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首页> 外文期刊>Radiation Protection and Environment >Evaluation of tritium dispersion in the atmosphere by Riso Mesoscale Puff modeling systems using on-site meteorological parameters for the nuclear site Tarapur, India
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Evaluation of tritium dispersion in the atmosphere by Riso Mesoscale Puff modeling systems using on-site meteorological parameters for the nuclear site Tarapur, India

机译:通过Riso Mesoscale Puff模型系统使用印度塔拉普尔核电站的现场气象参数评估大气中的dispersion扩散

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摘要

Dispersion models are important predictive tools that are used to simulate the way the atmosphere transports and diffuses contaminants from industrial sources of pollution. Ris0 Mesoscale Puff (RIMPUFF) modeling system is used to simulate the radioactive H-3 released into the atmosphere through stack height of 100 m from a Tarapur Atomic Power Station 3 and 4 (TAPS 3 and 4) to predict downwind tritium ambient air concentrations in the environment around nuclear power plants. The tritium air concentrations by field measurement (measured tritium air concentrations using bubbler setup in the areas adjacent to TAPS 3 and 4, a pressurized heavy water reactor [PHWR]) were compared with that by calculation to validate the modeling system RIMPUFF for the Tarapur site. The computed and measured atmospheric tritium concentrations were quite consistent in trend and magnitude and the value of fractional bias computed is - 0.2524 (i.e., model predictions are within a factor of 2). This RIMPUFF modeling system will be useful in reviewing and evaluating environmental radiological impacts for PHWRs, especially it will be of great help to predict the behavior of tritium in the atmospheric environment around nuclear power plants during emergencies. Tritium concentrations in ambient air computed and measured at various locations around TAPS 3 and 4 showed a best fit regression line passing through the origin as Y_((computed concentration)) = 0.6725 X_((measured concentration)) with correlation coefficient of 0.75.
机译:扩散模型是重要的预测工具,可用于模拟大气传输和扩散来自工业污染源的污染物的方式。 Ris0中尺度吹气(RIMPUFF)建模系统用于模拟从塔拉普尔原子能发电站3和4(TAPS 3和4)通过100 m烟囱高度释放到大气中的放射性H-3,以预测下风中in气的环境浓度。核电厂周围的环境。通过现场测量比较(空气浓度(使用鼓泡装置在加压重水反应堆[PHWR]附近的TAPS 3和4区域测量measure空气浓度)与通过计算得到的to空气浓度进行比较,以验证塔拉普尔站点的建模系统RIMPUFF 。计算得出的大气measured浓度在趋势和大小上非常一致,计算出的分数偏差值为-0.2524(即模型预测值在2的范围内)。该RIMPUFF建模系统将有助于审查和评估PHWR的环境放射学影响,特别是在紧急情况期间预测nuclear在核电站周围大气环境中的行为将大有帮助。在TAPS 3和4周围各个位置计算和测量的ambient空气中的concentrations浓度显示了一条最佳拟合回归线,该线穿过原点,为Y _((计算浓度))= 0.6725 X _((测量浓度)),相关系数为0.75。

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