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Water Vapour Mixing Ratio Measurements in Potenza in the Frame of the International Network for the Detection of Atmospheric Composition Change - NDACC

机译:Patenza的水蒸气混合比测量在国际网络框架中检测大气组成变化 - NDACC

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摘要

In November 2012 the University of BASILicata Raman Lidar system (BASIL) was approved to enter the International Network for the Detection of Atmospheric Composition Change (NDACC). This network includes more than 70 high-quality, remote-sensing research stations for observing and understanding the physical and chemical state of the upper troposphere and stratosphere and for assessing the impact of stratosphere changes on the underlying troposphere and on global climate. As part of this network, more than thirty groundbased Lidars deployed worldwide are routinely operated to monitor atmospheric ozone, temperature, aerosols, water vapour, and polar stratospheric clouds.In the frame of NDACC, BASIL performs measurements on a routine basis each Thursday, typically from local noon to midnight, covering a large portion of the daily cycle. Measurements from BASIL are included in the NDACC database both in terms of water vapour mixing ratio and temperature. This paper illustrates some measurement examples from BASIL, with a specific focus on water vapour measurements, with the goal to try and characterize the system performances.
机译:2012年11月,大教堂拉曼拉曼系统(罗勒)批准进入国际网络检测大气组成变化(NDACC)。该网络包括70多个高质量的遥感研究站,用于观察和理解上层对流层和平流层的物理和化学状态,以及评估平流层变化对潜在对流层和全球气候的影响。作为该网络的一部分,在全球范围内常规地部署的三十多个地基闪光灯以监测大气臭氧,温度,气溶胶,水蒸气和极地平流层云。在NDACC的框架中,罗勒每周四,罗勒每周四的常规进行测量值从当地中午到午夜,覆盖每日循环的大部分。根据水蒸气混合比和温度,罗勒的测量包括在NDACC数据库中。本文说明了来自罗勒的一些测量例,具有特定于水蒸气测量的专注,目标是尝试和表征系统性能。

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