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Modeling Atmospheric Releases of Tritium from Nuclear Installations (U)

机译:从核设施建模大气释放氚(U)

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摘要

Tritium source term analysis and the subsequent dispersion and consequence analyses supporting the safety documentation of Department of Energy nuclear facilities are especially sensitive to the applied software analysis methodology, input data and user assumptions. Three sequential areas in tritium accident analysis are examined in this study to illustrate where the analyst should exercise caution. Included are: (1) the development of a tritium oxide source term; (2) use of a full tritium dispersion model based on site-specific information to determine an appropriate deposition scaling factor for use in more simplified, broader modeling, and (3) derivation of a special tritium compound (STC) dose conversion factor for consequence analysis, consistent with the nature of the originating source material. It is recommended that unless supporting, defensible evidence is available to the contrary, the tritium release analyses should assume tritium oxide as the species released (or chemically transformed under accident's environment). Important exceptions include STC situations and laboratory-scale releases of hydrogen gas. In the modeling of the environmental transport, a full phenomenology model suggests that a deposition velocity of 0.5 cm/s is an appropriate value for environmental features of the Savannah River Site. This value is bounding for certain situations but non-conservative compared to the full model in others. Care should be exercised in choosing other factors such as the exposure time and the resuspension factor.
机译:TRITIUM源期限分析和随后的分散和后果分析支持能量核设施部的安全文件对应用的软件分析方法,输入数据和用户假设特别敏感。在本研究中检查了三个序列事故分析中的连续区域,以说明分析师应该谨慎的地方。包括:(1)氧化物源术语的开发; (2)基于现场专用信息的全部氚分散模型的使用以确定适当的沉积缩放因子,用于更简化,更广泛的建模和(3)衍生特殊氚化合物(STC)剂量转化因子的结果分析,与原始源材料的性质一致。建议否则违反支持的证据,除非是可靠的证据,氚释放分析应作为释放的物种(或在事故环境下的化学转化)中采用氧化物。重要例外包括STC情况和实验室规模的氢气释放。在环境传输的建模中,完整的现象模型表明,0.5cm / s的沉积速度是萨凡纳河网站的环境特征的适当价值。与其他情况相比,该值是针对某些情况的限制,但与其他情况相比,与其他模式相比。应在选择其他因素和重新悬浮因子等其他因素时进行护理。

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