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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >THE SENSITIVITY OF ATMOSPHERIC DISPERSION CALCULATIONS IN NEAR-FIELD APPLICATIONS: MODELING OF THE FULL SCALE RDD EXPERIMENTS WITH OPERATIONAL MODELS IN CANADA, PART I
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THE SENSITIVITY OF ATMOSPHERIC DISPERSION CALCULATIONS IN NEAR-FIELD APPLICATIONS: MODELING OF THE FULL SCALE RDD EXPERIMENTS WITH OPERATIONAL MODELS IN CANADA, PART I

机译:近场应用中大气色散计算的敏感性:加拿大RDD全尺寸实验的操作模型建模,第一部分

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Three radiological dispersal devices were detonated in 2012 under controlled conditions at Defence Research and Development Canada's Experimental Proving Grounds in Suffield, Alberta. Each device comprised a 35-GBq source of La-140. The dataset obtained is used in this study to assess the MLCD, ADDAM, and RIMPUFF atmospheric dispersion models. As part one of a two-part study, this paper focuses on examining the capabilities of the above three models and evaluating how well their predictions of air concentration and ground deposition match observations from the full-scale RDD experiments.
机译:2012年,在加拿大国防研究与发展局位于艾伯塔省苏菲尔德的实验场上,在可控条件下引爆了三种放射性扩散装置。每个设备都包含一个35 GBq的La-140源。获得的数据集用于本研究中,以评估MLCD,ADDAM和RIMPUFF大气扩散模型。作为一项由两部分组成的研究的一部分,本文重点研究上述三种模型的功能,并评估它们对空气浓度和地面沉积物的预测与全尺寸RDD实验中的观测结果相匹配的程度。

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