【24h】

Nuclear concrete microstructure generation for simulating creep

机译:模拟蠕变的核混凝土微观结构

获取原文

摘要

Nearly all nuclear power plants in the United Statesare operating past their intended lifetimes. Therefore,understanding changes to the concrete containmentstructure over time is crucial to evaluate the structure’sviability. One important parameter to understand iscreep, as it can lead to stress redistribution and creepcracking. This research uses a combination of X-Ray CTand finite element analysis techniques to generate virtualconcrete microstructures and simulate creep tests. A codeto create these microstructures using real aggregateshapes has been developed with novel algorithms toimprove efficiency. A custom meshing code was written toproduce finite element models of these microstructureswith periodic boundary conditions. This approach allowsfor the modelling of a wide range of mix designs, materialproperties, and time scales. As a result, investigation intovariables including mechanical properties of aggregates,long term performance, and stress redistribution can beexplored. In comparison to long-term creep tests, thesecodes offer a faster, cheaper method to assess timedependentmaterial phenomena, which are of highimportance when evaluating long-term structuralperformance.
机译:几乎所有核电站在美国经过他们预期的寿命。所以,了解混凝土遏制的变化随着时间的推移结构对于评估结构是至关重要的可行性。理解的一个重要参数是蠕变,因为它可以导致压力再分配和蠕变开裂。该研究使用X射线CT的组合和有限元分析技术生成虚拟混凝土微观结构与模拟蠕变试验。一个代码使用真正的聚合创建这些微结构使用小说算法开发了形状提高效率。写入自定义网格编码生产这些微结构的有限元模型定期边界条件。这种方法允许用于造型各种混合设计,材料属性和时间尺度。结果,调查包括聚集体的机械性能的变量,长期表现,和压力再分配可以探索。与长期蠕变测试相比,这些代码提供更快,更便宜的方法来评估时间依赖性材料现象,其高评估长期结构时的重要性表现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号