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CAECENET:一个自动系统,用于处理来自不同网络的光度计和云高仪数据,以提供柱状和垂直分辨的气溶胶特性。

CAECENET: An automatic system processing photometer and ceilometer data from different networks to provide columnar and vertically-resolved aerosol properties.

作者信息

Herrero Del Barrio Celia, Román Roberto, González Ramiro, Cazorla Alberto, Herreras-Giralda Marcos, Antuña-Sánchez Juan Carlos, Molero Francisco, Navas-Guzmán Francisco, Serrano Antonio, Obregón María Ángeles, Sola Yolanda, Pandolfi Marco, Herrero-Anta Sara, González-Fernández Daniel, Muñiz-Rosado Jorge, Mateos David, Calle Abel, Toledano Carlos, Cachorro Victoria E, de Frutos Ángel M

机构信息

Group of Atmospheric Optics (GOA-UVa), Universidad de Valladolid, Valladolid, Spain.

Department of Applied Physics, Universidad de Granada, Granada, Spain.

出版信息

PLoS One. 2024 Dec 27;19(12):e0311990. doi: 10.1371/journal.pone.0311990. eCollection 2024.

Abstract

This work introduces CAECENET, a new system capable of automatically retrieving columnar and vertically-resolved aerosol properties running the GRASP (Generalized Retrieval of Atmosphere and Surface Properties) algorithm using sun-sky photometer (aerosol optical depth, AOD; and sky radiance measurements) and ceilometer (range corrected signal; RCS) data as input. This method, so called GRASPpac, is implemented in CAECENET, which assimilates sun-sky photometers data from CÆLIS database and ceilometer data from ICENET database (Iberian Ceilometer Network). CAECENET allows for continuous and near-real-time monitoring of both vertical and columnar aerosol properties. The main characteristics and workflow of CAECENET are explained in detail. This work also explores the potential of CAECENET to monitor and analyze the evolution of transported aerosol events on a regional scale by means of the distribution of CAECENET stations across the Iberian Peninsula. As an example, this paper analyzes, using the CAECENET products, the case of a Saharan dust outbreak that occurred between the 3rd and 5th of October 2022. This was an intense event, with AOD at 440 nm values around 0.5 in Madrid and Valladolid, and reaching 1.55 in Granada. Transport from the Canadian wildfires at the end of June 2023 is also studied. Despite the long-range transport of the smoke particles in this event, measured volume concentrations reached and surpassed 80 μm3/cm3 in some stations. The results obtained point to the utility of this CAECENET tool for analyzing changes in the height and speed of the event propagation, in the aerosol concentration, and how this affects the optical properties.

摘要

这项工作介绍了CAECENET,这是一种新系统,它能够利用太阳天空光度计(气溶胶光学厚度,AOD;以及天空辐射测量数据)和激光云高仪(距离校正信号;RCS)数据作为输入,运行GRASP(大气和表面属性广义反演)算法,自动检索柱状和垂直分辨的气溶胶属性。这种方法,即所谓的GRASPpac,在CAECENET中得以实现,它同化了来自CÆLIS数据库的太阳天空光度计数据以及来自ICENET数据库(伊比利亚激光云高仪网络)的激光云高仪数据。CAECENET能够对垂直和气溶胶柱状属性进行连续且近实时的监测。文中详细解释了CAECENET的主要特征和工作流程。这项工作还通过CAECENET站点在伊比利亚半岛的分布,探索了CAECENET在区域尺度上监测和分析传输气溶胶事件演变的潜力。例如,本文利用CAECENET产品分析了2022年10月3日至5日发生的一次撒哈拉沙尘爆发事件。这是一次强烈的事件,马德里和巴利亚多利德4日在440纳米处的AOD值约为0.5,在格拉纳达达到1.55。本文还研究了2023年6月底来自加拿大野火的传输情况。尽管在此事件中烟雾颗粒进行了远距离传输,但在一些站点测量到的体积浓度达到并超过了80μm³/cm³。所获得的结果表明,CAECENET这个工具在分析事件传播的高度和速度变化、气溶胶浓度变化以及这如何影响光学特性方面具有实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaf7/11676519/168e52ff4e01/pone.0311990.g001.jpg

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