A Study on Transport and Dispersion of Chemical Agent According to Lagrangian Puff and Particle Models in NBC_RAMS

Hyeyun Ku, J. Seo, Hyunwoo Nam
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Abstract

This research mainly focuses on the transport and dispersion of chemical agent plume according to the Lagrangian Puff Model and Lagrangian Particle Model of NBC_RAMS(Nuclear, Biological, Chemical Reporting And Modeling S/W System). NBC_RAMS was developed with the purposes of estimating the fate of Chemical, Biological, and Radioactive(CBR) agent plumes and evaluating damages in the Republic of Korea. First, it calculates the local weather pattern, i.e. wind speed, wind direction, and temperature, by considering the effects of land uses and topography. The plume behaviors are calculated by adopting the Lagrangian Puff Model(LPFM) or Lagrangian Particle Model(LPTM). In this research, we assumed a virtual chemical agent exposure event in a stable atmospheric condition during the summer season. The plume behaviors were estimated by both LPFM and LPTM on the used area(urbanized and dry area) and the agricultural land. The higher heat flux in the used area led to stronger winds and further downward movement moving of the chemical agent than the farmland. The lateral dispersion of the chemical plume was emphasized in the Lagrangian Puff Model because it adopted Gaussian distribution.
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基于拉格朗日泡芙和粒子模型的化学剂在NBC_RAMS中的输运和分散研究
本研究主要根据NBC_RAMS(核、生物、化学报告和建模S/W系统)的拉格朗日泡芙模型和拉格朗日粒子模型对化学剂羽流的输运和扩散进行研究。开发NBC_RAMS的目的是估计化学、生物和放射性(CBR)剂羽流的命运,并评估大韩民国的损害。首先,它通过考虑土地利用和地形的影响,计算出当地的天气模式,即风速、风向和温度。羽流行为的计算采用拉格朗日泡芙模型(LPFM)或拉格朗日粒子模型(LPTM)。在本研究中,我们假设了夏季在稳定大气条件下的虚拟化学剂暴露事件。利用LPFM和LPTM分别估算了利用区(城市化和干旱区)和农用地上的烟羽行为。与农田相比,利用区较高的热通量导致了更强的风和更大的化学剂向下移动。拉格朗日泡芙模型采用高斯分布,因此强调了化学羽流的横向弥散。
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