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RETRIEVAL OF AEROSOL PARAMETERS FROM CONTINUOUS H24 LIDAR-CEILOMETER MEASUREMENTS

机译:从连续H24激光乐仪测量中检索气溶胶参数

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Ceilometer technology is increasingly applied to the monitoring and the characterization of tropospheric aerosols. In this work, a method to estimate some key aerosol parameters (extinction coefficient, surface area concentration and volume concentration) from ceilometer measurements is presented. A numerical model has been set up to derive a mean functional relationships between backscatter and the above mentioned parameters based on a large set of simulated aerosol optical properties. A good agreement was found between the modeled backscatter and extinction coefficients and the ones measured by the EARLINET Raman lidars. The developed methodology has then been applied to the measurements acquired by a prototype Polarization Lidar-Ceilometer (PLC). This PLC instrument was developed within the EC- LIFE+ project "DIAPASON" as an upgrade of the commercial, single-channel Jenoptik CHM 15k system. The PLC run continuously (h24) close to Rome (Italy) for a whole year (2013-2014). Retrievals of the aerosol backscatter coefficient at 1064 nm and of the relevant aerosol properties were performed using the proposed methodology. This information, coupled to some key aerosol type identification made possible by the depolarization channel, allowed a year-round characterization of the aerosol field at this site. Examples are given to show how this technology coupled to appropriate data inversion methods is potentially useful in the operational monitoring of parameters of air quality and meteorological interest.
机译:CeIlometer技术越来越多地应用于对流层气溶胶的监测和表征。在这项工作中,提出了一种从Ceirometer测量的估计一些关键气溶胶参数(消光系数,表面积浓度和体积浓度)的方法。已经建立了一个数值模型,以导出基于大量模拟气溶胶光学特性的反向散射和上述参数之间的平均功能关系。在模型的反向散射和消光系数之间发现了一个良好的一致性,并通过耳坠拉曼楣射测量的截止系数。然后,已开发的方法已经应用于由原型极化激光乐仪(PLC)获取的测量。该PLC仪器是在EC-Life +项目“Diavason”中开发的,作为商业,单通道Jenoptik CHM 15K系统的升级。 PLC连续(H24)靠近罗马(意大利)一整年(2013-2014)。使用所提出的方法进行1064nm处和相关气溶胶性能的气溶胶背散速度的检索。该信息耦合到Depolarization渠道可能使得可以进行的一些关键的气溶胶型识别,允许在本网站上进行气溶胶田的全年表征。给出了示例,示出了如何耦合到适当的数据反转方法的技术在空气质量和气象兴趣的参数的操作监测中可能有用。

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