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Conceptual design of ultra-high performance fiber reinforced concrete nuclear waste container

机译:超高性能纤维混凝土核废料容器的概念设计

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This research presents a structural design of high-level waste (HLW) container using ultra-high performance fiber reinforced concrete (UHP-FRC) material. The proposed design aims to overcome the drawbacks of the existing concrete containers which are heavy, difficult to fabricate, and expensive. In this study, the dry storage container (DSC) that commonly used at Canadian Nuclear facilities is selected to present the proposed design. The design has been performed such that the new UHP-FRC alternative has a structural stiffness equivalent to the existing steel-concrete-steel container under various loading scenarios. Size optimization technique is used with the aim of maximizing stiffness, and minimizing the cost while satisfying both the design stresses and construction requirements. Then, the integrity of the new design has been evaluated against accidental drop-impact events based on realistic drop scenarios.The optimization results showed: the stiffness of the UHP-FRC container (300?mm wall thick) is being in the range of 1.35–1.75 times the stiffness of existing DSC (550?mm wall thick). The use of UHP-FRC leads to decrease the container weight by more than 60%. The UHP-FRC container showed a significant enhancement in performance in comparison to the existing DSC design under considered accidental drop impact scenarios.
机译:这项研究提出了使用超高性能纤维增强混凝土(UHP-FRC)材料的高放废物(HLW)容器的结构设计。提出的设计旨在克服现有的混凝土容器的缺点,该容器笨重,难以制造且昂贵。在这项研究中,选择了加拿大核设施中常用的干式储存容器(DSC)来提出建议的设计。进行设计时,在各种载荷情况下,新的UHP-FRC替代品的结构刚度与现有的钢-混凝土-钢容器相同。使用尺寸优化技术的目的是在满足设计应力和施工要求的同时,最大程度地提高刚度并最小化成本。然后,根据现实的跌落场景对新设计的完整性进行了评估,以防意外跌落冲击事件。优化结果表明:UHP-FRC容器(壁厚300?mm)的刚度在1.35范围内刚度是现有DSC(壁厚550?mm)的1.75倍。使用UHP-FRC可将容器重量减少60%以上。在考虑了意外跌落冲击的情况下,与现有的DSC设计相比,UHP-FRC容器的性能有了显着提高。

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