首页> 外文OA文献 >Application of the NARCM model to high-resolution aerosol simulations: Case study of Mexico City basin during the Investigación sobre Materia Particulada y Deterioro Atmosférico-Aerosol and Visibility Research measurements campaign
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Application of the NARCM model to high-resolution aerosol simulations: Case study of Mexico City basin during the Investigación sobre Materia Particulada y Deterioro Atmosférico-Aerosol and Visibility Research measurements campaign

机译:NARCM模型在高分辨率气溶胶模拟中的应用:墨西哥城市盆地在研究原始物质和变质大气气溶胶和能见度研究测量活动期间的案例研究

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摘要

The Northern Aerosol Regional Climate Model (NARCM) is used to study the visibility and three-dimensional (3-D) evolution of aerosol distributions within the Mexico City basin. NARCM simulates transport, diffusion, deposition, and size distributions of sulphur aerosol particles in the region. The model assumes only simple sulphur oxidation, not taking explicitly into account the urban air chemistry. Rather, it focuses on detailed aerosol microphysics and 3-D optical properties. The simulation performance is compared with upper air and ground-based observations for the following specific days of intensive measurement: 2, 4, and 14 March 1997. Time series at Mexico City airport shows lower values of visibility in the morning due to a shallow mixed layer and higher values in the afternoon following the evolution of the mixed layer depth. Modeled visibility shows large dependence on cardinal direction and size distribution of particles. It is found that better resolution of particle size leads to better representation of coagulation processes and to realistic size distributions which show a characteristic accumulation mode around 0.3 μm. As a result, visibility simulations are closer to those observed at the airport location. Comparing visibility is a stringent test for the model because it requires an accurate representation of 3-D meteorological fields together with a realistic aerosol simulation.
机译:北部气溶胶区域气候模型(NARCM)用于研究墨西哥城盆地内气溶胶分布的可见性和三维(3-D)演变。 NARCM模拟该区域中硫气溶胶颗粒的传输,扩散,沉积和尺寸分布。该模型仅假设简单的硫氧化,未明确考虑城市空气化学性质。相反,它专注于详细的气溶胶微观物理学和3-D光学特性。在以下特定的密集测量日中,将模拟性能与高空和地面观测值进行了比较:1997年3月2日,4日和14日。由于混合浅,墨西哥城机场的时间序列早晨的能见度值较低混合层深度的演变在下午的高层和更高的值。建模的可见性显示出对基本方向和颗粒尺寸分布的极大依赖。发现更好的粒度分辨率导致更好地表示凝结过程和现实的粒度分布,其显示出约0.3μm的特征性积累模式。结果,能见度模拟更接近在机场位置观察到的模拟。比较能见度是对该模型的严格测试,因为它需要3D气象场的准确表示以及真实的气溶胶模拟。

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