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Intercomparison of aerosol measurements performed with multi-wavelength Raman lidars, automatic lidars and ceilometers in the framework of INTERACT-II campaign

机译:在InterAct-II运动框架中使用多波长拉曼楣,自动射门柱和CeIlometers进行气溶胶测量的互通

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Following the previous efforts of INTERACT (INTERcomparison of Aerosol and Cloud Tracking), the INTERACT-II campaign used multi-wavelength Raman lidar measurements to assess the performance of an automatic compact micro-pulse lidar (MiniMPL) and two ceilometers (CL51 and CS135) in providing reliable information about optical and geometric atmospheric aerosol properties. The campaign took place at the CNR-IMAA Atmospheric Observatory (760 m a.s.l.; 40.60 degrees N, 15.72 degrees E) in the framework of ACTRIS-2 (Aerosol Clouds Trace gases Research InfraStructure) H2020 project. Co-located simultaneous measurements involving a MiniMPL, two ceilometers and two EARLINET multi-wavelength Raman lidars were performed from July to December 2016. The intercomparison highlighted that the MiniMPL range-corrected signals (RCSs) show, on average, a fractional difference with respect to those of CNR-IMAA Atmospheric Observatory (CIAO) lidars ranging from 5 to 15% below 2.0 km a.s.l. (above sea level), largely due to the use of an inaccurate overlap correction, and smaller than 5% in the free troposphere. For the CL51, the attenuated backscatter values have an average fractional difference with respect to CIAO lidars 20-30% below 3 km and larger above. The variability of the CL51 calibration constant is within +/- 46 %. For the CS135, the performance is similar to the CL51 below 2.0 km a.s.l.:, while in the region above 3 km a.s.l. the differences are about +/- 40 %. The variability of the CS135 normalization constant is within +/- 47 %. Finally, additional tests performed during the campaign using the CHM15k ceilometer operated at CIAO showed the clear need to investigate the CHM15k historical dataset (2010-2016) to evaluate potential effects of ceilometer laser fluctuations on calibration stability. The number of laser pulses shows an average variability of 10% with respect to the nominal power which conforms to the ceilometer specifications. Nevertheless, laser pulses variability follows seasonal behavior with an increase in the number of laser pulses in summer and a decrease in winter. This contributes to explain the dependency of the ceilometer calibration constant on the environmental temperature hypothesized during INTERACT.
机译:在以前的交互努力(气溶胶和云跟踪的相互作用)之后,InterAct-II广告系列使用多波长拉曼LIDAR测量来评估自动紧凑型微脉冲LIDAR(MINEPL)和两个CEILOMERS的性能(CL51和CS135)提供有关光学和几何大气气溶胶特性的可靠信息。该活动在CNR-IMAA大气监测表(760 M A.S.L中;在Actris-2(气溶胶云痕量气体研究基础设施)H2020项目的框架内(760米A.S.L。40.60度,15.72摄氏度)。共同定位涉及最小值的同步测量,两个节木测量器和两个耳坠多波长拉曼Lidars于2016年7月进行。互通突出显示最小值校正信号(RCSS)平均呈尊重的分数差异到CNR-IMAA大气监测所(CIAO)LIDAR的范围从5-15%以下,低于2.0公里(海拔高于海平面),主要是由于使用不准确的重叠校正,并且在自由对流层中小于5%。对于CL51,衰减的反向散射值具有相对于Ciao Lidars的平均分数差异。 20-30%低于3公里,更大。 CL51校准常数的可变性在+/- 46%之内。对于CS135,性能类似于CL51低于2.0 km A.L的CL51。:,虽然在3公里以上的地区A.L.差异约为+/- 40%。 CS135标准化常数的可变性在+/- 47%之内。最后,使用在CIAO运营的CHM15K CeiLometer期间在广告系列期间进行的额外测试表明了解CHM15K历史数据集(2010-2016)以评估Ceirometer激光波动对校准稳定性的潜在影响。激光脉冲的数量相对于符合天线管规格的标称功率表示10%的平均可变性。然而,激光脉冲变异性遵循季节性行为,随着夏季的激光脉冲数量的增加和冬季减少。这有助于解释CEILETER校准常数对在相互作用期间假设的环境温度上的依赖性。

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