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    • 2. 发明授权
    • Holding device
    • 保持装置
    • US09025721B2
    • 2015-05-05
    • US13618641
    • 2012-09-14
    • Kunihiko WadaFumiyo KunoYutaka IshiwataTsuneji KamedaRyoichi HamazakiNoriyuki Katagiri
    • Kunihiko WadaFumiyo KunoYutaka IshiwataTsuneji KamedaRyoichi HamazakiNoriyuki Katagiri
    • G21C9/00G21C9/016
    • G21C9/016Y02E30/40
    • There is provided a holding device which can hold a molten corium for a predetermined period even when the molten corium is exposed to heat or undergoes any chemical reaction and which is applicable to practical use. There is provided a holding device provided below a nuclear reactor pressure vessel for holding a molten corium, wherein the holding device includes a base material in contact with a cooling medium, and a multilayer stack structure on the base material. The multilayer stack structure has a first layer having heat-resistant property, a second layer formed on the first layer and having heat-resistant property with lower heat conductivity than that of the first layer, and a third layer formed on the second layer and having corrosion-resistant property and impact-absorbing property.
    • 提供了一种保持装置,即使在熔融的金属暴露于热或经历任何化学反应并且适用于实际应用的情况下,其也可以将熔融的金属晶体保持预定的时间。 提供了一种保持装置,其设置在用于保持熔融的金属的核反应堆压力容器下方,其中保持装置包括与冷却介质接触的基材,以及在基材上的多层堆叠结构。 多层堆叠结构具有耐热性的第一层,形成在第一层上的具有比第一层低的导热性的耐热性的第二层,以及形成在第二层上的第三层,具有 耐腐蚀性和冲击吸收性。
    • 3. 发明申请
    • HOLDING DEVICE
    • 控股设备
    • US20130070886A1
    • 2013-03-21
    • US13618641
    • 2012-09-14
    • Kunihiko WADAFumiyo KunoYutaka IshiwataTsuneji KamedaRyoichi HamazakiNoriyuki Katagiri
    • Kunihiko WADAFumiyo KunoYutaka IshiwataTsuneji KamedaRyoichi HamazakiNoriyuki Katagiri
    • G21C9/016
    • G21C9/016Y02E30/40
    • There is provided a holding device which can hold a molten corium for a predetermined period even when the molten corium is exposed to heat or undergoes any chemical reaction and which is applicable to practical use. There is provided a holding device provided below a nuclear reactor pressure vessel for holding a molten corium, wherein the holding device includes a base material in contact with a cooling medium, and a multilayer stack structure on the base material. The multilayer stack structure has a first layer having heat-resistant property, a second layer formed on the first layer and having heat-resistant property with lower heat conductivity than that of the first layer, and a third layer formed on the second layer and having corrosion-resistant property and impact-absorbing property.
    • 提供了一种保持装置,即使在熔融的金属暴露于热或经历任何化学反应并且适用于实际应用的情况下,其也可以将熔融的金属晶体保持预定的时间。 提供了一种保持装置,其设置在用于保持熔融的金属的核反应堆压力容器下方,其中保持装置包括与冷却介质接触的基材,以及在基材上的多层堆叠结构。 多层堆叠结构具有耐热性的第一层,形成在第一层上的具有比第一层低的导热性的耐热性的第二层,以及形成在第二层上的第三层,具有 耐腐蚀性和冲击吸收性。
    • 8. 发明申请
    • REACTOR CONTAINMENT VESSEL COOLING SYSTEM, REACTOR CONTAINMENT VESSEL, AND REACTOR CONTAINMENT VESSEL COOLING METHOD
    • 反应器容器管冷却系统,反应器容器和反应器容器冷却方法
    • US20110314858A1
    • 2011-12-29
    • US13204000
    • 2010-03-01
    • Mika TaharaMikihide NakamaruAkira MuraseRyoichi Hamazaki
    • Mika TaharaMikihide NakamaruAkira MuraseRyoichi Hamazaki
    • F25D31/00
    • G21C9/004G21C15/18Y02E30/40
    • A reactor containment vessel cooling technology for preventing the cooling capability and structural integrity of a reactor containment vessel cooling system from decreasing by lowering the temperature of water vapor and gases acquired by the reactor containment vessel cooling system is provided. Based on the technology, the present invention provides a reactor containment vessel cooling system that acquires water vapor in a reactor containment vessel by using water vapor pressure in the vessel as a drive force, condenses the acquired water vapor into condensate, and cools the reactor containment vessel with the condensate. The reactor containment vessel cooling system includes a heat exchange pool 21 that is arranged apart from a dry well 15 and a suppression chamber 16 in the reactor containment vessel 10 and stores a medium for cooling water vapor, a heat exchanger 22 that is immersed in the heat exchange pool 21, acquires water vapor from the dry well 15 in the reactor containment vessel 10, and performs heat exchange between the eater vapor and the cooling medium in the heat exchange pool 21 to generate condensate, and a condensate drain pipe 25 that extracts the condensate from the heat exchanger 22 and guides and discharges the condensate toward a reactor pressure vessel 12.
    • 提供一种用于防止反应堆容器冷却系统的冷却能力和结构完整性的反应堆容器冷却技术,其通过降低反应堆容器冷却系统获得的水蒸气和气体的温度而降低。 基于该技术,本发明提供了一种反应堆容器冷却系统,其通过使用容器中的水蒸汽压力作为驱动力来获取反应堆容器中的水蒸气,将获得的水蒸气冷凝成冷凝物,并冷却反应堆容器 容器与冷凝水。 反应堆安全壳冷却系统包括热交换池21,该热交换池21与反应堆容器10中的干井15和抑制室16分开设置,并储存用于冷却水蒸气的介质,将热交换器22浸入 热交换池21从反应堆容器10中的干井15获取水蒸气,并且在热交换池21中的蒸气与冷却介质之间进行热交换以产生冷凝物,并且提取冷凝水排出管25 来自热交换器22的冷凝物并将冷凝物引导并排出到反应堆压力容器12。