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Earthquake-induced rock shear through a deposition hole: Laboratory tests on bentonite-material models and modelling of three scale tests

机译:地震引起的通过沉积孔的岩石剪切:膨润土材料模型的实验室测试和三个比例测试的建模

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Earthquake-induced rock shear through a bentonite-filled deposition hole in a repository for spent nuclear fuel is an important scenario for the safety analysis because it may cause substantial damage to the canister hosting the spent fuel. Appropriate tools to investigate the effects on the buffer and the canister are required.The study described here explored the laboratory tests conducted to develop a material model of the bentonite buffer to be used in the simulations, the material models that these tests have provided and Finite element (FE) simulations of three scale tests of a rock shear for comparison between modelled and measured results. The results were used for validation of the material models and the calculation technique that was used for modelling different rock-shear cases.The laboratory study consisted of swelling-pressure tests and tests to determine shear strength and stress-strain properties. The material model is elastic-plastic with a nonlinear stress-strain relation which depends on the density of the bentonite buffer and is a function of the strain rate. The three scale tests were modelled using the Abaqus finite element code. Good agreement between modelled and measured results was observed, in spite of the complexity of the models and the difficulties associated with measuring stresses and strains under the very fast shear.The modelling results thus validate the modelling of the SR-Site. The modelling technique, the clement mesh and the material models used in these analyses are well fitted and useful for this type of modelling.
机译:地震诱发的岩石剪切通过乏核燃料储存库中填充有膨润土的沉积孔是安全分析的重要方案,因为它可能对容纳乏燃料的碳罐造成重大损害。需要使用适当的工具来研究对缓冲液和罐的影响。此处描述的研究探索了实验室实验,以开发用于模拟的膨润土缓冲剂的材料模型,这些测试提供的材料模型和有限性岩石剪切力的三个比例测试的有限元(FE)模拟,以比较建模结果和测量结果。结果被用于验证材料模型和用于模拟不同岩石剪切情况的计算技术。实验室研究包括膨胀压力测试和确定剪切强度和应力应变特性的测试。材料模型是具有非线性应力-应变关系的弹塑性模型,该关系取决于膨润土缓冲液的密度,并且是应变率的函数。使用Abaqus有限元代码对三个比例测试进行建模。尽管模型复杂且在非常快的剪切力下测量应力和应变相关的困难,但仍能在建模和测量结果之间取得很好的一致性,因此建模结果验证了SR-Site的建模。这些分析中使用的建模技术,Clement网格和材料模型非常适合并且对于此类建模有用。

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