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Validation Study for an Atmospheric Dispersion Model, Using Effective Source Heights Determined from Wind Tunnel Experiments in Nuclear Safety Analysis

机译:大气弥散模型的验证研究,使用通过核安全分析中风洞实验确定的有效源高度

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For more than fifty years, atmospheric dispersion predictions based on the joint use of a Gaussian plume model and wind tunnel experiments have been applied in both Japan and the U.K. for the evaluation of public radiation exposure in nuclear safety analysis. The effective source height used in the Gaussian model is determined from ground-level concentration data obtained by a wind tunnel experiment using a scaled terrain and site model. In the present paper, the concentrations calculated by this method are compared with data observed over complex terrain in the field, under a number of meteorological conditions. Good agreement was confirmed in near-neutral and unstable stabilities. However, it was found to be necessary to reduce the effective source height by 50% in order to achieve a conservative estimation of the field observations in a stable atmosphere.
机译:五十多年来,基于高斯羽流模型和风洞实验联合使用的大气弥散预测已在日本和英国应用,用于评估核安全分析中的公共辐射暴露。高斯模型中使用的有效源高度是通过使用比例尺地形和站点模型通过风洞实验获得的地面浓度数据确定的。在本文中,将这种方法计算出的浓度与在许多气象条件下在现场复杂地形上观察到的数据进行了比较。在接近中性和不稳定的情况下,确认了良好的一致性。但是,发现有必要将有效源高度降低50%,以便在稳定的气氛中对现场观测值进行保守估计。

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