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Tropical tropospheric ozone derived using Clear-Cloudy Pairs (CCP) of TOMS measurements

机译:使用TOMS测量的晴云对(CCP)得出的热带对流层臭氧

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Using TOMS total-ozone measurements over high-altitude cloud locations and nearby paired clear locations, we describe the Clear-Cloudy Pairs (CCP) method for deriving tropical tropospheric ozone. The high-altitude clouds are identified by measured 380 nm reflectivities greater than 80% and Temperature Humidity InfraRed (THIR) measured cloud-top pressures less than 200 hPa. To account for locations without high-altitude clouds, we apply a zonal sine fitting to the stratospheric ozone derived from available cloudy points, resulting in a wave-one amplitude of about 4 DU. THIR data is unavailable after November 1984, so we extend the CCP method by using a reflectivity threshold of 90% to identify high-altitude clouds and remove the influence of high-reflectivity-but-low-altitude clouds with a lowpass frequency filter. We correct ozone retrieval errors associated with clouds, and ozone retrieval errors due to sun glint and aerosols. Comparing CCP results with Southern Hemisphere ADditional OZonesondes (SHADOZ) tropospheric ozone indicates that CCP tropospheric ozone and ozonesonde measurements agree, on average, to within 3 ± 1 DU standard error of the mean. The most significant difference between CCP and ozonesonde tropospheric ozone can be explained by the low Total Ozone Mapping Spectrometer (TOMS) version-7 retrieval efficiency of ozone in the lower troposphere.
机译:使用TOMS在高空云位置和附近成对的清除位置上的总臭氧测量值,我们描述了用于导出热带对流层臭氧的清除云对(CCP)方法。通过测得的大于80%的380 nm反射率和测得的小于200 hPa的云顶压力来识别高海拔云。为了说明没有高空云的位置,我们对来自可用浊点的平流层臭氧应用纬向正弦拟合,从而产生大约4 DU的波一振幅。 1984年11月以后无法获得该数据,因此我们扩展了CCP方法,使用90%的反射率阈值来识别高空云,并使用低通频率滤波器消除了高反射率但低空云的影响。我们会纠正与云有关的臭氧回收错误,以及由于太阳闪耀和气溶胶导致的臭氧回收错误。将CCP结果与南半球附加臭氧探空仪(SHADOZ)对流层臭氧进行比较,表明CCP对流层臭氧和臭氧探空仪的测量值平均在平均值平均值的3±1 DU之内。 CCP与对流层臭氧探空仪之间最显着的差异可以用较低的对流层较低总臭氧图谱仪(TOMS)版本7的回收效率来解释。

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