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Atmospheric dust modeling from meso to global scales with the online NMMB/BSC-Dust model Part 1: Model description, annual simulations and evaluation

机译:从Meso到全球范围的大气粉末与在线NMMB / BSC-DIST模型第1部分:模型描述,年度模拟和评估

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We describe and evaluate the NMMB/BSC-Dust, a new dust aerosol cycle model embedded online within the NCEP Non-hydrostatic Multiscale Model (NMMB). NMMB is a further evolution of the operational Non-hydrostatic Mesoscale Model (WRF-NMM), which together with other upgrades has been extended from meso to global scales. Its unified non-hydrostatic dynamical core is prepared for regional and global simulation domains. The new NMMB/BSC-Dust is intended to provide short to medium-range weather and dust forecasts from regional to global scales and represents a first step towards the development of a unified chemical-weather model. This paper describes the parameterizations used in the model to simulate the dust cycle including sources, transport, deposition and interaction with radiation. We evaluate monthly and annual means of the global configuration of the model against the AEROCOM dust benchmark dataset for year 2000 including surface concentration, deposition and aerosol optical depth (AOD), and we evaluate the daily AOD variability in a regional domain at high resolution covering Northern Africa, Middle East and Europe against AERONET AOD for year 2006. The NMMB/BSC-Dust provides a good description of the horizontal distribution and temporal variability of the dust. Daily AOD correlations at the regional scale are around 0.6–0.7 on average without dust data assimilation. At the global scale the model lies within the top range of AEROCOM dust models in terms of performance statistics for surface concentration, deposition and AOD. This paper discusses the current strengths and limitations of the modeling system and points towards future improvements.
机译:我们描述并评估了NMMB / BSC粉尘,是在NCEP非静水压多尺度模型(NMMB)内在线嵌入的新型粉尘气溶胶循环模型。 NMMB是操作非静液压型Mescule模型(WRF-NMM)的进一步演变,其与其他升级一起从Meso扩展到全局尺度。其统一的非静水压动力学核心为区域和全球模拟结构域制备。新的NMMB / BSC粉尘旨在提供从区域到全球范围的中等天气和灰尘预测,并代表了朝着统一化学天气模型发展的第一步。本文介绍了模型中使用的参数化,以模拟包括源,运输,沉积和与辐射相互作用的灰尘周期。我们将每月和年度手段评估2000年的Aerocom粉尘基准数据集的全球配置,包括表面浓度,沉积和气溶胶光学深度(AOD),我们在高分辨率覆盖时评估区域领域的日常AOD变异性2006年,北非,中东和欧洲对Aeronet Aod进行了Aeroonet Aod。NMMB / BSC粉尘提供了灰尘水平分布和时间可变性的良好描述。区域规模的日常AOD相关性平均约为0.6-0.7,没有灰尘数据同化。在全球范围内,该模型在表面浓度,沉积和AOD的性能统计方面位于Aerocom粉尘模型的顶部范围内。本文讨论了模型系统的当前优势和局限性,并指向未来改进。

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