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Simulation of the mineral dust content over Western Africa from the event to the annual scale with the CHIMERE-DUST model

机译:用束缚模型将西非矿物粉尘含量模拟与束缚模型

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The chemistry and transport model CHIMERE-DUST have been used to simulate the mineral dust cycle over the Sahara in 2006. Surface measurements deployed during the AMMA field campaign allow to test the capability of the model to correctly reproduce the atmospheric dust load and surface concentrations from the daily to the seasonal time-scale. The simulated monthly mean Aerosol Optical Depths (AOD) and surface concentrations are significantly correlated with the measured ones. The simulated daily concentrations and hourly AOD are in the same range of magnitude than the observed ones despite relatively high simulated dust emissions. The level of agreement between the simulations and the observations has been quantified at different time scales using statistical parameters classically used to evaluate air quality models. The capability of the model to reproduce the altitude of the dust transport was tested for two contrasted cases of low and high altitude transport. These results highlight the sensitivity of the simulations to the surface winds used as external forcing and the necessity to further constrain the dust mass budget at the regional scale.
机译:化学和运输模型Chimere-DATES已被用于模拟撒哈拉州的矿物粉尘循环。在AMMA场运动期间部署的表面测量允许测试模型的能力,以便正确再现大气粉尘载荷和表面浓度每天到季节性规模。模拟的月平均气溶胶光学深度(AOD)和表面浓度与测量值显着相关。尽管具有相对高的模拟灰尘排放,所以模拟的日常浓度和每小时AOD在相同范围内比观察到的。使用经典用于评估空气质量模型的统计参数,模拟与观察之间的协议水平已经在不同的时间尺度上量化。测试模型以再现粉尘运输海拔的能力,为两个对比的低高度传输情况进行了两种对比的情况。这些结果突出了模拟与外部迫使用过的表面风的敏感性,并且必须进一步限制区域规模的尘埃预算。

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