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    Numerical Simulation of Container Breach and Airborne Release of Solids Due to Mechanical Insults

    Source: Journal of Nuclear Engineering and Radiation Science:;2021:;volume( 007 ):;issue: 003::page 031901-1
    Author:
    Louie, David L. Y.
    ,
    Le, San
    ,
    Gilkey, Lindsay N.
    DOI: 10.1115/1.4050212
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: 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.
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      Numerical Simulation of Container Breach and Airborne Release of Solids Due to Mechanical Insults

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4276546
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    • Journal of Nuclear Engineering and Radiation Science

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    contributor authorLouie, David L. Y.
    contributor authorLe, San
    contributor authorGilkey, Lindsay N.
    date accessioned2022-02-05T21:54:15Z
    date available2022-02-05T21:54:15Z
    date copyright4/16/2021 12:00:00 AM
    date issued2021
    identifier issn2332-8983
    identifier otherners_007_03_031901.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4276546
    description abstractThroughout 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.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleNumerical Simulation of Container Breach and Airborne Release of Solids Due to Mechanical Insults
    typeJournal Paper
    journal volume7
    journal issue3
    journal titleJournal of Nuclear Engineering and Radiation Science
    identifier doi10.1115/1.4050212
    journal fristpage031901-1
    journal lastpage031901-10
    page10
    treeJournal of Nuclear Engineering and Radiation Science:;2021:;volume( 007 ):;issue: 003
    contenttypeFulltext
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