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    • 31. 发明申请
    • Preventive Maintenance Method and Apparatus for a Structural Components in a Reactor Pressure Vessel
    • 反应堆压力容器中结构部件的预防性维护方法和装置
    • US20130195236A1
    • 2013-08-01
    • US13753766
    • 2013-01-30
    • HITACHI-GE NUCLEAR ENERGY, LTD
    • Takashi SODAAkihiro KANNONobuo MURAKAMIFujio YOSHIKUBO
    • G21C17/003
    • G21C17/003C21D7/06C21D9/08G21C21/00
    • Disclosed is a water jet peening method that includes the steps of: preparing a water jet peening apparatus having a supporting member, a first divider plate, a nozzle support body, and a second divider plate; inserting the water jet peening apparatus into a piping in which a structure or electronic device is mounted that is susceptible to damage by a jet of water discharged from a jet nozzle or by shock waves; disposing either the first divider plate or the second divider plate between the jet nozzle and the structure or electronic device; filling water into an internal area formed in the piping between the first divider plate and the second divider plate; and subjecting the inner surface of the piping to water jet peening by allowing the jet nozzle to discharge a jet of water into the water in the internal area.
    • 本发明公开了一种喷水喷丸处理方法,包括以下步骤:制备具有支撑构件,第一分隔板,喷嘴支撑体和第二分隔板的喷水喷丸处理装置; 将喷水喷丸装置插入到其中安装结构或电子装置的管道中,该结构或电子装置容易受到从喷嘴喷射的水射流或冲击波的损坏; 将第一分隔板或第二分隔板设置在喷嘴和结构或电子装置之间; 将水充填到形成在第一分隔板和第二分隔板之间的管道中的内部区域中; 并且通过允许喷嘴将水射流排放到内部区域中的水中来对管道的内表面进行喷水喷丸处理。
    • 34. 发明授权
    • Electric power plant, and method for running electric power plant
    • 电厂,电厂运行方式
    • US08448439B2
    • 2013-05-28
    • US12920505
    • 2009-01-30
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • F01K3/00F01K13/02F01K13/00F01K17/00F01K7/34
    • F01K17/005
    • An electric power plant supplies steam generated to a high-pressure turbine and a low-pressure turbine. The steam discharged from the low-pressure turbine is condensed with a condenser. Water generated with the condenser is heated with a low-pressure feed water heater and a high-pressure feed water heater. The steam extracted from the high-pressure turbine is supplied to the high-pressure feed water heater. The steam extracted from the low-pressure turbine is compressed with a steam compressor, and the steam whose temperature has been increased is then supplied to the high-pressure feed water heater. The feed water is heated in the high-pressure feed water heater by the steam extracted from the high-pressure turbine and the steam compressed with the steam compressor. Because the feed water is heated by the extracted steam and the compressed steam in the high-pressure feed water heater, the amount of power consumed by the steam compressor can be reduced.
    • 电力厂将产生的蒸气供给到高压汽轮机和低压汽轮机。 从低压涡轮机排出的蒸汽与冷凝器一起冷凝。 用冷凝器产生的水用低压给水加热器和高压给水加热器加热。 将从高压涡轮机抽出的蒸汽供给到高压给水加热器。 从低压涡轮机提取的蒸汽用蒸汽压缩机压缩,然后将温度升高的蒸汽供给至高压给水加热器。 供给水在高压给水加热器中被从高压汽轮机抽出的蒸汽和用蒸汽压缩机压缩的蒸汽加热。 由于供水通过提取的蒸汽和高压给水加热器中的压缩蒸汽进行加热,因此可以减少蒸汽压缩机消耗的功率。
    • 36. 发明授权
    • Core of light water reactor and fuel assembly
    • 轻水反应堆和燃料组件的核心
    • US08422617B2
    • 2013-04-16
    • US12537452
    • 2009-08-07
    • Renzo TakedaJunichi MiwaKumiaki Moriya
    • Renzo TakedaJunichi MiwaKumiaki Moriya
    • G21C1/04
    • G21C3/326G21C3/42G21C2003/3267Y02E30/38
    • A core of a light water reactor having a plurality of fuel assemblies, which are loaded in said core, having nuclear fuel material containing a plurality of isotopes of transuranium nuclides, an upper blanket zone, a lower blanket zone, and a fissile zone, in which the transuranium nuclides are contained, disposed between the upper blanket zone and the lower blanket zone; wherein a ratio of Pu-239 in all the transuranium nuclides contained in the loaded fuel assembly is in a range of 40 to 60% when burnup of the fuel assembly is 0; sum of a height of the lower blanket zone and a height of the upper blanket zone is in a range of 250 to 600 mm; and the height of said lower blanket zone is in a range of 1.6 to 12 times the height of the upper blanket zone.
    • 具有多个燃料组件的轻水反应堆的核心,其装载在所述芯体中,具有含有多个氮氧化物的多个同位素的核燃料材料,上覆层区域,下覆盖区域和裂变区域 其中包含超氧化物核素,设置在上覆盖区域和下覆盖区域之间; 其中,当所述燃料组件的燃耗为0时,包含在所述装载的燃料组件中的所有超铀核素中的Pu-239的比率在40至60%的范围内; 下橡皮布区域的高度和上覆层区域的高度之和在250至600mm的范围内; 并且所述下覆盖带的高度在上毯区的高度的1.6至12倍的范围内。
    • 37. 发明申请
    • Nuclear Power Plant, Fuel Pool Water Cooling Facility and Method Thereof
    • 核电厂,燃料池水冷却设施及其方法
    • US20120294407A1
    • 2012-11-22
    • US13455599
    • 2012-04-25
    • Koji NambaMasaya OhtsukaKoji Fujimura
    • Koji NambaMasaya OhtsukaKoji Fujimura
    • G21C19/00
    • G21C19/07G21C9/004G21D3/06Y02E30/40
    • A nuclear power plant and a fuel pool water cooling facility and method are provided that can suppress the decrease of a water level in a fuel pool with no power supply at the time of malfunction of a circulating water system.The nuclear power plant includes a reactor pressure vessel 2 that encompasses a reactor 1 containing nuclear fuel; a containment vessel 3 for housing the reactor pressure vessel 2; a fuel pool 11 for storing spent fuel 12; a reactor building 10 that houses the reactor pressure vessel 2, the containment vessel 3 and the fuel pool 11; a circulating water system 21 adapted to forced-circulating-cool the fuel pool water 14 in the fuel pool 11; and at least one heat pipe 13 for transferring heat of the fuel pool water 14 in the fuel pool 11 and discharging the heat to the atmosphere.
    • 提供一种核电站和燃料池水冷却设备和方法,其能够抑制在循环水系统发生故障时没有电力供应的燃料池中的水位的下降。 核电站包括反应堆压力容器2,其包含含有核燃料的反应器1; 用于容纳反应堆压力容器2的容纳容器3; 用于储存乏燃料12的燃料池11; 容纳反应堆压力容器2的反应堆10,容纳容器3和燃料池11; 适于强制循环冷却燃料池11中的燃料池水14的循环水系统21; 以及至少一个热管13,用于将燃料池11中的燃料池水14的热传递到燃料池11中并将热量排放到大气中。
    • 38. 发明授权
    • Control rod
    • 控制杆
    • US08213563B1
    • 2012-07-03
    • US12019103
    • 2008-01-24
    • Takayuki ArakawaKoichi MachidaNorio KawashimaKazuki KobayashiYoshiharu Kikuchi
    • Takayuki ArakawaKoichi MachidaNorio KawashimaKazuki KobayashiYoshiharu Kikuchi
    • G21C7/00
    • G21C7/113G21C7/10Y02E30/39
    • A control rod includes a tie-rod, a handle mounted to an upper end portion of the tie-rod, either a connector plate or a fall velocity limiter mounted to a lower end portion of the tie-rod, sheaths having a U-shaped cross-section, welded intermittently to the tie-rod at a plurality of locations in the axial direction of the tie-rod, and having an upper end welded to the handle and a lower end welded to either the connector plate or the fall velocity limiter, and a neutron absorbing member disposed inside each of the sheaths. An upper end of a weld portion located at uppermost position in an axial direction of the tie-rod among a plurality of weld portions between the tie-rod and the sheath is disposed at a position within a range between 0.8 and 13% of total axial length Ls of the sheath below an upper end of the sheath.
    • 控制杆包括拉杆,安装到拉杆的上端部分的手柄,安装到拉杆的下端部分的连接板或下落速度限制器,具有U形的护套 横截面,在连杆的轴向方向上的多个位置处间断地焊接到拉杆,并且具有焊接到手柄的上端,以及焊接到连接器板或下落速度限制器的下端 以及设置在每个护套内的中子吸收构件。 位于拉杆和护套之间的多个焊接部分中的位于拉杆的轴向方向上的最上位置处的焊接部分的上端设置在总轴向的0.8和13%之间的范围内的位置 在鞘的上端下方的鞘的长度Ls。
    • 39. 发明授权
    • Ultrasonic measurement method, ultrasonic measurement apparatus, and ultrasonic sensor
    • 超声波测量方法,超声波测量装置和超声波传感器
    • US08210043B2
    • 2012-07-03
    • US12754264
    • 2010-04-05
    • Hirohisa MizotaNaoyuki KonoAtsushi Baba
    • Hirohisa MizotaNaoyuki KonoAtsushi Baba
    • G01N29/04
    • G01N29/262G01N2291/0289G01N2291/106G10K11/345
    • An ultrasonic measurement method and an ultrasonic measurement apparatus are capable of performing an inspection for a short time with a high SN ratio and a small variation (that depends on an inspection direction) in sensitivity in a process for detecting a defect in all directions at 360 degrees using a matrix array sensor without performing mechanical scanning in all directions, while reducing noise that is caused by a bottom surface echo. An element selecting circuit selects a group of a plurality of ultrasonic transducer elements for transmission from among ultrasonic transducer elements that constitute a two-dimensional array sensor so that the ultrasonic transducer elements for selected for transmission are arranged in line symmetry with respect to a first line symmetric axis to set the group selected for transmission.
    • 超声波测量方法和超声波测量装置能够在360度全方位检测缺陷的处理中以高SN比和小的变化(取决于检查方向)进行短时间的检查 使用矩阵阵列传感器,而不会在所有方向上执行机械扫描,同时减少由底面回波引起的噪声。 元件选择电路从构成二维阵列传感器的超声换能器元件中选择一组用于透射的超声波换能器元件,使得用于选择用于透射的超声波换能器元件相对于第一线线排列成对称 对称轴设置选择的组进行传输。
    • 40. 发明申请
    • Inspection Apparatus and Method for Producing Image for Inspection
    • 检验仪器及其检测方法
    • US20120026317A1
    • 2012-02-02
    • US13160108
    • 2011-06-14
    • Kenji NAKAHIRAAtsushi MiyamotoNaoki HosoyaMinoru Yoshida
    • Kenji NAKAHIRAAtsushi MiyamotoNaoki HosoyaMinoru Yoshida
    • H04N7/18
    • H04N5/265H04N5/217H04N5/2628H04N7/183
    • In order to obtain a quality image without deterioration owing to radiation noise in inspection using the optical video camera in high radiation environment, an inspection apparatus is formed of an image pick-up unit, an image obtaining unit which fetches a video image that contains a signal (noise) that is substantially independent of each frame obtained by the image pick-up unit, a local alignment unit which locally aligns frames with different time phases for forming the image fetched by the image obtaining unit, a frame synthesizing unit which synthesizes the plurality of frames aligned by the local alignment unit for generating a synthesis frame with an SN ratio higher than the SN ratio of the frame before frame synthesis, and an image output unit for displaying or recording the image formed of the synthesis frame generated by the frame synthesizing unit.
    • 为了在高辐射环境下使用光学摄像机的检查中的辐射噪声获得质量图像而不劣化,检查装置由图像拾取单元,图像获取单元,其获取包含 信号(噪声),其基本上独立于由图像拾取单元获得的每个帧;局部对准单元,其对具有不同时间相位的帧进行局部对准,以形成由图像获取单元获取的图像;帧合成单元, 由本地对准单元对准的多个帧,用于产生SN比高于帧合成之前的帧的SN比的合成帧;以及图像输出单元,用于显示或记录由帧生成的合成帧形成的图像 合成单位。