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    • 71. 发明申请
    • Method of Repairing Shroud Support and Repair Apparatus Thereof
    • 修理护罩支撑及修理装置的方法
    • US20130195238A1
    • 2013-08-01
    • US13753629
    • 2013-01-30
    • Hitachi-GE Nuclear Energy, Ltd.
    • Shinya OHMORIKoichi KUROSAWAMasaaki TANAKATakanori SATOH
    • G21C19/00
    • G21C19/00G21C13/024G21C19/02G21C19/207G21Y2004/50
    • A shroud support of a BWR includes a shroud support cylinder, shroud support legs welded to a bottom of a reactor pressure vessel (RPV) and a shroud support cylinder, and an annular shroud support plate disposed between the RPV and the shroud support cylinder and welded to the RPV and the shroud support cylinder. A support apparatus is set a CRD housings installed to the bottom of the RPV. A rail guide member horizontally set to the support apparatus reaches directly below the shroud support plate through an opening between the shroud support legs. A bent rail is set on the rail guide member. The bent rail setting a repair device is pushed out along the rail guide member toward the RPV through the opening portion by the rail push-out apparatus set on the support apparatus. The bent rail is spread at directly below the shroud support plate.
    • BWR的护罩支撑件包括护罩支撑筒,焊接到反应堆压力容器(RPV)的底部的护罩支撑腿和护罩支撑筒,以及设置在RPV和护罩支撑筒之间并被焊接的环形护罩支撑板 到RPV和护罩支撑筒。 设置支撑装置,安装在RPV底部的CRD外壳。 水平设置到支撑装置的导轨构件通过护罩支撑腿之间的开口直接到达护罩支撑板的正下方。 轨道导轨构件上设有弯轨。 设置修理装置的弯曲轨道通过设置在支撑装置上的轨道推出装置通过开口部沿导轨构件向RPV推出。 弯曲的轨道分布在护罩支撑板的正下方。
    • 79. 发明申请
    • FUEL ASSEMBLY
    • 燃油总成
    • US20120063561A1
    • 2012-03-15
    • US13222366
    • 2011-08-31
    • Takeshi MITSUYASUMotoo AOYAMATetsushi HINOTakuji NAGAYOSHIMasao CHAKI
    • Takeshi MITSUYASUMotoo AOYAMATetsushi HINOTakuji NAGAYOSHIMasao CHAKI
    • G21C3/32
    • G21C3/328G21C3/326Y02E30/38
    • A fuel assembly has a constitution in which plural fuel rods are arranged in 10 rows by 10 columns in a channel box, and includes plural fuel rods G containing gadolinium and plural partial length fuel rods P. In the fuel assembly, average enrichment of lower portion cross section is approximately 4.6 wt %, and average enrichment of upper portion cross section is approximately 4.7 wt %. The average enrichments at the outermost layer are approximately 5.6 wt % both in the upper portion and the lower portion. Ratios e/x of the average enrichment of the outermost layer e (wt %) to the average enrichment of the fuel assembly cross section x (wt %) are 1.19 in the upper portion and 1.22 in the lower portion, and the ratios satisfy equation (1). [ Equation   1 ]  e x ≥ - 18.3  ( x 10 ) 5 + 68.766  ( x 10 ) 4 - 101.77  ( x 10 ) 3 + 74.428  ( x 10 ) 2 - 27.372  ( x 10 ) + 5.1682 ( 1 )
    • 燃料组件具有多个燃料棒在通道箱中以10行×10列排列的结构,并且包括含有钆和多个部分长度的燃料棒P的多个燃料棒G.在燃料组件中,下部的平均浓缩 横截面为约4.6重量%,上部截面的平均富集度为约4.7重量%。 最外层的平均浓度在上部和下部均为5.6重量%左右。 最外层e(wt%)对燃料组件横截面x(wt%)的平均富集度的平均富集比例e / x在上部为1.19,下部为1.22,比率满足式 (1)。 (x 10)4 - 101.77(x 10)3 + 74.428(x 10)2 - 27.372(x 10)+ 5.1682(x 10) (1)