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SIMULATION ON PELLET-CLADDING MECHANICAL INTERACTION (PCMI) OF ACCIDENT TOLERANT FUEL (ATF) WITH COATED CLADDING

机译:包覆涂层对耐事燃料油(ATF)球团包覆机械相互作用(PCMI)的模拟

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In this study, based on the code FROBA (Fuel ROd Behavior Analysis), a thermal-mechanical analysis code initially developed for traditional U02-Zr fuel elements by our research group, a modified version named FROBA-ATF was developed to perform the fuel performance simulation of ATFs with different claddings, including Zr-4, SiC and Zr-4 coated with SiC. Compared with initial version, the cladding could be divided into arbitrary number control volumes with different materials in the new code, so it can be used to perform the calculation for multilayer coatings. In addition, a new non-rigid PCMI calculation model was established in the new code. Neither of the cladding and the pellet was regarded as the rigid body in this study, which means it can provide more accurate prediction compared with the rigid-fuel model in the initial code when Pellet-cladding Mechanical Interaction (PCMI) happened. The FROBA-ATF code was used to predict PCMI performance of two kind fuels with coated claddings, including the internal-surface coating and external-surface coating. The calculation result indicates that because the coating surface was close to the inner surface of the clad where also was the PCMI surface, the absolute value of the combine pressure of internal-surface coated cladding was substantial larger than that of the external-surface coated cladding, which might be harmful the coating behavior. However, the internal-surface coated mode can provide a protection for alloy due to the isolation from direct contact with fuel pellets, which can result in a much lower equivalent stress of zirconium body during the PCMI.
机译:在这项研究中,根据代码FROBA(燃料棒行为分析),由我们的研究小组针对传统U02-Zr燃料元素最初开发的热机械分析代码,开发了名为FROBA-ATF的改进版本以执行燃料性能模拟具有不同包层(包括Zr-4,SiC和涂有SiC的Zr-4)的ATF。与初始版本相比,在新的规范中可以将包层划分为具有不同材料的任​​意数量的控制体积,因此可以用于进行多层涂层的计算。另外,在新代码中建立了新的非刚性PCMI计算模型。在本研究中,包层和丸粒均不被视为刚体,这意味着与初始代码中发生球团-包层机械相互作用(PCMI)时的刚性燃料模型相比,它可以提供更准确的预测。 FROBA-ATF代码用于预测两种带涂层的燃料的PCMI性能,包括内表面涂层和外表面涂层。计算结果表明,由于涂层表面靠近包层的内表面,PCMI也是PCMI表面,因此内表面涂层的复合压力的绝对值明显大于外表面涂层的复合压力的绝对值。 ,这可能会损害涂层性能。然而,由于与燃料芯块直接接触的隔离,内表面涂层模式可以为合金提供保护,这可以在PCMI期间导致锆体的等效应力低得多。

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