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Analyses of Material Effects on Steam Explosions in TROI FCI Tests

机译:TROI FCI测试中物质对蒸汽爆炸的影响分析

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摘要

Heat losses, heat remnants, and solidified layer thickness were calculated using a single-sphere film-boiling model. Debris particles of the quenched TROI (Test for Real cOrium Interaction with water) experiments were the target of analyses. The single-sphere film-boiling model can provide the order of triggerability and exponential potential at fuel-coolant interactions of various melt materials. For the triggerability, a system with a small particle size and large thermal conductivity induces a larger heat loss and a more voided mixture, which means a less triggered system. The explosion potentials are dependent not upon the triggerability but upon the heat contents of the mixture melt particles that can participate in a steam explosion. The calculated solidified layer thickness ratio to the radius of the melt particle, defined as a fragility factor of a melt particle in this paper, also maintained consistency with the order of triggerability and was evaluated by the heat loss. The breakup sizes for various melt materials were analyzed with several types of breakup models. A dynamic breakup model to deal with transient velocities can explain the different breakup sizes of various melt materials.
机译:使用单球膜沸腾模型计算热损失,余热和固化层厚度。分析的目标是淬灭的TROI(与水中实际c鎓相互作用的测试)实验中的碎片颗粒。单球膜沸腾模型可以在各种熔融材料的燃料-冷却剂相互作用下提供可触发性和指数势的顺序。对于可触发性,粒径小,导热系数大的系统会引起更大的热损失和更多的空隙混合物,这意味着触发系统更少。爆炸电位不取决于触发性,而是取决于可参与蒸汽爆炸的混合物熔体颗粒的热量。在本文中,计算的凝固层厚度与熔体颗粒半径的比值(在本文中定义为熔体颗粒的脆性因子)也保持与可触发性顺序的一致性,并通过热损失进行评估。用几种类型的破碎模型分析了各种熔融材料的破碎尺寸。处理瞬态速度的动态破碎模型可以解释各种熔体材料的不同破碎尺寸。

著录项

  • 来源
    《Nuclear science and engineering》 |2014年第3期|255-272|共18页
  • 作者单位

    Korea Atomic Energy Research Institute, Thermal Hydraulics Safety Research Division 1045 Daedeok-daero, Yuseong-gu, Daejeon, 305-353, Republic of Korea;

    Korea Atomic Energy Research Institute, Thermal Hydraulics Safety Research Division 1045 Daedeok-daero, Yuseong-gu, Daejeon, 305-353, Republic of Korea;

    Korea Atomic Energy Research Institute, Thermal Hydraulics Safety Research Division 1045 Daedeok-daero, Yuseong-gu, Daejeon, 305-353, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:42:52

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