的流量控制阀的连接结构包括:流量控制阀,该流量控制阀包括:高度调节构件,该高度调节构件通过马达的旋转而在竖直方向上改变位置;引导构件, 轴向联接在高度调节构件的底部的轴的运动以及联接到轴的底部以垂直移动并控制通道的打开程度的阀单元; 以及限定所述通道并且具有在其一侧延伸形成的流量控制阀连接器的管体,其中,所述流量控制阀从所述管体的外部插入到所述流量控制阀连接器中。
    • 2. 发明申请
    • OPERATION METHOD FOR MICRO-COGENERATION SYSTEM
    • 微生物系统的操作方法
    • WO2011040714A3
    • 2011-07-21
    • PCT/KR2010006090
    • 2010-09-08
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24D10/00F24D19/10
    • F24D3/08F24D12/02F24D19/1066F24D2200/04F24D2200/16F24D2200/32F24H2240/00Y02B10/70Y02B30/14Y02B30/52Y02E20/14Y02P80/15
    • The present invention is directed to provide an operation method for a micro-cogeneration system that enables the use of heat recovered from a cogenerator for both space heating and generating hot water by connecting the cogenerator and a heat transfer medium channel of the boiler, thereby reducing the cost required for operating the cogeneration system, and facilitates the control of heat to be supplied in heating mode and in hot water mode. To this end, the present invention comprises: operating a cogenerator (100) having a heat exchanger (110) for recovering waste heat that is produced during the power generation; performing a control operation in such a manner that a heat transfer medium supplied from the cogenerator (100) is stored in a heat transfer medium reservoir tank (300) after going through a boiler (200) connected to the heat exchanger (110), and the heat transfer medium stored in the heat transfer medium reservoir tank (300) is circulated into the heat exchanger (110) of the cogenerator (100); operating only the cogenerator (100) when there is no heating and hot water loads; and stopping the operation of the cogenerator (100) if it is determined that the temperature of the heat transfer medium inside the heat transfer medium reservoir tank (300) has reached a preset temperature.
    • 本发明旨在提供一种微型热电联产系统的操作方法,其能够通过连接热电联产机和锅炉的传热介质通道,从共发电机回收的热量用于空间加热和产生热水,从而减少 操作热电联产系统所需的成本,并且便于控制在加热模式和热水模式下供应的热量。 为此,本发明包括:操作具有用于回收在发电期间产生的废热的热交换器(110)的共发电机(100); 以从热交换器(100)供给的传热介质经过与热交换器(110)连接的锅炉(200)后,在传热介质储存箱(300)内被储存的方式进行控制动作,以及 存储在传热介质储存罐(300)中的传热介质循环到热电联产机(100)的热交换器(110)中。 当没有加热和热水负载时,仅操作热电联产机(100); 如果确定传热介质储罐(300)内的传热介质的温度已经达到预设温度,则停止共发电机(100)的操作。
    • 4. 发明申请
    • MICRO-COGENERATION SYSTEM
    • 微生物系统
    • WO2011040713A3
    • 2011-07-21
    • PCT/KR2010006089
    • 2010-09-08
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24D10/00F24D19/10
    • F24D3/08Y02E20/14Y02P80/15
    • The present invention is directed to provide a micro-cogeneration system that enables the use of heat recovered from a cogenerator for both space heating and generating hot water by connecting the cogenerator and a heat transfer medium channel of the boiler, reduces the setup cost through the simplified system and facilitates the control of heat to be supplied in heating mode and in hot water mode. To this end, the present invention comprises: a cogenerator (100) having a heat exchanger (110) for recovering waste heat that is produced during the power generation; and a boiler (200), which selectively leads a heat transfer medium having absorbed heat from the heat exchanger (110) to a place to be heated or to a hot water heat exchanger (230) where heat exchange with direct water occurs to supply hot water and then circulates into the heat exchanger (110) of the cogenerator (100).
    • 本发明旨在提供一种微热电联产系统,其能够使用从共发电机回收的热量进行空间加热并通过连接热电联产机和锅炉的传热介质通道产生热水,从而降低了设备成本 简化系统,便于在加热模式和热水模式下供热的控制。 为此,本发明包括:具有用于回收在发电期间产生的废热的热交换器(110)的共发电机(100); 以及锅炉(200),其选择性地将具有从热交换器(110)吸收的热量的传热介质引导到待加热的地方或者与热水热交换器(230)发生热交换,从而供热 然后循环进入热电联产机(100)的热交换器(110)。
    • 5. 发明申请
    • CONDENSING BOILER
    • 冷凝锅炉
    • WO2010147334A3
    • 2011-03-10
    • PCT/KR2010003735
    • 2010-06-10
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24H8/00F24H1/00F24H9/00
    • F24H8/00F24H8/006F24H9/0084Y02B30/102Y02B30/106
    • The present invention relates to a condensing boiler comprising a latent heat exchanger which recovers latent heat of exhaust gas; and an air-exhaust gas heat exchanger having an exhaust portion arranged above the latent heat exchanger to discharge exhaust gas, and an air supply portion arranged to cover the periphery of the exhaust portion to allow heat exchange between air being supplied and the exhaust gas and thus lower the temperature of the exhaust gas. Thus-configured condensing boiler of the present invention further includes the air-exhaust gas heat exchanger for heat exchange between the exhaust gas and the air being supplied into the boiler, and thus the temperature of the exhaust gas is lowered. Therefore, even when a burner operates at a high temperature, the exhaust gas is condensed to enable the latent heat exchanger to use the latent heat of the exhaust gas, thereby preventing efficiency of the condensing boiler from being degraded even when the condensing boiler operates at a high temperature.
    • 本发明涉及一种冷凝锅炉,其包括:潜热交换器,其回收废气的潜热; 以及空气排气热交换器,具有布置在潜热交换器上方以排出废气的排气部分,以及空气供应部分,其布置成覆盖排气部分的周边,以允许供给的空气与排气之间的热交换和 从而降低废气的温度。 如此构成的本发明的冷凝锅炉还包括排气和供给到锅炉中的空气之间进行热交换的排气热交换器,因此废气的温度降低。 因此,即使当燃烧器在高温下操作时,排气被冷凝,使得潜热交换器能够使用废气的潜热,从而防止冷凝锅炉的效率降低,即使冷凝锅炉在 高温。
    • 6. 发明申请
    • STRUCTURE FOR COUPLING A MAKE-UP WATER VALVE AND A PIPE BODY TOGETHER
    • 将补给水阀和管体连接在一起的结构
    • WO2011083909A3
    • 2011-10-27
    • PCT/KR2010007968
    • 2010-11-11
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24D19/08F16K31/06F24D3/00
    • F16K31/404F24D3/10F24D3/1083F24D19/1015F24H9/126
    • The present invention relates to a structure for coupling a make-up water valve and a pipe body together. The coupling structure is one in which the make-up water valve may be inserted inwardly from the outside of the pipe body to reduce the number of connection parts that couple the make-up water valve and the pipe body together, and at the same time, the make-up water valve may be disassembled and assembled from the outside of the pipe body to easily perform maintenance and repair processes of the make-up water valve. For this purpose, the structure for coupling a make-up water valve and a pipe body together includes: a valve body in which an inlet and outlet for make-up water are defined, the make-up water valve including a plate which reciprocates to open or close a path between the inlet and outlet and a driving unit reciprocating the plate; and the pipe body, in which an inlet-side connection part and an outlet-side connection part are disposed at positions corresponding to the inlet and outlet, respectively, and having a make-up water connection part extending toward a side thereof. The make-up water valve is inwardly inserted from the outside of the pipe body.
    • 本发明涉及用于将补给水阀和管体连接在一起的结构。 该连接结构是可以将补水阀从管体的外侧向内插入以减少将补水阀与管体连接在一起的连接部件的数量,并且同时 ,补水阀可以从管体的外部拆卸和组装,以便容易地执行补水阀的维护和修理过程。 为此,用于将补水阀和管体连接在一起的结构包括:阀体,其中限定补水的入口和出口被限定,补水阀包括板,该板往复运动到 打开或关闭入口和出口之间的路径以及使板往复运动的驱动单元; 以及管体,其中入口侧连接部分和出口侧连接部分分别设置在对应于入口和出口的位置处,并且具有朝向其侧面延伸的补充水连接部分。 补水阀从管体的外部向内插入。
    • 7. 发明申请
    • MICRO-COGENERATION SYSTEM
    • 微生物系统
    • WO2011040712A3
    • 2011-07-21
    • PCT/KR2010006088
    • 2010-09-08
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24D10/00F24D19/10
    • F24D11/002F24D3/08F24D12/00F24D2200/16F24H2240/00Y02E20/14Y02P80/15
    • The present invention is directed to provide a micro-cogeneration system that enables the use of heat recovered from a cogenerator for both space heating and generating hot water by connecting the cogenerator and a heat transfer medium channel of the boiler, reduces the setup cost through the simplified system and facilitates the control of heat to be supplied in heating mode and in hot water mode. To this end, the present invention comprises: a cogenerator (100) having a heat exchanger (110) for recovering waste heat that is produced during the power generation; a boiler (200) for selectively circulating a heat transfer medium having absorbed heat from the heat exchanger (110) into a place to be heated or into a hot water heat exchanger (230) where heat exchange with water directly coming from the water supply network occurs to supply hot water; and a reservoir tank (300) that is used for storing the circulating heat transfer medium and is connected in such a manner that the stored heat transfer medium is supplied to the heat exchanger (110) of the cogenerator (100).
    • 本发明旨在提供一种微热电联产系统,其能够使用从共发电机回收的热量进行空间加热并通过连接热电联产机和锅炉的传热介质通道产生热水,从而降低了设备成本 简化系统,便于在加热模式和热水模式下供热的控制。 为此,本发明包括:具有用于回收在发电期间产生的废热的热交换器(110)的共发电机(100); 用于将具有吸收的热量的传热介质从热交换器(110)选择性循环到待加热的地方或者与水直接从供水网络进行热交换的热水热交换器(230)中的锅炉(200) 发生供热水; 以及用于存储循环传热介质并且以将储存的传热介质供应到热电联产机(100)的热交换器(110)的方式连接的储存箱(300)。
    • 8. 发明申请
    • HOT-WATER SUPPLY HEAT EXCHANGER PROVIDED WITH A MIXING VALVE, AND ADAPTOR HAVING A BUILT-IN MIXING VALVE
    • 配有混合阀的热水供应热交换器和具有内置混合阀的适配器
    • WO2011037339A3
    • 2011-07-14
    • PCT/KR2010006087
    • 2010-09-08
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F24H1/48F24H1/52F24H9/16F24H9/18
    • F24D3/087F28D9/005F28F27/02Y10T137/6497
    • The aim of the present invention is to provide a hot-water supply heat exchanger provided with a mixing valve, which has a simple configuration and enables the temperature of hot water to be easily controlled, and to an adaptor having a built-in mixing valve. To accomplish the aim, the hot-water supply heat exchanger of the present invention comprises: a heat-exchanging unit (100) for exchanging heat between the heating water supplied from a main heat exchanger (20) and cold tap water; a heating water inlet port (212) for feeding the heating water into the heat-exchanging unit (100); a heating water outlet port (214) for discharging the heating water after the heating water exchanges heat with the tap water in the heat-exchanging unit (100); a tap water inlet port (222) for feeding the tap water into the heat-exchanging unit (100); a hot water outlet port (224) for discharging the tap water, which has become hot water after the tap water has exchanged heat with the heating water in the heat-exchanging unit (100); and a mixing valve (230) for mixing the tap water fed via the tap water inlet port (222) with the hot water discharged via the hot water outlet port (224).
    • 本发明的目的是提供一种设有混合阀的热水供应热交换器,该混合阀具有简单的构造并且能够容易地控制热水的温度,并且提供一种具有内置混合阀的适配器 。 为实现该目的,本发明的供热水热交换器包括:热交换单元(100),用于在从主热交换器(20)供应的供热水与冷的自来水之间交换热量; 用于将热水供给到热交换单元(100)中的供热水入口端口(212)。 用于在加热水与热交换单元(100)中的自来水交换热量之后排出加热水的加热水出口端口(214); 自来水入口端口(222),用于将自来水供给到热交换单元(100)中; 热水出口(224),用于在自来水与热交换单元(100)中的热水进行热交换后变成热水的自来水排出; 以及将通过自来水流入口(222)供给的自来水与经由热水流出口(224)排出的热水混合的混合阀(230)。
    • 9. 发明申请
    • FLAME HOLE UNIT STRUCTURE OF A GAS BURNER
    • 气体燃烧器的火焰孔单元结构
    • WO2011071248A2
    • 2011-06-16
    • PCT/KR2010007964
    • 2010-11-11
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • F23D14/02F23D14/58
    • F23D14/586F23D2213/00
    • The present invention relates to a flame hole unit structure of a gas burner for simplifying, easily assembling, and manufacturing a structure of a burner flame hole unit by overlapping a plurality of plates of which portions are cut so that the cut portions may be intersected with each other, and by forming flame holes and mixture channels of gas and air through a gap between the cut portions. To realize said purpose, the flame hole unit structure of the gas burner of the present invention has a plurality of flame holes in which a mixture of gas and air is sprayed to form a flame, and the plurality of plates of which the portions are cut are overlapped together, wherein the cut portions are intersected and overlapped with each other between the adjacent plates, thereby forming the flame holes and the mixture channels of gas and air through the gap between the cut portions.
    • 本发明涉及一种气体燃烧器的火焰孔单元结构,用于通过重叠切割部分的多个板来简化,容易地组装和制造燃烧器火焰孔单元的结构,使得切割部分可以与 并且通过在切割部分之间的间隙形成气孔和空气的火焰孔和混合通道。 为了实现上述目的,本发明的气体燃烧器的火焰孔单元结构具有多个火焰孔,喷射气体和空气的混合物以形成火焰,并且多个板被切割 重叠在一起,其中切割部分在相邻板之间彼此相交并重叠,从而通过切割部分之间的间隙形成火焰孔和气体和空气的混合通道。
    • 10. 发明申请
    • FLOW SENSOR AND COMBUSTION DEVICE HAVING SAME
    • 流量传感器和燃烧装置具有相同
    • WO2011068312A2
    • 2011-06-09
    • PCT/KR2010007957
    • 2010-11-11
    • KYUNGDONG NAVIEN CO LTDMIN TAE-SIK
    • MIN TAE-SIK
    • G01F1/10F24D19/10F24H9/20
    • G01F1/10F24D19/1009F24D2220/044G01F1/115
    • The present invention relates to a flow sensor and a combustion device having the same, in which the flow sensor is easily installed in and separated from a pipe body of the combustion device, thereby enabling maintenance work for the internal parts of the flow sensor to be readily conducted and increasing the capacity of a filter provided to a pipe having a limited length. In order to realize said purpose, the flow sensor of the present invention comprises: an instrument unit which mechanically moves along the flow of a fluid; and a sensor unit which senses the movement of the instrument unit, wherein the sensor unit is provided to the outside of the pipe inside the combustion device, and the instrument unit is positioned in the place corresponding to the sensor unit inside the pipe of the combustion device.
    • 流量传感器和具有该流量传感器的燃烧装置技术领域本发明涉及一种流量传感器和具有该流量传感器的燃烧装置,其中流量传感器容易地安装在燃烧装置的管体中并且与燃烧装置的管体分离,从而能够使流量传感器的内部部件 容易进行并增加提供给具有有限长度的管道的过滤器的容量。 为了实现所述目的,本发明的流量传感器包括:仪器单元,其沿着流体的流动机械地移动; 以及传感器单元,其感测所述器具单元的移动,其中,所述传感器单元被设置到所述燃烧装置内的所述管道的外部,并且所述器具单元被定位在与所述燃烧管道内的传感器单元对应的位置 设备。