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A numerical method for simulating the non-homogeneous irradiation effects in full-sized dispersion nuclear fuel plates

机译:模拟全尺寸弥散核燃料板非均匀辐照效应的数值方法

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摘要

For full-sized dispersion nuclear fuel plates under heterogeneous irradiation conditions, the three-dimensional large deformation incremental constitutive relations and stress update algorithms are built for the homogenized fuel meat and cladding in the co-rotational coordinate frame with a location-dependent irradiation-hardening effect in the cladding involved. The user subroutines to define the location-dependent thermo-mechanical constitutive relations are correspondingly developed and validated. Numerical simulation of the thermo-mechanical behaviors in a non-uniformly irradiated fuel plate is correctly realized. The obtained results indicate that (1) both the volumetric swelling and temperature distributions show remarkable non-uniform characters; (2) the maximum thickness variation appears in the strongly irradiated location at lower burnup, and it is not the case at higher burnup; (3) at the initial stage a stress concentration area in the cladding exists in the constrained plate corner; and with increasing burnup the highest Mises stresses exist at the locations with an enhanced irradiation condition.
机译:对于非均质辐照条件下的全尺寸弥散核燃料板,建立了三维大变形增量本构关系和应力更新算法,用于均质燃料肉和覆层在同旋转坐标系中具有位置依赖的辐照硬化在涉及的覆层中起作用。相应地开发和验证了用于定义与位置相关的热机械本构关系的用户子例程。正确实现了非均匀辐照燃料板热力学行为的数值模拟。结果表明:(1)体积膨胀和温度分布均表现出明显的非均匀性; (2)最大厚度变化出现在燃耗较低的强烈照射位置,而不是燃耗较高的情况; (3)在初始阶段,受约束的板角处存在着包层中的应力集中区域。随着燃耗的增加,最高的米塞斯应力存在于辐射条件增强的位置。

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