首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Assessment of the performance of ECC-ozonesondes under quasi-flight conditions in the environmental simulation chamber: Insights from the Juelich Ozone Sonde Intercomparison Experiment (JOSIE)
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Assessment of the performance of ECC-ozonesondes under quasi-flight conditions in the environmental simulation chamber: Insights from the Juelich Ozone Sonde Intercomparison Experiment (JOSIE)

机译:在环境模拟室内准飞行条件下对ECC臭氧探空仪性能的评估:来自Juelich臭氧探空仪比对实验(JOSIE)的见解

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摘要

Since 1996, quality assurance experiments of electrochemical concentration cell (ECC) ozonesondes of two different model types (SPC-6A and ENSCI-Z) have been conducted in the environmental simulation facility at the Research Centre Juelich within the framework of the Juelich Ozone Sonde Intercomparison Experiment (JOSIE). The experiments have shown that the performance characteristics of the two ECC-sonde types can be significantly different, even when operated under the same conditions. Particularly above 20 km the ENSCI-Z sonde tends to measure 5–10% more ozone than the SPC-6A sonde. Below 20 km the differences are 5% or less, but appear to show some differences with year of manufacture. There is a significant difference in the ozone readings when sondes of the same type are operated with different cathode sensing solutions. Testing the most commonly used sensing solutions showed that for each ECC-manufacturer type the use of 1.0% KI and full buffer gives 5% larger ozone values compared with the use of 0.5% KI and half buffer, and as much as 10% larger values compared with 2.0% KI and no buffer. For ozone sounding stations performing long term measurements this means that changing the sensing solution type or ECC-sonde type can easily introduce a change of ±5% or more in their records, affecting determination of ozone trends. Standardization of operating procedures for ECC-sondes yields a precision better than ±(3–5)% and an accuracy of about ±(5–10)% up to 30 km altitude.
机译:自1996年以来,在Juelich臭氧探空仪比对框架内,在Juelich研究中心的环境模拟设施中进行了两种不同模型类型(SPC-6A和ENSCI-Z)的电化学浓池(ECC)臭氧探空仪的质量保证实验。实验(JOSIE)。实验表明,即使在相同条件下运行,两种ECC探空仪的性能特征也可能存在显着差异。特别是在20 km以上,ENSCI-Z探空仪比SPC-6A探空仪测出的臭氧量高出5-10%。在20 km以下,差异不超过5%,但似乎与制造年份有所差异。当相同类型的主机在不同的阴极感应溶液中运行时,臭氧读数存在显着差异。对最常用的传感解决方案进行的测试表明,对于每种ECC制造商类型,与使用0.5%KI和半缓冲液相比,使用1.0%KI和完整缓冲液会产生5%的臭氧值,而使用0.5%KI和半缓冲液则会产生多达10%的臭氧值与2.0%KI和没有缓冲区的情况相比。对于执行长期测量的臭氧探测站,这意味着更改感测溶液类型或ECC探空仪类型可以轻松在其记录中引入±5%或更大的变化,从而影响确定臭氧趋势。 ECC探空仪操作程序的标准化产生的精度优于±(3–5)%,并且在30 km的高度下的精度约为±(5–10)%。

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