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    • 5. 发明授权
    • Disposable media filter
    • 一次性介质过滤器
    • US5678230A
    • 1997-10-14
    • US561485
    • 1995-11-20
    • George H. BryanMihai G. M. Pop
    • George H. BryanMihai G. M. Pop
    • B01D29/25G21F9/00
    • B01D29/25B01D2201/34
    • A filter for removing hazardous particulate matter from an aqueous flow. The filter includes a rigid support housing having an input port for the aqueous flow, an exit port for the aqueous flow, a brace to securingly engage a filter vessel for the aqueous flow, an internal seal and an external seal, and a disposable filter cartridge configured similarly to the housing and sized to be substantially entirely received within the housing and sealingly engage the internal seal and having a filter medium that extends across a path from the input port to the exit port when received in the housing, the cartridge having a terminal seal located to sealingly engage the cartridge to the aqueous flow filter vessel outside of the housing when the cartridge sealing engages with the internal seal. The rigid support housing may be installed in a filter vessel for an extended period and held in place by the brace, and repeatedly during the extended period, a disposable cartridge may be installed within the housing to seal the cartridge to the filter vessel, aqueous flow may be directed through the filter medium, and the cartridge may be removed and discarded.
    • 用于从水流中除去有害颗粒物的过滤器。 过滤器包括刚性支撑壳体,其具有用于水流的输入端口,用于水流的出口,用于固定地接合用于水流的过滤容器的支架,内部密封件和外部密封件以及一次性过滤器滤芯 其构造类似于壳体并且尺寸被设计成基本上完全地容纳在壳体内并且密封地接合内部密封件并且具有过滤器介质,当过滤器容纳在壳体中时,过滤介质延伸穿过从输入端口到出口的路径, 当密封件与内部密封件接合时,密封件被定位成将密封件密封地接合到壳体外部的水过滤器容器。 刚性支撑壳体可以长期安装在过滤器容器中并由支架保持在适当位置,并且在长时间内重复地将一次性盒安装在壳体内以将滤芯密封到过滤容器,水流 可以引导通过过滤介质,并且可以取出并丢弃该盒。
    • 7. 发明授权
    • Filter assembly for cooling water in a nuclear reactor
    • 用于核反应堆冷却水的过滤组件
    • US5478469A
    • 1995-12-26
    • US287142
    • 1994-08-08
    • George H. BryanMihai G. M. Pop
    • George H. BryanMihai G. M. Pop
    • B01D29/25B01D27/00
    • B01D29/25B01D2201/34
    • A filter for removing hazardous particulate matter from an aqueous flow. The filter includes a rigid support housing having an input port for the aqueous flow, an exit port for the aqueous flow, a brace to securingly engage a filter vessel for the aqueous flow, an internal seal and an external seal, and a disposable filter cartridge configured similarly to the housing and sized to be substantially entirely received within the housing and sealingly engage the internal seal and having a filter medium that extends across a path from the input port to the exit port when received in the housing, the cartridge having a terminal seal located to sealingly engage the cartridge to the aqueous flow filter vessel outside of the housing when the cartridge sealing engages with the internal seal. The rigid support housing may be installed in a filter vessel for an extended period and held in place by the brace, and repeatedly during the extended period, a disposable cartridge may be installed within the housing to seal the cartridge to the filter vessel, aqueous flow may be directed through the filter medium, and the cartridge may be removed and discarded.
    • 用于从水流中除去有害颗粒物的过滤器。 过滤器包括刚性支撑壳体,其具有用于水流的输入端口,用于水流的出口,用于固定地接合用于水流的过滤容器的支架,内部密封件和外部密封件以及一次性过滤器滤芯 其构造类似于壳体并且尺寸被设计成基本上完全地容纳在壳体内并且密封地接合内部密封件并且具有过滤器介质,当过滤器容纳在壳体中时,过滤介质延伸穿过从输入端口到出口的路径, 当密封件与内部密封件接合时,密封件被定位成将密封件密封地接合到壳体外部的水过滤器容器。 刚性支撑壳体可以长期安装在过滤器容器中并由支架保持在适当位置,并且在长时间内重复地将一次性盒安装在壳体内以将滤芯密封到过滤容器,水流 可以引导通过过滤介质,并且可以取出并丢弃该盒。
    • 8. 发明授权
    • Method for prediction of light water reactor fuel defects using a fuel condition index
    • 使用燃料条件指数预测轻水反应堆燃料缺陷的方法
    • US08737557B2
    • 2014-05-27
    • US11490959
    • 2006-07-21
    • Mihai G. M. PopBrian Glenn Lockamon
    • Mihai G. M. PopBrian Glenn Lockamon
    • G21C17/07
    • G21C7/06G21C17/06
    • A method to assess light water reactor fuel integrity is presented having the steps of granting access in a nuclear reactor fuel pool to at least one of a discharged fuel rod and a nuclear fuel assembly, calculating an operating flux for the fuel rod, measuring a thickness of CRUD on the fuel rod, measuring a thickness of oxide on the fuel rod, calculating a maximized flux for the at least one fuel rod for a position of the one fuel rod in a nuclear reactor, calculating a maximized deposit for the fuel rod, calculating a maximized oxide thickness for the fuel rod, calculating a fuel condition index of the fuel rod, comparing the fuel condition index to an index constant, and removing the fuel rod from operation when the fuel condition index is greater than the index constant.
    • 提出了一种评估轻水反应堆燃料完整性的方法,其具有以下步骤:在核反应堆燃料池中进入至排放的燃料棒和核燃料组件中的至少一个,计算燃料棒的工作流量,测量厚度 在燃料棒上测量燃料棒上的氧化物的厚度,计算用于核反应堆中一个燃料棒的位置的至少一个燃料棒的最大通量,计算燃料棒的最大沉积物, 计算燃料棒的最大化氧化物厚度,计算燃料棒的燃料条件指数,将燃料条件指数与指数常数进行比较,以及当燃料条件指数大于指标常数时将燃料棒从操作中去除。
    • 10. 发明授权
    • Resonating electroplating anode and process
    • 共振电镀阳极和工艺
    • US5695621A
    • 1997-12-09
    • US688907
    • 1996-07-31
    • Mihai G. M. PopJames E. GalfordDonald R. Stewart
    • Mihai G. M. PopJames E. GalfordDonald R. Stewart
    • C25D5/20C25D7/04C25D17/12C25B11/00
    • C25D17/12C25D5/20C25D7/04
    • A resonating electroplating anode electrode for electroplating the inside surfaces of steam generator tubing. The resonating electroplating anode electrode is formed from a plurality of tubular ceramic resonating material pieces glued to the inside and/or to one end of an anode tube to create a single resonating volume. In operation, an electrolyte solution is fed to the outside of the electrode in an annulus formed between the steam generator tube and the anode and returns through a hollow center in the anode. During use, the resonating materials resonate within the electrolyte solution during the electroplating process, thus creating an ultrasound enhanced-electroplating process. As a result, the resonating electroplating anode electrode and the resulting process reduce the amount of time required for electroplating, increase the production rate, reduce the residual internal stress resulting from electroplating, improves ductility and reduce brittleness of electrode-deposited nickel, produce a less porous deposited plating layer which improves corrosion resistance, and improve the uniformity of the electroplating coating grains. The resulting plated generator tubing is of superior quality and extended durability relative to currently known techniques.
    • 用于电镀蒸汽发生器管道内表面的共振电镀阳极。 共振电镀阳极由多个管状陶瓷谐振材料片形成,该多个管状陶瓷谐振材料片胶合到阳极管的内部和/或一端,以产生单个共振体积。 在操作中,电解质溶液在形成于蒸汽发生器管和阳极之间的环形空间中被供给到电极的外部,并通过阳极中的中空返回。 在使用过程中,共振材料在电镀过程中在电解质溶液中共振,从而产生超声增强电镀工艺。 结果,共振电镀阳极电极和所得到的工艺减少了电镀所需的时间,提高了生产率,减少了由于电镀导致的残余内部应力,提高了延展性,并降低了电极沉积镍的脆性,产生了较少的 多孔沉积镀层,其提高耐腐蚀性,并提高电镀涂层颗粒的均匀性。 所得到的电镀发生器管道相对于目前已知的技术具有优异的质量和延长的耐久性。