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FLAW ACCEPTANCE EVALUATION FOR THE FINAL DISPOSAL CANISTER UNDER EARTHQUAKE INDUCED ROCK SHEAR

机译:地震引起的岩屑作用下末处置犬的跳动合格评估

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When a canister used for final disposal of spent nuclear fuel is in the deposition hole of deep geological repository, the loading case which would most impact the structure integrity of the canister is to postulate an earthquake induced rock shear through a deposition hole. This paper evaluates the acceptable sizes of defects in the cast iron insert of canister using fracture mechanics analysis. The submodelling technique of finite element analysis was employed to calculate the fracture behavior of the canister with postulated defects subjected to shear loads due to earthquake. At first, the stresses of the global model and the uncracked submodel were compared to check the correctness of the transferred displacements from the global model to the submodel. Then, surface and internal flaws with various shapes and depths were modeled individually in the submodel. A 5 cm shear displacement was applied on buffer and then transmitted to the canister. The calculations of J-integral of each flaw indicate that the surface semi-elliptical defect is more critical and the density of buffer material significantly affects the acceptable size of postulated defects. Present results can provide acceptance criteria of crack detection for canisters during manufacture and examination processes.
机译:当用于最终处理乏核燃料的碳罐位于深层地质处置库的沉积孔中时,最可能影响碳罐结构完整性的加载工况是假定地震引起的岩石剪切穿过沉积孔。本文使用断裂力学分析评估了罐的铸铁插件中可接受的缺陷尺寸。采用有限元分析的子建模技术来计算假定罐在地震作用下承受剪切载荷时的断裂行为。首先,比较整体模型和未破裂子模型的应力,以检查从整体模型到子模型的转移位移的正确性。然后,在子模型中分别对具有各种形状和深度的表面和内部缺陷进行建模。在缓冲液上施加5 cm的剪切位移,然后传递到滤罐。每个缺陷的J积分计算表明,表面半椭圆形缺陷更为关键,缓冲材料的密度会显着影响假定缺陷的可接受尺寸。目前的结果可以为罐在制造和检查过程中的裂纹检测提供可接受的标准。

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