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First Forecasts of Airborne Platanus and Pinus Pollen in Catalonia, NE Spain: Use of a Ground-Based Lidar to Estimate the Model Score

机译:西班牙东北部加泰罗尼亚的空中悬铃木和松花粉的首次预报:使用地面激光雷达估算模型得分

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Pollen allergenicity plays an important role on human health and wellness. It is thus of large public interest to increase our knowledge of pollen grain behavior in the atmosphere (source, emission, processes involved during their transport, etc.) at fine temporal and spatial scales. First simulations with the Barcelona Supercomputing Center NMMB-MONARCHv1.0 model of Platanus and Pinus dispersion in the atmosphere were performed during a 5-day pollination event observed in Barcelona, Spain, between 27 - 31 March, 2015. The simulations are compared to vertical profiles measured with the continuous Barcelona Micro Pulse Lidar system. Improvements in the model are made by tuning the wind effect scale factor and the sedimentation speed. First results show that the vertical distribution is well reproduced by the model in shape, but not in intensity, the model largely underestimating in the afternoon. Guidelines are proposed to improve the dispersion of airborne pollen by numerical prediction models.
机译:花粉的致敏性对人类健康具有重要作用。因此,在精细的时空尺度上增加我们对大气中花粉行为(源,排放,运输过程中涉及的过程等)的认识,具有广泛的公众利益。在2015年3月27日至31日于西班牙巴塞罗那观察到的为期5天的授粉事件期间,使用巴塞罗那超级计算中心NMMB-MONARCHv1.0模型的赤松和松树在大气中的扩散进行了首次模拟。连续的巴塞罗那微脉冲激光雷达系统测得的轮廓。通过调整风效应比例因子和沉降速度对模型进行了改进。最初的结果表明,该模型在形状上可以很好地再现垂直分布,但强度上不能很好地再现,该模型在午后低估了很多。提出了通过数值预测模型改善空气中花粉扩散的指南。

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