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USE OF SOURCE TERM AND AIR DISPERSION MODELING IN PLANNING DEMOLITION OF HIGHLY ALPHA-CONTAMINATED BUILDINGS

机译:源头和空气扩散模型在高Alpha污染建筑物的规划拆除中的使用

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The current cleanup of structures related to cold-war production of nuclear materials includes the need to demolish a number of highly alpha-contaminated structures. The process of planning for the demolition of such structures includes unique challenges related to ensuring the protection of both workers and the public. Pre-demolition modeling analyses were conducted to evaluate potential exposures resulting from the proposed demolition of a number of these structures. Estimated emission rates of transuranic materials during demolition are used as input to an air-dispersion model. The climatological frequencies of occurrence of peak air and surface exposures at locations of interest are estimated based on years of hourly meteorological records. The modeling results indicate that downwind deposition is the main operational limitation for demolition of a highly alpha-contaminated building. The pre-demolition modeling directed the need for better contamination characterization and/or different demolition methods-and in the end, provided a basis for proceeding with the planned demolition activities. Post-demolition modeling was also conducted for several contaminated structures, based on the actual demolition schedule and conditions. Comparisons of modeled and monitoring results are shown. Recent monitoring data from the demolition of a UO3 plant shows increments in concentrations that were previously identified in the pre-demolition modeling predictions; these comparisons confirm the validity and value of the pre-demolition source-term and air dispersion computations for planning demolition activities for other buildings with high levels of radioactive contamination.
机译:当前与核材料冷战生产有关的结构清理工作包括拆除许多高度被α污染的结构的需要。规划拆除此类建筑物的过程包括与确保工人和公众的保护相关的独特挑战。进行了拆除前的建模分析,以评估由于提议拆除的许多此类结构而导致的潜在暴露。拆除过程中超铀材料的估计排放率用作空气扩散模型的输入。根据小时气象记录的年数估算感兴趣位置出现峰值空气和暴露在地面的气候频率。建模结果表明,顺风沉积是拆除高度被α污染的建筑物的主要操作限制。拆除前的模型指示了对更好的污染物表征和/或不同的拆除方法的需求-最后,它为进行计划的拆除活动提供了基础。根据实际的拆除时间表和条件,还对一些受污染的结构进行了拆除后建模。显示了建模结果和监视结果的比较。来自UO3工厂拆除的最新监测数据显示,在拆除前建模预测中先前确定的浓度增加;这些比较证实了拆除前的源项和空气弥散计算对于规划其他放射性污染水平较高的建筑物的拆除活动的有效性和价值。

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