...
首页> 外文期刊>Applied optics >Inversion of multiwavelength Raman lidar data for retrieval of bimodal aerosol size distribution
【24h】

Inversion of multiwavelength Raman lidar data for retrieval of bimodal aerosol size distribution

机译:反演多波长拉曼激光雷达数据以获取双峰气溶胶尺寸分布

获取原文
获取原文并翻译 | 示例

摘要

We report on the feasibility of deriving microphysical parameters of bimodal particle size distributions from Mie-Raman lidar based on a triple Nd:YAG laser. Such an instrument provides backscatter coefficients at 355, 532, and 1064 nm and extinction coefficients at 355 and 532 nm. The inversion method employed is Tikhonov's inversion with regularization. Special attention has been paid to extend the particle size range for which this inversion scheme works to ~10 μm, which makes this algorithm applicable to large particles, e.g., investigations concerning the hygroscopic growth of aerosols. Simulations showed that surface area, volume concentration, and effective radius are derived to an accuracy of ~50% for a variety of bimodal particle size distributions. For particle size distributions with an effective radius of <1 μm the real part of the complex refractive index was retrieved to an accuracy of ±0.05, the imaginary part was retrieved to 50% uncertainty. Simulations dealing with a mode-dependent complex refractive index showed that an average complex refractive index is derived that lies between the values for the two individual modes. Thus it becomes possible to investigate external mixtures of particle size distributions, which, for example, might be present along continental rims along which anthropogenic pollution mixes with marine aerosols. Measurement cases obtained from the Institute for Tropospheric Research six-wavelength aerosol lidar observations during the Indian Ocean Experiment were used to test the capabilities of the algorithm for experimental data sets. A benchmark test was attempted for the case representing anthropogenic aerosols between a broken cloud deck. A strong contribution of particle volume in the coarse mode of the particle size distribution was found.
机译:我们报告了基于三重Nd:YAG激光从Mie-Raman激光雷达导出双峰粒度分布的微物理参数的可行性。这种仪器在355、532和1064 nm处提供反向散射系数,在355和532 nm处提供消光系数。所采用的反演方法是带有规则化的Tikhonov的反演。已经特别注意将该反演方案适用的粒径范围扩大到〜10μm,这使得该算法适用于大颗粒,例如有关气溶胶吸湿性生长的研究。仿真表明,对于多种双峰粒度分布,表面积,体积浓度和有效半径的精确度约为50%。对于有效半径<1μm的粒度分布,复折射率的实部精度为±0.05,虚部的不确定度为50%。对依赖于模式的复数折射率的仿真显示,得出的平均复数折射率介于两个单独模式的值之间。因此,有可能研究粒径分布的外部混合物,例如,可能在人为污染与海洋气溶胶混合的大陆沿岸存在。从印度洋对流层研究所的六波长气溶胶激光雷达观测中获得的测量案例用于测试算法用于实验数据集的功能。试图对代表破云层之间的人为气溶胶的案例进行基准测试。发现颗粒体积在粒度分布的粗略模式中有很大贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号