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    • 32. 发明授权
    • 방사성 폐기물 저장 용기
    • 放射性废物储存容器
    • KR101604406B1
    • 2016-03-17
    • KR1020140121229
    • 2014-09-12
    • 한양대학교 산학협력단한국원자력연구원
    • 김도현김종경신창호김송현박환서
    • G21F9/36
    • G21F9/36G21F5/015G21F9/00
    • 본발명의실시예에따른방사성폐기물저장용기는방사성폐기물을포함한적어도하나의하부차폐층을내부에형성하여폐기물저장공간을구비한중공구조의하부하우징; 및상기하부차폐층에대응하여상기방사성폐기물을포함한적어도하나의상부차폐층을내부에형성하고상기하부하우징의개구부를덮는상부하우징;을포함한다. 본발명의실시예들에따른방사성폐기물저장용기는저장공간에담긴높은준위의방사성폐기물에대해방사능을가지는방사성폐기물과고화재의차폐층들을주변에배치함으로써, 저장공간이증가되어방사성폐기물처분에대한경제성이향상될수 있는효과가있다.
    • 根据本发明实施例的用于放射性废物的储存容器包括中空结构的下壳体,其形成包括放射性废物的至少一个下屏蔽层并具有废物存储空间; 以及形成至少一个上屏蔽层的上壳体,所述上屏蔽层包括与所述下屏蔽层相对应的放射性废料并且覆盖所述下软管的开口部分。 根据本发明实施例的放射性废物储存容器可以通过围绕储存在储存空间中的高放射性废物放射性的放射性废物和凝固剂屏蔽层来提高放射性废物处理的经济可行性。
    • 35. 发明公开
    • 방사성 동위원소 분배 장치
    • 放射性分布设备
    • KR1020120040997A
    • 2012-04-30
    • KR1020100102541
    • 2010-10-20
    • 경북대학교 산학협력단
    • 안병철이재태이상우박대호
    • G21C19/32G21F5/015
    • G21C11/02G21C19/32G21F5/015G21G4/08
    • PURPOSE: A radioactive isotope distribution device is provided to reduce the danger of radiation exposure by automatically distributing a radioactive isotope from a main container by using a distribution syringe. CONSTITUTION: A main container(100) stores a radioactive isotope. A pump(110) transmits the radioactive isotope to the outside of the main container. A plurality of distribution syringes comprises a cylinder and a piston which arranges a gasket in one side. A connection pipe(130) interlinks the main container and the plurality of distribution syringes. A distribution syringe automatic fixing device controls and fixes the pistons of the distribution syringe. A controller calculates the amount of use of the radioactive isotope which is assigned to each distribution syringes and controls the distribution syringe automatic fixing device.
    • 目的:提供放射性同位素分布装置,通过使用分配注射器自动分配来自主容器的放射性同位素来减少辐射暴露的危险。 构成:主容器(100)存放放射性同位素。 泵(110)将放射性同位素传输到主容器的外部。 多个分配注射器包括在一侧布置衬垫的气缸和活塞。 连接管(130)将主容器和多个分注注射器相互连接。 分配注射器自动固定装置控制和固定分配注射器的活塞。 控制器计算分配给每个分配注射器的放射性同位素的使用量并控制分配注射器自动定影装置。
    • 36. 发明公开
    • 삼중수소 취급용기
    • TRITIUM的处理船只
    • KR1020120040324A
    • 2012-04-27
    • KR1020100101665
    • 2010-10-19
    • 한국수력원자력 주식회사
    • 송규민손순환이계우고병욱백승우이민수
    • G21F5/00G21F9/02
    • G21F5/14G21F5/015G21F5/08
    • PURPOSE: A tritium handling container is provided to secure safety when storing and carrying tritium by enduring high temperature, pressure, external shocks, and heat penetration. CONSTITUTION: A carrying container(3) accepts a storing container. The carrying container is partitioned into an upper container part and a lower container part. A flange joints the lower side of the upper container part and the upper side of the lower container part. The upper container part and the lower container part are sealed by a metal ring. Mounting grooves having different internal diameter are formed on the upper side of the lower container part. O-rings are respectively formed on the mounting grooves. A space part is formed on one upper side of the upper container part.
    • 目的:提供氚处理容器,通过耐高温,高压,外部冲击和热穿透来储存和携带氚,以确保安全。 构成:承载容器(3)接受储存容器。 承载容器被分隔成上部容器部分和下部容器部分。 凸缘接合上部容器部分的下侧和下部容器部分的上侧。 上容器部分和下容器部分由金属环密封。 在下容器部分的上侧形成具有不同内径的安装槽。 O形环分别形成在安装槽上。 空间部分形成在上容器部分的一个上侧上。
    • 37. 发明公开
    • 고방사성 시료 이송장치
    • 高放射性标本的运输装置
    • KR1020090076071A
    • 2009-07-13
    • KR1020080001816
    • 2008-01-07
    • 한국원자력연구원한국수력원자력 주식회사
    • 박순달박양순하영경지광용
    • G21F5/015G21F5/00
    • G21F5/015G21F1/085G21F7/041
    • A high radioactive specimen transferring device is provided to minimize radiation exposure of a worker by transferring heavy specimen container. A high radioactive specimen transferring device includes a trolly(3), a control unit(4), and a tilting device(5). The trolly transfers the cylindrical specimen container(2) with the high level radioactive specimen. The trolly includes a moving wheel(21) and a support(34). The moving wheel is mounted in the lower part of the trolly. The X shaped support stand connects an upper part(32) and a lower part(31) of the trolly. The control unit is positioned in the upper part of the trolley. The control unit controls the movement of the specimen container. The tilting device is positioned in the upper part of the control unit. The tilting device controls the tilting angle of the specimen container upward and downward.
    • 提供高放射性样品转移装置,以通过转移重的样品容器来最小化工作人员的辐射暴露。 高放射性样品转印装置包括手推车(3),控制单元(4)和倾斜装置(5)。 用高级放射性试样将圆柱形样品容器(2)推入。 手推车包括移动轮(21)和支撑件(34)。 移动轮安装在手推车的下部。 X形支撑台连接台车的上部(32)和下部(31)。 控制单元位于手推车的上部。 控制单元控制检体容器的移动。 倾斜装置位于控制单元的上部。 倾斜装置向上和向下控制样品容器的倾斜角度。
    • 38. 发明公开
    • 사용후핵연료의 연소도이득효과의 향상 방법
    • 改进燃油核燃料燃烧的方法
    • KR1020090067116A
    • 2009-06-24
    • KR1020080130662
    • 2008-12-19
    • 웨스팅하우스 일렉트릭 컴퍼니 엘엘씨
    • 쿠니,배리에프.캠덴,토마스엠.쥬니어
    • G21F5/015G21F5/00
    • G21F9/34G21C19/44G21F9/36Y02W30/882G21F5/015G21F5/00
    • A method for increasing the burnup of nuclear fuel used is provided to increase the burnup of nuclear fuel used in order to reduce the amount of nuclear fuel to be accumulated in a fuel storage unit and a transfer container. A method for increasing the burnup of nuclear fuel used comprises the following steps of: generating a series of curves of current burnup vs. concentration, wherein each curve shows fuel assemblies used; measuring actual burnup distribution to an axial direction of the fuel assemblies; recording the number of the used fuel assemblies having reverse burnup distribution to the axial direction; discriminating whether the used fuel assemblies can be applied to a new fuel assembly; finding a point which corresponds to the current burnup and initial concentration to the new fuel assembly; and determining whether the point is located on the applicable curves or not.
    • 提供了增加所用核燃料燃耗的方法,以增加使用的核燃料的燃耗,以便减少积聚在燃料储存单元和转运容器中的核燃料的量。 增加使用的核燃料燃耗的方法包括以下步骤:产生当前燃耗与浓度的一系列曲线,其中每个曲线示出使用的燃料组件; 测量燃料组件的轴向方向上的实际燃耗分布; 将具有反向燃耗分配的废燃料组件的数量记录到轴向; 鉴别所使用的燃料组件是否可以应用于新的燃料组件; 找到对应于新燃料组件的当前燃耗和初始浓度的点; 并确定该点是否位于适用的曲线上。
    • 39. 发明公开
    • 자동화된 분배 시스템 및 관련 사용 방법
    • 自动分配系统及相关使用方法
    • KR1020070026593A
    • 2007-03-08
    • KR1020067026333
    • 2005-05-10
    • 말린크로트 엘엘씨
    • 그레이브스케빈윌리엄스앤드류샤트앤드류엠.웡데이비드엠.
    • A61M5/00B65B3/00
    • B65B3/003G21F5/015
    • An automated bulk dispensing system (10) and a method of use including selectively receiving a predetermined amount of radioactive liquid from a second container (50) into a third container (46), selectively receiving a predetermined amount of nonradioactive liquid from a first container (48) into a fourth container (44) or directly into the third container (46) depending on whether kits or multi-dose containers of medicine are desired. Preferably, this is for nuclear pharmaceuticals. Displacement mechanisms that are connected to the third container (46) and fourth container (44) are for mixing and dispensing liquid. There is at least one control valve (52), preferably three control valves, which are each controlled by drive mechanisms. The mixed liquid from the third container can be transferred to a recipient container. There is also a gas vent and bubble detector to eliminate bubbles with a processor that is also utilized to control the displacement mechanisms and the drive mechanisms. ® KIPO & WIPO 2007
    • 一种自动批量分配系统(10)和使用方法,包括从第二容器(50)选择性地接收预定量的放射性液体到第三容器(46)中,从第一容器选择性地接收预定量的非放射性液体( 48)进入第四容器(44)或直接进入第三容器(46),这取决于是否需要药剂盒或多剂量药物容器。 优选地,这是用于核药物。 连接到第三容器(46)和第四容器(44)的位移机构用于混合和分配液体。 至少有一个控制阀(52),最好是三个控制阀,它们都由驱动机构控制。 来自第三容器的混合液体可以被转移到容器中。 还有一个排气口和气泡检测器,用于处理器消除气泡,处理器也用于控制位移机构和驱动机构。 ®KIPO&WIPO 2007