首页> 外文会议>Conference on Remote Sensing of Clouds and the Atmosphere VII Sep 24-27, 2002 Agia Pelagia, Crete, Greece >Characterization of aerosol backscatter-to-extinction ratio from multi-wavelength and multi-angular lidar profiles
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Characterization of aerosol backscatter-to-extinction ratio from multi-wavelength and multi-angular lidar profiles

机译:从多波长和多角度激光雷达剖面表征气溶胶反向散射与消光比

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The newly developed Nd:YAG portable 3-D-scanning lidar from the Universitat Politecnica de Catalunya (UPC, Technical University of Catalonia, Barcelona, Spain) was used to improve our knowledge of the aerosols properties in the Barcelona area where an important number of pollution and saharan dust events can be observed all year round in the atmosphere. The system simultaneously operated at the 1064-nm and 532-nm elastic wavelengths, and was used in its scanning mode from 15°to 70°from zenith with 5°steps. A variational method was used to invert the multi-angular profiles and to retrieve the aerosols optical thickness and backscatter coefficient at each wavelength without making any assumption on the aerosol type. At the same time, the ratio of the backscatter profiles was used to retrieve the profile of the Angstroem coefficient in backscatter. The backscatter-to-extinction ratio could not be calculated directly but various values of this parameter were used in Klett method until backscatter coefficient profiles could match the one retrieved with the variational method (at least in some altitude regions). Very good agreement (differences less than 20%) was observed in the 0.3-2.5 km region with a value of 0.030 sr~(-1), whereas no agreement could be achieved above where supposedly mixed aerosols were initially observed. The lidar profiles closer to the zenith at both wavelengths allowed to calculate a new Angstroem coefficient in backscatter that is compared to the one retrieved by the variational method. The comparison showed good agreement in the lower layers and thus validated the backscatter-to-extinction ratio profiles used in the Klett method. However, the difficulties encountered to invert the lidar signal above an altitude of 1.6 km show that non negligible inhomogeneities of the atmosphere were present in each line of sight, proving the dense and fast-moving aerosol load over the Barcelona basin.
机译:加泰罗尼亚理工大学(UPC,加泰罗尼亚技术大学,西班牙巴塞罗那)最新开发的Nd:YAG便携式3-D扫描激光雷达用于提高我们对巴塞罗那地区气溶胶特性的了解,全年都可以在大气中观察到污染和撒哈拉尘埃事件。该系统同时在1064 nm和532 nm的弹性波长下运行,并且在从天顶15°到70°的扫描模式下以5°的步进使用。在不对气溶胶类型进行任何假设的情况下,使用变分方法来反转多角度剖面并检索每个波长的气溶胶光学厚度和反向散射系数。同时,使用反向散射轮廓的比率来检索反向散射中Angstroem系数的轮廓。不能直接计算后向散射与消光比,但是在Klett方法中使用了该参数的各种值,直到后向散射系数曲线可以与使用变分法获得的散射系数轮廓匹配为止(至少在某些海拔地区)。在0.3-2.5 km范围内观察到非常好的一致性(差异小于20%),其值为0.030 sr〜(-1),而在最初观察到混合气溶胶的情况下,则无法达成一致性。在两个波长处,更接近天顶的激光雷达轮廓允许计算反向散射中的新Angstroem系数,该系数与通过变分方法获得的系数相比较。比较显示出在较低层中的良好一致性,因此验证了Klett方法中使用的反向散射与消光比的分布。但是,在1.6公里以上的高度上转换激光雷达信号时遇到的困难表明,在每个视线中都存在不可忽略的大气不均匀性,这证明了巴塞罗那盆地上密集且快速移动的气溶胶负荷。

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