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    • 42. 发明公开
    • 압력방출 기능을 구비한 핵연료봉
    • 具有压力减轻机制的核燃料棒
    • KR20150075393A
    • 2015-07-03
    • KR20150079423
    • 2015-06-04
    • KOREA ATOMIC ENERGY RESKOREA HYDRO & NUCLEAR POWER CO
    • KANG HEUNG SEOKSONG KUN WOOKOO YANG HYUNLEE KANG HEEKIM JAE YONGLEE YOUNG HO
    • G21C9/004G21C3/17G21C3/32
    • Y02E30/40
    • 본발명에따른핵연료봉은밀봉부재(200)의내부에피복관내부의압력이피복관외부의압력보다큰 경우, 밀봉부재의일측으로밀봉부재의압력을배출시키는압력이완부가배치된다. 본발명에따른핵 연료봉용밀봉부재및 파열판을구비한핵 연료봉은냉각수상실사고와같이핵 열료봉이냉각이원활하게수행되지않는상황에서핵 연료봉이내부압력이외부압력보다높은경우내부에배치된파열판또는체적증가부재등의변화또는이동에의하여피복관내부의체적을증가시켜피복관내부의증가되는압력을해소시킬수 있으며, 피복관내부의압력이증가되는경우피복관외부로내부의압력을배출시켜피복관이부풀어오르는것을방지할수 있는효과가있다.
    • 根据本发明的核燃料棒包括压力缓冲部件,用于当涂覆管的内部压力高于涂覆管的外部压力时,将密封部件(200)的压力排出到密封部件的一侧 密封件。 根据本发明的用于核燃料棒和具有破裂盘的核燃料棒的密封构件可以通过移动或改变体积增加构件来增加涂布管的体积或破裂来去除涂覆管的内部压力 当核燃料棒的内部压力高于外部压力时,磁盘。 如果涂布管的内部压力增加,则涂布管的内部压力被排出到外部。 由此,可以防止涂布管的膨胀。
    • 45. 发明授权
    • Blind flange guard apparatus of fuel transfer tube in nuclear power plant
    • 核电厂燃料转移管的法兰防护装置
    • KR101160781B1
    • 2012-06-27
    • KR20100140259
    • 2010-12-31
    • KOREA HYDRO & NUCLEAR POWER CO
    • KIM MAN WONKIM DAE HEONSONG EUN HEA
    • G21C19/20G21C19/18
    • G21C19/18G21C19/22G21Y2002/50G21Y2002/501G21Y2004/20
    • PURPOSE: A blind flange supporting device of a fuel transfer tube in a nuclear power plant is provided to increase an operation speed by minimizing a moving distance of a blind flange separated from a fuel transfer tube. CONSTITUTION: A guide rail(120) is located on the lower side of a blind flange. The blind flange rolls and moves in the guide rail. A side guard(130) prevents the blind flange from being separated from the guide rail in a transverse direction. The guide rail is extended from a mounting position of the blind flange to a separation position. A first stopper stops the blind flange in the mounting position. A second stopper stops the blind flange in the separation position. A support unit supports the guide rail, the first stopper, the second stopper, and the side guard.
    • 目的:提供核电厂燃料输送管的盲法兰支撑装置,通过最小化与燃料输送管分离的盲法兰的移动距离来提高运行速度。 构成:导轨(120)位于盲法兰的下侧。 盲法兰滚动并在导轨中移动。 侧挡板(130)防止盲板凸缘在横向上与导轨分离。 导轨从盲板凸缘的安装位置延伸到分离位置。 第一个止动器在安装位置停止盲板法兰。 第二个止动器将分离位置的盲法兰挡住。 支撑单元支撑导轨,第一止动件,第二止动件和侧护板。
    • 47. 发明公开
    • Two phase flow measurement device and method by using fluid borne noise and solid borne noise
    • 两相流量测量装置及使用流体E噪声和固体E噪声的方法
    • KR20120035993A
    • 2012-04-17
    • KR20100097626
    • 2010-10-07
    • KOREA HYDRO & NUCLEAR POWER CO
    • LEE DO HWANKIM YANG SEOK
    • G01F1/66G01N29/00G01N29/024
    • PURPOSE: A two-phase flow measuring device using fluid sound and structureborne noise and a measuring method thereof are provided to improve the safety with a heat transferring performance of a plant by accurately distinguish a two-phase flow style flowing in a pipe. CONSTITUTION: A two-phase flow measuring device(200) using fluid sound and structureborne noise comprises a rms calculation unit for each frequency(210), a porosity calculation unit(220), a fluid property calculation unit(230), and a flow style determination unit(240). The rms calculation unit receives fluid sound and structureborne noise signals so that an rms calculation value for each frequency is calculated. The porosity calculation unit receives information related to a temperature and pressure from a temperature sensor(130) and a static pressure sensor(140) installed inside of a fluid device(100) and rms calculation values of fluid sound and structureborne noise and a fluid device(100), thereby calculating a porosity of two-phase flow. The fluid property calculation unit receives the porosity, thereby calculating a density and fluid sound of the two-phase flow. The fluidity mode determination unit receives the porosity calculation result and a signal property of the rms calculation value for each frequency, thereby distinguishing the flow style.
    • 目的:提供使用流体声和结构噪声的两相流量测量装置及其测量方法,以通过精确地区分在管道中流动的两相流型来提高工厂的传热性能的安全性。 构成:使用流体声音和结构噪声的两相流量测量装置(200)包括每个频率(210)的均方根计算单元,孔隙率计算单元(220),流体性质计算单元(230)和流量 风格确定单元(240)。 均方根计算单元接收流体声音和结构噪声信号,以便计算每个频率的有效值计算值。 孔隙率计算单元从温度传感器(130)和安装在流体装置(100)内部的静压传感器(140)接收与温度和压力有关的信息,并且计算流体声音和结构噪声的计算值和流体装置 (100),从而计算出两相流的孔隙率。 流体特性计算单元接收孔隙度,从而计算两相流的密度和流体声音。 流动性模式确定单元接收每个频率的孔隙率计算结果和均方根计算值的信号特性,从而区分流动风格。
    • 49. 发明公开
    • Apparatus for non-destructive testing
    • 非破坏性试验装置
    • KR20120028099A
    • 2012-03-22
    • KR20100090106
    • 2010-09-14
    • KOREA HYDRO & NUCLEAR POWER CO
    • YOON BYUNG SIKLEE HEE JONGKIM YONG SIK
    • G01B21/32G01B21/30G01D5/00G01N29/22
    • PURPOSE: A non-destructive inspection device is provided to accurately and easily evaluate inspection results by indicating the inspection results through three-dimensional cylindrical coordinates. CONSTITUTION: A non-destructive inspection device(100) comprises a central shaft(110), a rotation unit(130), an arm(140), a probe support(160), and a probe(150). The central shaft comprises an angle encoder. The rotation unit is connected to the central shaft and is rotated around the central shaft. The arm is connected to the rotation unit. The probe support is connected to the arm and is moved in the longitudinal direction of the arm. The probe is connected to the probe support.
    • 目的:提供无损检测装置,通过三维圆柱坐标指示检验结果,准确,轻松地评估检验结果。 构造:非破坏性检查装置(100)包括中心轴(110),旋转单元(130),臂(140),探针支架(160)和探针(150)。 中心轴包括角度编码器。 旋转单元连接到中心轴并围绕中心轴旋转。 臂连接到旋转单元。 探针支撑件连接到臂上并且在臂的纵向方向上移动。 探头连接到探头支架。