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Modeling of oak pollen dispersal on the landscape level with a mesoscale atmospheric model

机译:用中尺度大气模型在景观水平上模拟橡树花粉散布

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We present the extension and application of the mesoscale atmospheric meteorology model METRAS for dispersion of oak pollen. We incorporated functions for pollen emission, pollen viability and pollen deposition into METRAS and simulated pollen dispersal on a scale of up to 200 km. The basis of the simulations is a real landscape structure that includes topography, land use, and the location and size of oak stands. We simulated the oak pollen dispersion of one single oak stand with an estimated annual pollen production of 1 billion pollen grains/m~2 forest surface on two exemplary days of the flowering season in 2000. Depending on the meteorological situation of the simulated days, a pollen cloud with about 10 pollen/m~3 may extend up to 30 km from the source. Downstream of the oak stand, approximately 1,000 pollen/m~2 deposited up to a distance of 25 km, and lower amounts of pollen deposited up to 100 km away. These values of pollen concentration and deposition lay within the range of published field studies. Overall, it is shown that mesoscale atmospheric models are applicable to simulate pollen dispersal on the landscape level.
机译:我们介绍了中尺度大气气象模型METRAS在橡木花粉分散中的扩展和应用。我们将花粉释放,花粉生存力和花粉沉积功能合并到METRAS中,并模拟了最大200 km范围内的花粉散布。模拟的基础是一个真实的景观结构,其中包括地形,土地使用以及橡树林的位置和大小。我们在2000年开花季节的两个示例性日子中,模拟了一个单一橡木林的橡木花粉分散体,估计其年花粉产量为10亿花粉粒/ m〜2森林表面。根据模拟天的气象情况,花粉云约10花粉/ m〜3可能从源头延伸到30公里。在橡木架的下游,在25 km的距离内沉积约1,000花粉/ m〜2,在100 km的距离内沉积较少的花粉。花粉浓度和沉积物的这些值在公开的田间研究范围内。总体而言,表明中尺度大气模型适用于在景观水平上模拟花粉扩散。

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