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    • 1. 发明授权
    • 전선릴용 전선 보호판
    • 电线的电线屏蔽
    • KR101045961B1
    • 2011-07-01
    • KR1020090023229
    • 2009-03-18
    • 제룡전기 주식회사한국전력공사
    • 이상헌안형승이재봉이상록전인호송병권금의연류은수이태호
    • B65H75/14
    • 본 발명은 케이블이나 전선을 감아 저장하는 전선릴에서 권취한 케이블이나 전선을 보호할 목적으로 전선릴의 측판 가장자리 원주변을 따라 고정 설치하는 전선 보호판에 관한 것으로, 특히 노천 보관시 장기간 보관과 재활용 및 반영구적으로 반복 사용이 가능한 전선릴용 전선 보호판에 관한 것이다.
      이를 위해 본 발명은 전선릴(1)에 권취된 전선이나 케이블을 보호하기 위해 이 전선릴(1)의 측판(2) 가장자리 원주변을 따라 다수 개가 고정 설치되는 전선릴용 전선 보호판에 있어서, 상기 전선 보호판(3)은 그 세로 단면이 전선릴(1)의 측판(2) 원주와 동일한 곡선의 곡면을 가지면서 양쪽 세로측변으로 고정 철사홈(4)을 갖추고 고정용 체결수단이 관통되는 고정용 체결수단인 못자리 홈(5)들이 4각 모서리 부근에 각각 형성되는 전면부(6)와, 이 전면부(6)의 배면으로 제거 작업용 홈(7)을 양측으로 갖는 후면부(8)로 이루어져 있다.
    • 本发明是一个电缆或电线是在所述前盖固定安装在jeonseonril以保护电缆和沿jeonseonril存储提升机的侧边缘周边的线卷收对象,在特定的时间很长一段时露天存储存储和回收和半永久性 哪些可以重复使用。
    • 4. 发明公开
    • 원자로보호용기와 압축탱크를 이용한 비상노심냉각 방법과장치
    • 使用反应器保护容器和压缩罐冷却应急芯的方法和装置
    • KR1020020037105A
    • 2002-05-18
    • KR1020000067089
    • 2000-11-13
    • 한국원자력연구원한국전력공사
    • 김영인이두정윤주현배윤영조봉현김환열박천태최병선서재광강형석이준강한옥유승엽황영동이태호장문희
    • G21C15/18
    • Y02E30/40
    • PURPOSE: A method and apparatus is provided to cool the emergency core by using an iron protection container, compression tank with a cooling water and a natural circulation phenomenon in the reactor container, while achieving improved safety of integrated type nuclear reactor and reducing the amount of cooling water. CONSTITUTION: A nuclear reactor protection container(2) is installed around a nuclear reactor vessel(1), and a vapor generator(3) disposed within the nuclear reactor vessel is arranged to be connected to an external passive residual heat removal system(4). A compression tank(5) is arranged at the top of the nuclear reactor vessel in such a manner that a cooling water is injected into the compression tank. A method is characterized in that a small protection container with a high pressure is installed outside the nuclear reactor vessel, the cooling member emitted from the nuclear reactor vessel is cut off by using the increase pressure caused due to the flashing of the cooling member emitted during the accident of cooling member loss, and the emergency core cooling water is supplied in a passive manner by using the compression tank. The decay heat generated from the core is removed by the passive residual heat removing system using a natural circulation and stream generator disposed in the nuclear reactor vessel.
    • 目的:提供一种方法和装置,通过在反应堆容器中使用铁保护容器,具有冷却水的压缩罐和自然循环现象来冷却应急核心,同时实现综合型核反应堆的安全性的提高和减少 冷却水。 构成:核反应堆保护容器(2)安装在核反应堆容器(1)周围,并且设置在核反应堆容器内的蒸汽发生器(3)被设置成连接到外部被动余热除去系统(4) 。 压缩箱(5)以这样的方式设置在核反应堆容器的顶部,即将冷却水注入到压缩罐中。 一种方法的特征在于,将具有高压的小型保护容器安装在核反应堆外部,从核反应堆容器发射的冷却构件通过使用由于发射的冷却构件的闪烁而引起的增加压力被切断 冷却部件损失的事故,以及通过使用压缩罐而以被动方式供给应急芯冷却水。 通过使用设置在核反应堆容器中的自然循环和流发生器的被动余热除去系统来除去由芯产生的衰变热。
    • 5. 发明授权
    • 원자로보호용기와 압축탱크를 이용한 비상노심냉각 방법과장치
    • 用户名和密码
    • KR100419194B1
    • 2004-02-19
    • KR1020000067089
    • 2000-11-13
    • 한국원자력연구원한국전력공사
    • 김영인이두정윤주현배윤영조봉현김환열박천태최병선서재광강형석이준강한옥유승엽황영동이태호장문희
    • G21C15/18
    • Y02E30/40
    • PURPOSE: A method and apparatus is provided to cool the emergency core by using an iron protection container, compression tank with a cooling water and a natural circulation phenomenon in the reactor container, while achieving improved safety of integrated type nuclear reactor and reducing the amount of cooling water. CONSTITUTION: A nuclear reactor protection container(2) is installed around a nuclear reactor vessel(1), and a vapor generator(3) disposed within the nuclear reactor vessel is arranged to be connected to an external passive residual heat removal system(4). A compression tank(5) is arranged at the top of the nuclear reactor vessel in such a manner that a cooling water is injected into the compression tank. A method is characterized in that a small protection container with a high pressure is installed outside the nuclear reactor vessel, the cooling member emitted from the nuclear reactor vessel is cut off by using the increase pressure caused due to the flashing of the cooling member emitted during the accident of cooling member loss, and the emergency core cooling water is supplied in a passive manner by using the compression tank. The decay heat generated from the core is removed by the passive residual heat removing system using a natural circulation and stream generator disposed in the nuclear reactor vessel.
    • 目的:提供一种方法和设备,通过在反应器容器中使用铁保护容器,具有冷却水的压缩罐和自然循环现象来冷却应急核心,同时提高集成型核反应堆的安全性并减少 冷却水。 构成:核反应堆保护容器(2)围绕核反应堆容器(1)安装,并且布置在核反应堆容器内的蒸气发生器(3)被布置为连接到外部无源余热去除系统(4) 。 压缩罐(5)以这样的方式布置在核反应堆容器的顶部,使得冷却水被注入到压缩罐中。 一种方法,其特征在于,在核反应堆容器的外部安装高压的小保护容器,通过使用由于在期间发射的冷却构件的闪光所引起的增加的压力来切断从核反应堆容器排出的冷却构件 冷却部件损失事故以及应急核心冷却水通过使用压缩罐以被动方式供应。 由核心产生的衰变热通过使用布置在核反应堆容器中的自然循环和流发生器的被动余热去除系统去除。
    • 7. 发明授权
    • 센서 인터페이스 보드 자동 인식 기능을 갖는 데이터 분석장치
    • 传感器接口板自动配置功能的数据分析系统
    • KR101386250B1
    • 2014-04-21
    • KR1020130071858
    • 2013-06-21
    • 와이피피 주식회사한국전력공사
    • 백종만어수영강정원최원석윤재상이태호최병태김연환이두영손석만김형석김동환배용채조철환조성태김희수이욱륜구재량김범수손태하최광범조문수정재철
    • G06F17/00
    • G06K19/0716
    • Disclosed is a data analysis system with a function for automatically recognizing a sensor interface board, which is capable of automatically setting up an analysis program by automatically recognizing a specific sensor interface board when the specific sensor interface board is mounted to the data analysis system in a plug-and-play manner. The data analysis system of the present invention includes: a sensor interface board consisting of an independent board according to types and characteristics of a sensor, and having an identifier (ID) set up therein; and a data analysis system configured to acquire and analyze a sampling frequency of a signal, provided by the sensor interface board, in a predetermined cycle. Thus, the data analysis system with a function for automatically recognizing a sensor interface board can determine types and characteristics of a sensor by recognizing an ID of a sensor interface board mounted in the plug-and-play manner, and can analyze an acquired sampling frequency by automatically setting up an analysis program corresponding to the sensor interface board. [Reference numerals] (120) Signal conversion unit; (130) Main processor; (150) Communications interface; (210) Sensor; (220) ID setting unit; (AA) Attachment and detachment; (BB) Signal stabilization unit 1; (CC) Signal stabilization unit 2; (DD) Signal stabilizing unit N; (EE) Analysis program 1; (FF) Analysis program 2; (GG) Analysis program N
    • 公开了一种具有自动识别传感器接口板的功能的数据分析系统,其能够通过在特定传感器接口板安装到数据分析系统时自动识别特定的传感器接口板来自动设置分析程序 即插即用的方式。 本发明的数据分析系统包括:由根据传感器的类型和特性的独立板组成的传感器接口板,其中设置有标识符(ID); 以及数据分析系统,被配置为以预定周期获取和分析由传感器接口板提供的信号的采样频率。 因此,具有用于自动识别传感器接口板的功能的数据分析系统可以通过以即插即用的方式识别传感器接口板的ID来确定传感器的类型和特性,并且可以分析所获取的采样频率 通过自动设置与传感器接口板相对应的分析程序。 (附图标记)(120)信号转换单元; (130)主处理器; (150)通信接口; (210)传感器; (220)ID设定单位; (AA)附件和拆卸; (BB)信号稳定单元1; (CC)信号稳定单元2; (DD)信号稳定单元N; (EE)分析程序1; (FF)分析程序2; (GG)分析程序N
    • 8. 发明授权
    • 단순 가ㆍ감압 싸이클을 이용한 자기가압기의 감압장치 및방법
    • 단순가ㆍ감압싸이클을이용한자기가압기의감압장치및방단순
    • KR100383817B1
    • 2003-05-14
    • KR1020000080231
    • 2000-12-22
    • 한국원자력연구원한국전력공사
    • 조봉현이두정윤주현배윤영김환열박천태최병선서재광강형석이준강한옥유승엽김영인황영동이태호장문희
    • G21C1/09
    • Y02E30/40
    • PURPOSE: A decompression device of self-pressurizer using simple pressure cycle and a method of the same are provided to reduce a pressure of a pressurizer to an air pressure by collecting a nitrogen gas in a gas cylinder. CONSTITUTION: A first process opens a magnetic pressurizer isolation valve(11) and a gas cylinder connection tube isolation tube(22), and exhausts a nitrogen gas from a magnetic pressurizer(10) into a gas supplementation tank(30). A second process opens a gas cylinder isolation valve(21) and makes a secondary equilibrium with a pressure of a gas cylinder(20). A third process exhausts the nitrogen gas from the gas supplementation tank(30) and collects the nitrogen gas in the gas cylinder(20). A fourth process opens a gas supplementation tank exhaustion tube isolation valve(32) and exhausts a water from the gas supplementation tank(30) into an exhaustion tank(50).
    • 目的:提供一种使用简单压力循环的自增压器的减压装置及其方法,以通过收集气瓶中的氮气将增压器的压力降低至气压。 结构:第一过程打开磁性稳压器隔离阀(11)和气瓶连接管隔离管(22),并将氮气从磁性稳压器(10)排出到气体补充罐(30)中。 第二过程打开气瓶隔离阀(21)并且利用气瓶(20)的压力进行二次平衡。 第三过程排出来自气体补充罐(30)的氮气并收集气瓶(20)中的氮气。 第四过程打开气体补充箱排气管隔离阀(32)并将来自气体补充箱(30)的水排出到排气箱(50)中。