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    • 61. 发明授权
    • 보일러의 연소실 냉각구조
    • 锅炉燃烧室冷却结构
    • KR100822173B1
    • 2008-04-16
    • KR1020070069293
    • 2007-07-10
    • 주식회사 경동나비엔
    • 민태식
    • F24H9/18F24H9/02F24H1/40F24D19/06
    • F24H9/1809F24D19/06F24H1/40F24H9/02Y02B30/08
    • A cooling structure for a combustion chamber of a boiler is provided to prevent the temperature around the combustion chamber from being excessively raised by absorbing heat, which is discharged to an exterior from the combustion chamber, into heating water. A combustion chamber of a boiler includes combustion chamber housings(110,120,130,140) and outer walls(210,220). The combustion chamber housings are provided at the inside thereof with the combustion chamber. The outer walls form a passage for heating water. The outer walls include an inlet and an outlet for the heating water such that the heating water is introduced into a heat exchanger after the heating water circulates the combustion chamber housings while surrounding the outer front surfaces of the combustion chamber housings.
    • 提供了一种用于锅炉燃烧室的冷却结构,用于通过吸收从燃烧室排出到外部的热量来加热,防止燃烧室周围的温度过度升高。 锅炉的燃烧室包括燃烧室壳体(110,120,130,140)和外壁(210,220)。 燃烧室壳体的内部设置有燃烧室。 外壁形成用于加热水的通道。 外壁包括用于加热水的入口和出口,使得在加热水循环燃烧室壳体之后,加热水被引入热交换器中,同时围绕燃烧室壳体的外前表面。
    • 62. 发明授权
    • 응축방지를 위한 저장식 보일러의 열교환기 구조
    • 储存式锅炉换热结构,用于防止冷凝
    • KR100701569B1
    • 2007-03-29
    • KR1020060064436
    • 2006-07-10
    • 주식회사 경동나비엔
    • 민태식
    • F24H1/44F24H9/00F24H8/00F24H9/20F24H9/02F24H1/28
    • F24H9/0036F24H1/287F24H1/44F24H8/006F24H9/02F24H9/2035Y02B30/106
    • A storage type boiler heat exchanging structure for preventing condensation is provided to increase durability by preventing a corrosion of the heat exchanging structure due to the condensation in case that the heat exchanging structure is manufactured by using a conventional material. In a storage type boiler heat exchanging structure for preventing condensation, a heating supply outlet is installed on a top of a boiler(10). A heating water inlet is prepared at a bottom of the heating supply outlet. An inner pipe(30) is installed inside of a water pipe unit(40) of the boiler and extended in a spiral shape from the heating water inlet. The extended inner pipe is coupled to a reentrance port(24) of a bottom stage of the boiler by being connected to an extension pipe unit extended through an reexit(26) passing through a boiler sidewall. The inner pipe is constructed inside of the water pipe unit of the boiler by being separated at a predetermined distance from the boiler sidewall. The extension pipe unit has a construction to prevent heat of the hot water from being discharged to the outside thereof.
    • 提供一种用于防止冷凝的储存式锅炉热交换结构,以通过在通过使用常规材料制造热交换结构的情况下防止由于冷凝导致的热交换结构的腐蚀而提高耐久性。 在用于防止冷凝的存储式锅炉热交换结构中,在锅炉(10)的顶部安装加热供给出口。 在加热供应出口的底部准备加热水入口。 内管(30)安装在锅炉的水管单元(40)的内部,并从加热水入口延伸成螺旋状。 延伸的内管通过连接到通过经过锅炉侧壁的再排出(26)延伸的延伸管单元而连接到锅炉底部的再入口(24)。 内管在锅炉的水管单元的内部通过与锅炉侧壁隔开预定距离而构成。 延伸管单元具有防止热水排出到其外部的结构。
    • 63. 发明授权
    • 보일러용 3방향 유로전환밸브의 제어방법
    • 锅炉三通阀控制方法
    • KR100541825B1
    • 2006-01-10
    • KR1020030045596
    • 2003-07-07
    • 주식회사 경동나비엔
    • 민태식
    • F24H9/20
    • 본 발명은 보일러용 3방향 유로전환밸브의 제어방법에 관한 것으로, 그 목적은 솔레노이드의 흡입력과 중력에 의한 자중을 통해서 개폐 동작시킴에 따라 종래 3방향 유로전환 밸브에서 발생되던 워터 햄머링(Water Hammering)을 완벽하게 방지할 수 있도록 하는 것이다. 이러한 목적을 달성하기 위한 본 발명은 보일러의 순환 펌프로부터 펌핑된 물이 유입되는 유입포트와, 상기 유입포트를 통해 유입된 물이 배출되는 제1,제2배출포트와, 상기 제1,제2배출포트 중의 어느 하나와 상기 유입포트를 선택적으로 연통시키는 밸브부재와, 마이컴의 출력 신호를 인가받아 전자기력을 발생하며 상기 밸브부재를 상ㆍ하측으로 이동시켜 상기 연통 유로를 변경하는 솔레노이드를 갖춘 보일러용 3방향 유로전환 밸브에 있어서, 상기 보일러용 3방향 유로전환 밸브는 상기 마이컴의 출력신호를 인가받아 상기 펌프의 구동이 정지되면, 유입단과 배출단의 압력이 동일한 상태에서 상기 솔레노이드의 구동력과 중력의 힘만으로 상기 유로를 전환하여 상기 보일러의 모드전환 시 워터 햄머링 없이 제어되도록 하는 것을 특징으로 하여 종래 모터의 회전력을 통해 유로 변경되는 3방향 유로전환 밸브에서 발생되는 워터 햄머링(Water Hammering)을 방지함과 아울러, 전력소모를 줄일 수 있는 효과가 있다.
    • 64. 发明授权
    • 냉각장치를 구비한 예혼합 버너
    • 具有冷却装置的高温燃烧器
    • KR101359551B1
    • 2014-02-12
    • KR1020120089588
    • 2012-08-16
    • 주식회사 경동나비엔
    • 민태식
    • F23D14/78F23D14/76F23D14/02
    • The purpose of the present invention is to provide a premixed burner which improves thermal efficiency and prevents the burner from being overheated due to red-heat by including a cooling device capable of cooling a plurality of plates which is overlapped. The premixed burner of the present invention includes the overlapped plates (210a-210m, 220a-220n). The bodies of some plates (210c-210k) among the overlapped plates (210a-210m, 220a-220n) are partially cut, and flame holes (212c-212k) are formed by the cut portions. The present invention includes the cooling device cooling the plates (210a-210m).
    • 本发明的目的是提供一种预混合燃烧器,其通过包括能够冷却重叠的多个板的冷却装置来提高热效率并防止燃烧器由于红热而过热。 本发明的预混燃烧器包括重叠板(210a-210m,220a-220n)。 重叠板(210a-210m,220a-220n)中的一些板(210c-210k)的主体被部分切割,并且由切割部分形成火焰孔(212c-212k)。 本发明包括冷却板(210a-210m)的冷却装置。
    • 65. 发明公开
    • 난방효율을 향상시킨 난방 및 온수의 동시 사용이 가능한 보일러
    • 具有提高加热效率的锅炉,同时可以加热和热水
    • KR1020130123531A
    • 2013-11-13
    • KR1020120046725
    • 2012-05-03
    • 주식회사 경동나비엔
    • 민태식
    • F24D19/10F24D3/10F24H9/12F24H9/20
    • F24H1/18F24D11/002F24D19/1066F24D2220/0257F24D2220/08F24H1/52F24H9/2007F28D20/0034Y02E60/142
    • The present invention is provided to improve heating efficiency by preventing pressure loss and water shortage even though a heating area is small. The purpose of the invention is to provide hot water and a heating function at the same time by heating raw water while some of heating water flows to a hot water heat exchanger. The invention comprises an inner heating water pipe line (160) which forms a circulation fluid path for heating water being pumped by an inner circulation pump (120) between a tank (110) and a main heat exchanger (130); a heating water pipe line (210) which forms the circulation flow path for the heating water supplied and pumped by an outer circulation pump (220) between the tank (110) and a heating device (230); a three way solenoid valve (170) for supplying the heating water traveling through the main heat exchanger (130) to the hot water heat exchanger (180) and tank (110) by adjusting an opening degree based on heating and hot water road. The inner heating water pipe line (160) is connected to the heating water pipe line by an inner space of the tank (110). [Reference numerals] (AA) Hot water;(BB) Direct water
    • 提供本发明,即使加热面积小,也能够防止压力损失和缺水而提高加热效率。 本发明的目的是通过加热原水同时提供热水和加热功能,同时一些加热水流入热水热交换器。 本发明包括内部加热水管线(160),其形成用于加热由罐(110)和主热交换器(130)之间的内循环泵(120)泵送的水的循环流体路径; 一个加热水管道(210),其形成由所述罐(110)和加热装置(230)之间的外循环泵(220)供应和泵送的供热水循环流路; 用于通过调节基于加热和热水道路的开度将通过主热交换器(130)行进的加热水供应到热水热交换器(180)和水箱(110)的三通电磁阀(170)。 内部加热水管线160由罐110的内部空间与加热水管路连接。 (附图标记)(AA)热水;(BB)直接水
    • 66. 发明公开
    • 제2차공기를 제공하는 조합형 염공부 및 그 조합형 염공부를 갖는 예혼합 가스 연소 버너
    • 装配型二次空气和预燃燃烧器的火焰孔部分
    • KR1020130101670A
    • 2013-09-16
    • KR1020120020643
    • 2012-02-28
    • 주식회사 경동나비엔
    • 민태식
    • F23D14/04F23D14/08F23D14/46F23D14/62
    • F23D14/045F23D14/08F23D14/46F23D14/62
    • PURPOSE: A combined burner port unit providing secondary air preventing combustion noise and a premixed gas combustion burner including the same are provided to prevent condensed water while enhancing combustion features and to form an air hole for providing a burner port and the secondary air by the basic combination of plates. CONSTITUTION: A premixed gas combustion burner comprises a burner port unit, a first path, and a second path. A plurality of air holes (63) for the secondary air and a plurality of burner ports (62) are formed in the burner port unit. The air holes for the secondary air have a plurality of inlet holes (61) for the secondary air and discharge the secondary air by connecting to the inlet hole. The burner ports pass the combustion gas by being connected to a premixed gas chamber. The first air is supplied to the first path through a ventilation fan and a gas path joins in the middle of the path. The first path is connected to the premixed gas chamber. The second path is divided from the first path, is connected to an inlet hole of the secondary air of the burner port unit, and only secondary air is supplied.
    • 目的:提供提供二次空气防止燃烧噪声的组合燃烧器口单元和包括其的预混燃气燃烧器,以防止冷凝水同时增强燃烧特征,并形成用于提供燃烧器口的气孔和二次空气 板组合。 构成:预混燃气燃烧器包括燃烧器端口单元,第一路径和第二路径。 在燃烧器端口单元中形成有用于二次空气的多个气孔(63)和多个燃烧口(62)。 用于二次空气的气孔具有用于二次空气的多个入口孔(61),并且通过连接到入口孔排出二次空气。 燃烧器端口通过连接到预混气室而通过燃烧气体。 第一空气通过通风扇被供应到第一路径,并且气体路径连接在路径的中间。 第一路径连接到预混合气室。 第二路径与第一路径分开,连接到燃烧器端口单元的二次空气的入口孔,并且仅供应二次空气。
    • 67. 发明公开
    • 급탕열교환기
    • 热水供应热交换器
    • KR1020130053964A
    • 2013-05-24
    • KR1020110119708
    • 2011-11-16
    • 주식회사 경동나비엔
    • 민태식
    • F24D3/00F28D9/02F24D9/00F28F3/08
    • F28D9/02F24D3/087F24D2220/06F28D9/005F28F3/046F28F9/0253
    • PURPOSE: A hot water supply heat exchanger is provided to minimize resistance of a flow path by minimizing a length of an inner flow path of the hot water supply heat exchanger and by simplify a pipe structure connected to the hot water heat exchanger. CONSTITUTION: A hot water supply heat exchanger(1) comprises a heat exchange unit(100), a first adapter(210), and a second adapter(220). The heat exchange unit exchanges heat by flowing heating water and direct water in a heating water circulation path and a direct water circulation path of an interval in which a plurality of partition plates is overlapped. The first adapter and the second adapter are connected to the heat exchange unit and connect the heat exchange unit and a pipe of a heating line and a hot water supply line.
    • 目的:提供热水供应热交换器,通过使热水供应热交换器的内部流路的长度最小化并简化与热水热交换器连接的管道结构来最小化流动路径的阻力。 构成:热水供应热交换器(1)包括热交换单元(100),第一适配器(210)和第二适配器(220)。 热交换单元通过使加热水和加热水循环路径中的水直接进行热交换,并且多个隔板重叠的间隔的直接水循环路径进行热交换。 第一适配器和第二适配器连接到热交换单元并且连接热交换单元和加热管线和热水供应管线。
    • 68. 发明公开
    • 열교환기의 분리가 가능한 연소장치
    • 燃烧装置可拆卸热交换器
    • KR1020130017815A
    • 2013-02-20
    • KR1020110080475
    • 2011-08-12
    • 주식회사 경동나비엔
    • 민태식
    • F24H1/00F23D14/02F23D14/70
    • F23C5/02F23D2213/00F24H9/0042F24H9/02F24H9/148F24H9/1836
    • PURPOSE: A combustion device capable of the separation of a heat exchanger is provided to increase heat efficiency by preheating gas and to efficiently cool a combustion chamber external wall. CONSTITUTION: A combustion device capable of the separation of a heat exchanger includes a combustion chamber(200), a heat exchanger(300), and a heat exchanger case(400). The combustion chamber is installed inside a burner which combusts premixed gas supplied from a blower. The heat exchanger exchanges heat between hot water flowing along a heat exchange tube. The heat exchanger is installed inside the heat exchanger case and is formed in an exhaust gas through-hole connected to an exhaust duct(600). The heat exchanger is installed between the combustion chamber and the heat exchanger case in a laminating structure.
    • 目的:提供能够分离热交换器的燃烧装置,以通过预热气体并有效地冷却燃烧室外壁来提高热效率。 构成:能够分离热交换器的燃烧装置包括燃烧室(200),热交换器(300)和热交换器壳体(400)。 燃烧室安装在燃烧器的燃烧器内,燃烧​​从鼓风机供应的预混合气体。 热交换器在沿热交换管流动的热水之间交换热量。 热交换器安装在热交换器壳体的内部并形成在与排气管道(600)连接的废气通孔中。 热交换器以层叠结构安装在燃烧室和热交换器壳体之间。
    • 69. 发明公开
    • 공명실을 구비한 보일러 또는 온수기용 연소-열교환기 시스템
    • 具有谐振腔的锅炉或水加热器的热交换器系统
    • KR1020130005930A
    • 2013-01-16
    • KR1020110067634
    • 2011-07-08
    • 주식회사 경동나비엔
    • 민태식
    • F24H9/02F24H1/40F24H9/20
    • F24H1/40F23M20/005F24H9/02
    • PURPOSE: A combustion-heat exchanger system having resonance chambers for a boiler or a hot water heater is provided to form the resonance chamber by installing an insulating material of a combustion chamber at a position separate from the inside of an outer cover, thereby efficiently reducing noise in combustion without the installation of a muffler. CONSTITUTION: A combustion-heat exchanger system having resonance chambers(315,325,335,345) comprises outer covers(310,320,330,340), and insulating materials(350,360,370,380). The outer covers are installed in an outer side of a combustion chamber(300). The insulating materials are installed at a position separate from the inside of outer covers so that the resonance chambers are installed the outer covers and the insulating members. The resonance chambers are connected to the combustion chamber, thereby reducing noise generated in the combustion of a burner.
    • 目的:提供一种具有用于锅炉或热水加热器的共振室的燃烧 - 热交换器系统,以通过在与外盖的内部分离的位置处设置燃烧室的绝缘材料来形成共振室,从而有效地减少 噪音在燃烧时没有安装消音器。 构成:具有共振室(315,325,335,345)的燃烧 - 热交换器系统包括外盖(310,320,330,340)和绝缘材料(350,360,370,380)。 外盖安装在燃烧室(300)的外侧。 绝缘材料安装在与外盖的内侧分开的位置,使得共振室安装在外盖和绝缘构件上。 共振室连接到燃烧室,从而减少燃烧器燃烧产生的噪音。