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    • 3. 发明公开
    • 공기구동 제어밸브의 온라인 진단 시스템 및 방법
    • 一种用于气动控制阀的在线诊断的系统及其方法
    • KR20180024431A
    • 2018-03-08
    • KR20160110619
    • 2016-08-30
    • KOREA HYDRO & NUCLEAR POWER CO
    • KIM YANG SEOKKIM BUM NYUNKIM DAE WOONGKIM JI INCHOI NAM WOOKANG JU HYUNGPARK YOUNG SHEOPPARK CHI YONGKIM JONG SEOGKIM HYOUNG KYUNLEE BYOUNG OHCHANG HEE SEUNGSHIN YOU SOO
    • F16K37/00F15B19/00F16K31/12
    • F15B19/00F16K31/12F16K37/00
    • 공기구동제어밸브의온라인진단시스템이제공된다. 시스템은, 공기구동제어밸브에부착되어공기구동제어밸브의상태를측정하는복수의센서를포함하는센서세트, 센서세트로부터실시간으로취득한센서신호를처리하여공기구동제어밸브의온라인자동진단을위한공기구동제어밸브상태정보를생성하는스마트데이터분석기, 스마트데이터분석기로부터실시간으로수신한공기구동제어밸브상태정보를온라인진단서버로전송하고미리결정된기간동안저장하는데이터서버, 공기구동제어밸브상태정보와미리저장된공기구동제어밸브의정상상태데이터를비교함으로써공기구동제어밸브의이상여부를결정하여진단정보를생성하는온라인진단서버및 온라인진단서버로부터수신한상기진단정보를표시하는클라이언트컴퓨터를포함할수 있다.
    • 提供了一种用于在线诊断气动控制阀的系统。 该系统可以包括:包括多个传感器的传感器组,该多个传感器连接到气动控制阀,用于测量气动控制阀的状态; 智能数据分析器,用于处理从传感器组实时获取的传感器信号,并产生用于在线自动诊断气动控制阀的气动控制阀状态信息; 数据服务器,用于向在线分析服务器发送从智能数据分析器实时接收的气动控制阀状态信息,并将气动控制阀状态信息存储预定时间段; 所述在线诊断服务器用于通过将所述气动控制阀状态信息与所述气动控制阀的预先存储的正常状态数据进行比较来确定所述气动控制阀是否处于异常状态并生成诊断信息; 以及用于显示从在线诊断服务器接收的诊断信息的客户端计算机。
    • 4. 发明公开
    • 용융로 배출시스템의 가열 및 발열체 막음장치와 방법
    • 夹紧装置的加热装置和加热方法
    • KR20150079512A
    • 2015-07-08
    • KR20150085063
    • 2015-06-16
    • KOREA HYDRO & NUCLEAR POWER CO
    • CHO HYUN JEKIM CHEON WOO
    • G21F9/28F27D3/15
    • 본발명은용융로배출구의막힘현상을방지하고, 용융물을자동으로배출및 중지시킬수 있도록한 용융로배출시스템의가열및 발열체막음장치와방법을제공하는데그 목적이있다. 상기한목적을달성하기위한본 발명에따른용융로배출시스템의가열및 발열체막음장치는용융로의배출구외측에유도가열발열체가설치되고, 상기유도가열발열체의중앙에용융물차단용구멍이형성됨을특징으로한다. 또한, 상기한목적을달성하기위한본 발명에따른용융로배출시스템의가열및 발열체막음방법은용융로의배출구외측에유도가열발열체를설치하고, 상기유도가열발열체의중앙에용융물차단용구멍을형성함을특징으로한다.
    • 本发明提供一种熔化炉排放系统中的加热和加热元件堵塞装置和方法,以防止在熔炉排出口中发生堵塞现象并自动排出和停止熔体。 在熔炉排放系统的加热元件堵塞装置中,感应加热元件安装在熔炉的排出口的外侧,在感应加热元件的中心形成有熔融阻塞孔。 另外,在熔融炉排出系统的加热和加热元件堵塞方法中,感应加热元件安装在熔炉的排出口的外部,并且在感应加热元件的中心形成熔体阻塞孔。
    • 5. 发明公开
    • Fluorescence measurement cell improved by laser multi-reflection for on-line monitoring of process materials in high temperature molten salt
    • 通过激光多重反射改进的荧光测量电池,用于高温过滤材料的在线监测
    • KR20120072665A
    • 2012-07-04
    • KR20100134523
    • 2010-12-24
    • KOREA ATOMIC ENERGY RESKOREA HYDRO & NUCLEAR POWER CO
    • BAE SANG EUNPARK YONG JOONJUNG EUO CHANGSONG KYU SEOK
    • G01N21/64
    • PURPOSE: A laser reflection amplification fluorescence measurement cell for measuring laser fluorescence to monitor a process specimen inside molten salt of high temperatures is provided to measure chemical species and concentrations of lanthanoid or actinide on a real time basis by using wavelength and strength of fluorescence signals appearing from the lanthanoid or actinide inside the molten salt in a process facility site. CONSTITUTION: A laser reflection amplification fluorescence measurement cell comprises a laser light source(110), a laser beam transmitting pipe(120), an incidence mirror unit(130), a reflection amplification unit(140), a cell(100), a focus lens unit(150), and a detector(160). The laser beam transmitting pipe receives laser beams and the lower part of the laser beam transmitting pipe is dipped into predetermined molten salt. The incidence mirror unit is arranged in the lower part of the laser beam transmitting pipe and transmitting the laser beams to the reflection amplification unit by controlling an incidence angle of the laser beams. The reflection amplification is dipped into the molten salt and reflects the laser beams transmitted from the incidence mirror unit in the inside, thereby amplifying fluorescence signals excited from elements comprised in the molten salt. The cell accommodates the fluorescence signals. The focus lens unit focuses the fluorescence signals. The detector measures and analyzes the elements comprises in the molten salt and concentration thereof by analyzing the focused fluorescence signals.
    • 目的:提供用于测量激光荧光以监测高温熔融盐中的过程样品的激光反射放大荧光测量单元,通过使用出现的荧光信号的波长和强度来实时测量镧系元素或锕系元素的化学物质和浓度 来自处理设备现场的熔融盐内的镧系元素或锕系元素。 构成:激光反射放大荧光测量单元包括激光源(110),激光束透射管(120),入射镜单元(130),反射放大单元(140),单元(100), 聚焦透镜单元(150)和检测器(160)。 激光束传输管接收激光束,并将激光束传输管的下部浸入预定的熔盐中。 入射镜单元布置在激光束传输管的下部,并通过控制激光束的入射角将激光束传输到反射放大单元。 反射放大被浸入熔融盐中并将从入射镜单元传输的激光束反射到内部,从而放大从包含在熔融盐中的元素激发的荧光信号。 细胞容纳荧光信号。 聚焦镜头单元聚焦荧光信号。 检测器通过分析聚焦的荧光信号来测量和分析熔融盐中的元素和其浓度。
    • 6. 发明公开
    • High level alpha/beta contamination visualization method and system thereof
    • 高水平/ BETA污染可视化方法及其系统
    • KR20120066956A
    • 2012-06-25
    • KR20100128322
    • 2010-12-15
    • KOREA ATOMIC ENERGY RESKOREA HYDRO & NUCLEAR POWER CO
    • KIM SUNG KYUNLEE KUNE WOOSEO BUM KYOUNGCHUNG UN SOO
    • G21C17/00G01T1/16G21F9/00
    • G21C17/10G01T1/169G01T7/00
    • PURPOSE: A method for visualizing the degree of high level alpha/beta contamination and a system using the same are provided to reduce the generation rate of radioactive wastes by establishing a cutting position at the portion in the portion in which contamination level is high and dissolving only the portion. CONSTITUTION: A high level alpha/beta contamination degree telemeter(100) outputs a minimized distance value in regard to X-axis, Y-axis, Z axis coordinates of a measurement object. A DB storage module(60) stores the minimized distance value measured in the high level alpha/beta contamination degree telemeter as contamination level of the surface of the measurement object and measuring area location coordinates data. A data conversion unit(70) receives the measuring area location coordinates data from the DB storage module and maps a contamination level contour as a stereoscopic image.
    • 目的:提供一种用于可视化高水平α/β污染程度的方法和使用该方法的系统,以通过在污染水平高的部分的部分建立切割位置并溶解而降低放射性废物的产生速率 只有部分。 构成:高水平的α/β污染度遥测仪(100)输出测量对象的X轴,Y轴,Z轴坐标的最小距离值。 DB存储模块(60)将在高级α/β污染度遥测仪中测量的最小距离值存储为测量对象表面的污染水平和测量区位置坐标数据。 数据转换单元(70)从DB存储模块接收测量区域位置坐标数据,并将污染水平轮廓映射为立体图像。
    • 7. 发明公开
    • System and method for synchronized interfaces between engineering analysis programs using databased shared memory
    • 使用数据库共享内存的工程分析程序之间的同步接口的系统和方法
    • KR20120011950A
    • 2012-02-09
    • KR20100073204
    • 2010-07-29
    • KOREA HYDRO & NUCLEAR POWER CO
    • HONG JIN HYUK
    • G06F17/30G06F9/30G06F15/167G06F17/28
    • G06F17/30581G06F8/51G06F9/522G06F9/544
    • PURPOSE: A linking method of synchronized engineering analysis programs and a system thereof are provided to reduce the development time by sharing all global variables information based on a systematized shared memory. CONSTITUTION: A global variable extracting unit(100) extracts global variables defined in source codes of a program. A memory managing unit(200) builds a database of the global variables to store in a shared memory. A translating unit(300) generates an execution file for the program by eliminating a global variables declaring area of the source codes and changing the original data source code. A code executing unit(400) executes the execution file at a synchronized time interval, and stores and restores a shared memory storage space which determines the program state.
    • 目的:提供同步工程分析程序及其系统的链接方法,以通过基于系统化的共享存储器共享所有全局变量信息来减少开发时间。 构成:全局变量提取单元(100)提取在程序的源代码中定义的全局变量。 存储器管理单元(200)构建全局变量的数据库以存储在共享存储器中。 翻译单元(300)通过消除源代码的全局变量声明区域并改变原始数据源代码来生成程序的执行文件。 代码执行单元(400)以同步的时间间隔执行执行文件,并且存储和恢复确定程序状态的共享存储器存储空间。
    • 8. 发明公开
    • Apparatus for impact test of nuclear fuel assembly
    • 核燃料组件冲击试验装置
    • KR20120010444A
    • 2012-02-03
    • KR20100071990
    • 2010-07-26
    • KOREA ATOMIC ENERGY RESKOREA HYDRO & NUCLEAR POWER CO
    • YOON KYUNG HOKIM JAE YONGKIM HYUNG KYULEE KANG HEELEE YOUNG HOKANG HEUNG SEOKSHIN CHANG HWANOH DONG SEOKIN WANG KICHUN TAE HYUN
    • G21C17/06
    • G21C17/06G01M7/08Y02E30/40
    • PURPOSE: An apparatus for testing the impact of a nuclear fuel assembly is provided to perform a repeated impact test of semi-infinite by forming a mechanical structure of being instantaneously detached in a mechanical shock test. CONSTITUTION: An apparatus for testing the impact of a nuclear fuel assembly includes a pestle(30) which is fixed in an upper part of a nuclear fuel assembly and a clamp section(40) which fixes the pestle. A fixing member is formed to fix a head of the pestle. A clamp section is fixed by separating the pestle from the ground to the upper part. The clamp section comprises a vertical bar(50) fixed to an upper plate, a cylinder(60) arranged at the vertical bar, an extrinsic cylinder(80), and a fixing member mounted on the cylinder. The vertical bar is fixed to an upper plate(20) separated from the ground to the upper part. The cylinder is arranged in a bottom part of the vertical bar.
    • 目的:提供一种用于测试核燃料组件的冲击的装置,用于通过在机械冲击试验中形成立即分离的机械结构来进行半无限的重复冲击试验。 构成:用于测试核燃料组件的影响的装置包括固定在核燃料组件的上部的杵(30)和固定杵的夹持部(40)。 形成固定构件以固定研杵的头部。 通过将杵从地面分离到上部来固定夹具部分。 夹紧部分包括固定到上板的垂直杆(50),布置在垂直杆处的圆筒(60),非正常圆筒(80)和安装在圆筒上的固定部件。 垂直杆固定到从地面到上部分离的上板(20)。 气缸布置在垂直杆的底部。
    • 9. 发明授权
    • Apparatus and method for carrying drums automatically for loading the drums
    • 装药和自动装载药物的方法
    • KR100973460B1
    • 2010-08-03
    • KR20100011156
    • 2010-02-05
    • KOREA HYDRO & NUCLEAR POWER COBU KWANG IND CO LTD
    • CHOI JONG RAKCHUNG SUNG HWANKIM SUNG JIN
    • B65G57/20B65G43/08B65G47/88B65G47/91
    • G21F5/14B66C1/625G21F7/065G21F7/067
    • PURPOSE: An apparatus and a method for automatically loading radioactive waste drum on a transport container at a remote is provided to increase the accuracy of a loading position by automating a drum loading process and preventing the shaking of a drum while moving. CONSTITUTION: An apparatus for automatically loading radioactive waste drum on a transport container at a remote comprises a drum feed port(10), a carrier(20), a placing part(40), a crane. The drum feed port comprises a plurality of conveyor modules and a turn-table. A plurality of conveyor modules transfers a drum(5) containing radioactive waste. The turn-table rotates the drum transferred to the conveyor module. The carrier successively loads the drum transferred through the drum feed port. A carrier cover is set on a placing part when the drum is loaded. The crane is composed of a tong and a lifting unit. The tong grips the carrier cover and transfers it.
    • 目的:提供一种用于在遥控器上的运输容器上自动装载放射性废料桶的装置和方法,以通过使滚筒装载过程自动化并防止滚筒在移动时晃动来提高装载位置的精度。 构成:用于在遥控器的运输容器上自动装载放射性废料桶的装置包括滚筒进料口(10),载体(20),放置部分(40),起重机。 滚筒进料口包括多个输送机模块和转台。 多个输送机模块传送包含放射性废物的滚筒(5)。 转盘旋转传送到传送带模块的滚筒。 载体连续地装载通过滚筒进给口传送的滚筒。 当滚筒装载时,托架盖设置在放置部件上。 起重机由钳和提升单元组成。 钳夹住承载盖并将其传送。