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Processes controlling the seasonal variations in 210Pb and 7Be at the Mt.?Cimone WMO-GAW global station, Italy: a model analysis

机译:控制210pb和7be的季节变化的过程在Mt.?cimone WMO-GAW全球站,意大利:模型分析

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We apply the Global Modeling Initiative (GMI) chemistry and transport model driven by NASA's MERRA assimilated meteorological data to simulate the seasonal variations in two radionuclide aerosol tracers (terrigenous 210Pb and cosmogenic 7Be) at the WMO-GAW station of Mt.?Cimone (44°12′?N, 10°42′?E; 2165?m?a.s.l.; Italy), which is representative of free-tropospheric conditions most of the year, during 2005 with an aim to understand the roles of transport and precipitation scavenging processes in controlling their seasonality. The total precipitation field in the MERRA data set is evaluated with the Global Precipitation Climatology Project (GPCP) observations, and generally good agreement is found. The model reproduces reasonably the observed seasonal pattern of 210Pb concentrations, characterized by a wintertime minimum due to lower 222Rn emissions and weaker uplift from the boundary layer and summertime maxima resulting from strong convection over the continent. The observed seasonal behavior of 7Be concentrations shows a winter minimum, a summer maximum, and a secondary spring maximum. The model captures the observed 7Be pattern in winter–spring, which is linked to the larger stratospheric influence during spring. However, the model tends to underestimate the observed 7Be concentrations in summer, partially due to the sensitivity to spatial sampling in the model. Model sensitivity experiments indicate a dominant role of precipitation scavenging (vs. dry deposition and convection) in controlling the seasonality of 210Pb and 7Be concentrations at Mt.?Cimone.
机译:我们应用由美国国家航空航天局的Merra Assimoratication数据驱动的全球建模倡议(GMI)化学和运输模型,以模拟MT.?Cimone的WMO-GAW站的两种放射性核素气溶胶示踪剂(Terrigenous 210pb和Coxmogenic 7be)的季节变化(44 °12'?N,10°42'?e; 2165?m?asl;意大利),这是一年中大部分年度的自由 - 对流层条件,旨在了解运输和降水清除过程的角色控制他们的季节性。 Merra数据集中的总降水场与全局降水气候项目(GPCP)观察评估,并发现了一般的协议。该模型可合理地再现观察到的210pb浓度的季节性图案,其特征在于冬季最小值,由于较低的222℃的排放和较弱的隆起,并且夏季最大值由大陆的强烈对流引起。观察到的7BE浓度的季节性行为显示了冬季最小,夏季最大值和次要弹簧最大值。该模型在冬季弹簧中捕获观察到的7BE图案,春季期间与较大的平坦散射器相关联。然而,该模型倾向于在夏季低估观察到的7BE浓度,部分是由于模型中的空间采样的敏感性。模型敏感性实验表明沉淀清除(与干沉积和对流)的显性作用控制210pb和7be浓度在Mt.?琥珀酮的季节性。

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