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首页> 外文期刊>Journal of nuclear engineering and radiation science >Numerical Simulation of Container Breach and Airborne Release of Solids Due to Mechanical Insults
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Numerical Simulation of Container Breach and Airborne Release of Solids Due to Mechanical Insults

机译:由于机械损伤,固体容器突破和空气释放的数值模拟

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摘要

Throughout U.S. Department of Energy (DOE) complexes, safety engineers employ the five-factor formula to calculate the source term (ST) that includes parameters of airborne release fraction (ARF), respirable fraction (RF) and damage ratio (DR). Limited experimental data on fragmentation of solids, such as ceramic pellets (i.e., PuO2), and container breach due to mechanical insults (i.e., drop and forklift impact), can be supplemented by modeling and simulation using high fidelity computational tools to estimate these parameters. This paper presents the use of Sandia National Laboratories' SIERRA solid mechanics (SM) finite element code to investigate the behavior of the widely utilized waste container (such as 7A Drum) subject to a range of free fall impact and puncture scenarios. The resulting behavior of the container is assessed, and the estimates are presented for bounding DRs from calculated breach areas for the various accident conditions considered. This paper also describes a novel multiscale constitutive model recently implemented in SIERRA/SM that simulates the fracture of brittle materials such as PuO2 and determines ARF during the fracture process. Comparisons are made between model predictions and simple bench-top experiments.
机译:在整个美国能源部(DOE)建筑群中,安全工程师使用五因素公式来计算源项(ST),其中包括空气释放分数(ARF)、呼吸分数(RF)和损伤率(DR)的参数。关于固体破碎的有限实验数据,例如陶瓷颗粒(即PuO2)和因机械绝缘(即跌落和叉车冲击)导致的容器破裂,可以通过使用高保真计算工具进行建模和模拟来补充,以估计这些参数。本文介绍了使用Sandia国家实验室的SIERRA solid mechanics(SM)有限元程序来研究广泛使用的废物容器(如7A桶)在一系列自由落体碰撞和穿孔情况下的行为。评估集装箱的最终行为,并根据所考虑的各种事故条件下计算的破裂面积给出边界DRs的估计值。本文还描述了最近在SIERRA/SM中实现的一种新的多尺度本构模型,该模型模拟了脆性材料(如PuO2)的断裂,并确定了断裂过程中的ARF。对模型预测和简单的台架试验进行了比较。

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