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    • 13. 发明授权
    • Reactor core
    • 反应堆核心
    • US08064565B2
    • 2011-11-22
    • US12624815
    • 2009-11-24
    • Takeshi MitsuyasuMotoo AoyamaKazuya IshiiMasao Chaki
    • Takeshi MitsuyasuMotoo AoyamaKazuya IshiiMasao Chaki
    • G21C23/00
    • G21C3/322G21C15/02G21Y2004/302Y02E30/38
    • A reactor core, comprising: an outermost region; a core region surrounded by said outermost region; a plurality of fuel support members, each of which is disposed at a lower end portion of said outermost region and said core region; and a plurality of fuel assemblies loaded in said outermost region and said core region and supported by said fuel support members, wherein a plurality of fuel assemblies disposed in said core region include a plurality of first fuel assemblies, each of which is inserted into a first coolant passage which is formed in said fuel support member and has a first resistor having an opening, and a plurality of second fuel assemblies, each of which is individually inserted into each of second coolant passage which is formed in said fuel support member and has a second resistor having an opening and a larger pressure loss than that of said first resistor; and, four fuel assemblies, each of which is adjacent to each of four lateral sides of each of a plurality of first fuel assemblies, include either three or four second fuel assemblies.
    • 一种反应堆芯,包括:最外区; 由所述最外区域包围的芯区域; 多个燃料支撑构件,每个燃料支撑构件设置在所述最外区域的下端部分和所述芯区域; 以及多个燃料组件,其装载在所述最外区域和所述芯区域中并由所述燃料支撑构件支撑,其中设置在所述芯区域中的多个燃料组件包括多个第一燃料组件,每个第一燃料组件插入第一 冷却剂通道,其形成在所述燃料支撑构件中并且具有具有开口的第一电阻器,以及多个第二燃料组件,每个第二燃料组件分别插入形成在所述燃料支撑构件中的每个第二冷却剂通道中,并且具有 第二电阻器具有比所述第一电阻器的开口和更大的压力损失; 并且四个燃料组件中的每一个与多个第一燃料组件中的每一个的四个侧面中的每一个相邻,包括三个或四个第二燃料组件。
    • 14. 发明申请
    • Reactor Core
    • 反应堆核心
    • US20100128833A1
    • 2010-05-27
    • US12624815
    • 2009-11-24
    • Takeshi MitsuyasuMotoo AoyamaKazuya IshiiMasao Chaki
    • Takeshi MitsuyasuMotoo AoyamaKazuya IshiiMasao Chaki
    • G21C15/00
    • G21C3/322G21C15/02G21Y2004/302Y02E30/38
    • A reactor core, comprising: an outermost region; a core region surrounded by said outermost region; a plurality of fuel support members, each of which is disposed at a lower end portion of said outermost region and said core region; and a plurality of fuel assemblies loaded in said outermost region and said core region and supported by said fuel support members, wherein a plurality of fuel assemblies disposed in said core region include a plurality of first fuel assemblies, each of which is inserted into a first coolant passage which is formed in said fuel support member and has a first resistor having an opening, and a plurality of second fuel assemblies, each of which is individually inserted into each of second coolant passage which is formed in said fuel support member and has a second resistor having an opening and a larger pressure loss than that of said first resistor; and, four fuel assemblies, each of which is adjacent to each of four lateral sides of each of a plurality of first fuel assemblies, include either three or four second fuel assemblies.
    • 一种反应堆芯,包括:最外区; 由所述最外区域包围的芯区域; 多个燃料支撑构件,每个燃料支撑构件设置在所述最外区域的下端部分和所述芯区域; 以及多个燃料组件,其装载在所述最外区域和所述芯区域中并由所述燃料支撑构件支撑,其中设置在所述芯区域中的多个燃料组件包括多个第一燃料组件,每个第一燃料组件插入第一燃料组件 冷却剂通道,其形成在所述燃料支撑构件中并且具有具有开口的第一电阻器,以及多个第二燃料组件,每个第二燃料组件分别插入形成在所述燃料支撑构件中的每个第二冷却剂通道中,并且具有 第二电阻器具有比所述第一电阻器的开口和更大的压力损失; 并且四个燃料组件中的每一个与多个第一燃料组件中的每一个的四个侧面中的每一个相邻,包括三个或四个第二燃料组件。
    • 16. 发明申请
    • OPERATING METHOD OF NUCLEAR REACTOR AND NUCLEAR POWER GENERATION PLANT
    • 核反应堆和核发电厂的运行方法
    • US20080317191A1
    • 2008-12-25
    • US11765486
    • 2007-06-20
    • Masao ChakiMotoo AoyamaTetsushi HinoKazuya Ishii
    • Masao ChakiMotoo AoyamaTetsushi HinoKazuya Ishii
    • G21C7/32
    • G21C7/32G21D3/14Y02E30/39
    • The present invention decreases the temperature of feed water supplied to the reactor of a set power when the flow rate of coolant supplied to the core of the reactor increases in the end of an operation cycle. This operating method can increase the thermal power of the nuclear power generation plant and increase the economical efficiency of fuel even when the operation cycle is prolonged. Particularly, even when the core flow rate increases in the end of the operation cycle, this method can suppress the rise of the cooling water temperature at the inlet of the core. Consequently, this invention can make the reactivity gain higher than that when the core flow rate is singly increased.The present invention can increase the thermal power of a nuclear reactor, and can improve the economical efficiency of fuel even when a period of an operation cycle is made longer.
    • 本发明在供给到反应堆的核心的冷却剂的流量在操作循环结束时增加时,将供给反应器的供给水的温度降低到设定功率。 这种操作方法可以增加核发电厂的热功率,并且即使在延长操作周期时也可提高燃料的经济效率。 特别是即使在运转循环结束时核心流量增加的情况下,也能够抑制芯体入口处的冷却水温度升高。 因此,本发明可以使反应性增益高于芯流量单独增加时的反应性增益。 本发明可以增加核反应堆的热功率,并且即使在使操作周期更长的时间内也能提高燃料的经济性。
    • 19. 发明授权
    • Initial core and fuel assembly
    • 初始核心和燃料组装
    • US5781604A
    • 1998-07-14
    • US727008
    • 1996-10-08
    • Katsumasa HaikawaAkihiro YamanakaAkiko KandaMotoo AoyamaYoko YuchiJunichi Yamashita
    • Katsumasa HaikawaAkihiro YamanakaAkiko KandaMotoo AoyamaYoko YuchiJunichi Yamashita
    • G21C5/12G21C3/32G21C3/326G21C3/328G21C3/62G21C5/00G21C5/02G21C7/113G21C3/00
    • G21C5/02G21C3/328Y02E30/38
    • In an initial core of the present invention, a low enrichment fuel assembly having the lowest average enrichment factor and three fuel assemblies having a higher average enrichment factor than that of the low enrichment fuel assembly are arranged in a square shape, control rods of a cross shape are arranged at each of four corners of the square shape to constitute a unit loading pattern, and a plurality of the unit loading patterns are provided in the central region of the core, the fuel assemblies having the higher average enrichment factor are divided by a diagonal line into a first region of the side of the control rods and a second region of the side opposite to the control rods, and the number of the gadolinia-containing fuel rods is greater in the second region by at least two than in the first region. The initial core having an enhanced average enrichment factor for accomplishing a high exposure, makes it possible to maintain thermal margin, to suitably suppress the excess reactivity and to improve fuel economy.
    • 在本发明的初始核心中,具有最低平均富集因子的低富集燃料组件和具有比低浓度燃料组件更高的平均富集因子的三个燃料组件布置成正方形,十字形控制棒 形状被布置在方形的四个角中的每一个角上以构成单元加载模式,并且在芯的中心区域中设置多个单元加载模式,具有较高平均富集因子的燃料组件被除以 对角线插入到控制棒的一侧的第一区域和与控制棒相对的一侧的第二区域,并且含氧化钆的燃料棒的数量在第二区域中比在第一区域中的至少两个更大 地区。 具有增强的平均富集因子的初始核心用于实现高暴露,使得可以保持热裕度,以适当地抑制过量反应性并提高燃料经济性。