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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Accuracy of near-surface aerosol extinction determined from columnar aerosol optical depth measurements in Reno, NV, USA
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Accuracy of near-surface aerosol extinction determined from columnar aerosol optical depth measurements in Reno, NV, USA

机译:根据美国内华达州里诺市的柱状气溶胶光学深度测量结果确定的近地表气溶胶消光精度

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摘要

The aim of the present work is a detailed analysis of aerosol columnar optical depth as a tool to determine near-surface aerosol extinction in Reno, Nevada, USA, during the summer of 2012. Ground and columnar aerosol optical properties were obtained by use of in situ Photoacoustic and Integrated Nephelometer and Cimel CE-318 Sun photometer instruments, respectively. Both techniques showed that seasonal weather changes and fire plumes had enormous influence on local aerosol optics. The apparent optical height followed the shape but not magnitude of the development of the convective boundary layer when fire conditions were not present. Back trajectory analysis demonstrated that a local flow known as the Washoe Zephyr circulation often induced aerosol transport from Northern California over the Sierra Nevada Mountains that increased the aerosol optical depth at 500nm during afternoons when compared with mornings. Aerosol finemode fraction indicated that afternoon aerosols in June and July and fire plumes in August were dominated by submicron particles, suggesting upwind urban plume biogenically enhanced evolution toward substantial secondary aerosol formation. This fine particle optical depth was inferred to be beyond the surface, thereby complicating use of remote sensing measurements for near-ground aerosol extinction measurements. It is likely that coarse mode depletes fine mode aerosol near the surface by coagulation and condensation of precursor gases.
机译:本工作的目的是对气溶胶柱状光学深度进行详细分析,作为确定美国内华达州里诺2012年夏季近地表气溶胶消光的工具。原位光声和浊度仪和Cimel CE-318太阳光度仪。两种技术都表明季节性的天气变化和火柱对当地的气溶胶光学系统有很大的影响。当不存在着火条件时,表观光学高度遵循对流边界层发展的形状,但不遵循其大小。反向轨迹分析表明,称为Washoe Zephyr环流的局部流动通常引起内华达山脉上空从北加州的气溶胶运输,与早晨相比,下午的气溶胶光学深度增加了500nm。气溶胶精细模式分数表明,6月和7月的下午气溶胶和8月的火羽被亚微米颗粒占主导,这表明上风的城市羽生物性地促进了向大量次生气溶胶形成的演化。推断该细颗粒的光学深度超出了表面,从而使遥感测量在近地气溶胶消光测量中的使用变得复杂。粗模式可能会通过前体气体的凝结和冷凝而耗尽表面附近的细模式气溶胶。

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