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1.9 The Impact of MM5 and WRF Meteorology over Complex Terrain on CHIMERE Model Calculations

机译:1.9 MM5和WRF气象的影响在Chimere Model计算中复杂的地形

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The objective of this study is to evaluate the impact of meteorological input data on calculated gas and aerosol concentrations. We use two different meteorological models (MM5 and WRF) together with the chemistry transport model CHIMERE. We focus on the Po valley area (Italy) for January and June 2005. Firstly we evaluate the meteorological parameters with observations. The analysis shows that the performance of both models in calculating surface parameters is similar, however differences are still observed. Secondly, we analyze the impact of using MM5 and WRF on calculated PM10 and O_3 concentrations. In general CHIMERE/MM5 and CHIMERE/WRF underestimate the PM10 concentrations for January. The difference in PM10 concentrations for January between CHIMERE/MM5 and CHIMERE/WRF is around a factor 1.6 (PM10 higher for CHIMERE/MM5). This difference and the larger underestimation in PM10 concentrations by CHIMERE/WRF are related to the differences in heat fluxes and the resulting PBL heights calculated by WRF.
机译:本研究的目的是评估气象输入数据对计算的气体和气溶胶浓度的影响。我们将两种不同的气象模型(MM5和WRF)与化学传输模型Chimere一起使用。我们专注于2005年1月和6月的Po Valley地区(意大利)。首先,我们通过观察评估气象参数。分析表明,两种模型在计算表面参数中的性能相似,但仍然观察到差异。其次,我们分析了使用MM5和WRF对计算PM10和O_3浓度的影响。通常,Chimere / MM5和Chimere / WRF低估了1月的PM10浓度。 Chimere / MM5和Chimere / WRF之间1月份PM10浓度的差异约为1.6(Chimere / MM5的PM10)。通过Chimere / WRF的PM10浓度的这种差异和较大的低估与通过WRF计算的热通量的差异和所得的PBL高度。

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