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首页> 外文期刊>Nuclear Technology >Performance Analysis of Silicon Carbide Composite Clad Uranium Carbide Fuel for a Long-Life Gas-Cooled Fast Reactor Under Normal Operation-Part Ⅰ: Design Criteria and Material Data
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Performance Analysis of Silicon Carbide Composite Clad Uranium Carbide Fuel for a Long-Life Gas-Cooled Fast Reactor Under Normal Operation-Part Ⅰ: Design Criteria and Material Data

机译:正常操作下的长寿命气体冷却快速反应器碳化硅复合铀碳化物燃料的性能分析 - 第Ⅰ:设计标准和材料数据

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Fuel performance analysis was conducted for the silicon carbide (SiC) composite clad uranium carbide (UC) fuel of a 500-MW(thermal) gas-cooled fast reactor, specifically the energy multiplier module (EM~2) under normal operation. The analysis consists of two parts: Part Ⅰ (this paper) includes a description of design bases and criteria, fuel element design specifications, and material properties and models, while Part Ⅱ includes the fuel modeling approach, computer code, and fuel design evaluation. In Part Ⅰ, the design bases and criteria describe the maximum allowed material temperature, cladding stress limit for structural integrity, and cladding strain limit for hermeticity. The material properties and models have been collected from open literature and recent measurements for the UC and SiC composites, respectively. As a result of reviewing legacy UC properties and models, it is recommended to measure the as-fabricated EM~2 fuel properties with high priority to the thermal conductivity, swelling rate, and mechanical strength. For the SiC composite cladding, it is recommended to refine the creep rate for its temperature and time dependence. The stress-strain model also needs to be refined for its strain rate, irradiation, and temperature dependence.
机译:在正常操作下,为500mW(热)气体冷却的快电抗体的碳化硅(SiC)复合铀碳化物(UC)燃料进行燃料性能分析,特别是能量倍增器模块(EM〜2)。该分析包括两部分:第一部分(本文)包括设计基地和标准,燃料元件设计规格和材料性能和型号的描述,而第Ⅱ部分包括燃料建模方法,计算机代码和燃料设计评估。在Ⅰ部分中,设计基础和标准描述了允许的最大材料温度,包层应力限制,用于阻塞性的覆层应变极限。已经从开放文献和最近的UC和SiC复合材料测量的材料特性和模型。由于审查了遗留UC性能和模型,建议使用高优先级,膨胀率和机械强度的优先级为制造的EM〜2燃料特性。对于SIC复合材料包层,建议改进其温度和时间依赖的蠕变率。压力 - 应变模型还需要精制其应变率,辐照和温度依赖性。

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