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Sensitivity study of the instrumental temperature corrections on Brewer total ozone column measurements

机译:啤酒总臭氧柱测量仪器温度校正的敏感性研究

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摘要

The instrumental temperature corrections to be applied to the ozone measurements by the Brewer spectrophotometers are derived from the irradiance measurements of internal halogen lamps in the instruments. These characterizations of the Brewer spectrophotometers can be carried out within a thermal chamber, varying the temperature from 5 to +45 degrees C, or during field measurements, making use of the natural change in ambient temperature. However, the internal light source used to determine the thermal sensitivity of the instrument could be affected in both methods by the temperature variations as well, which may affect the determination of the temperature coefficients. In order to validate the standard procedures for determining Brewer's temperature coefficients, two independent experiments using both external light sources and the internal halogen lamps have been performed within the ATMOZ Project. The results clearly show that the traditional methodology based on the internal halogen lamps is not sensitive to the temperature-caused changes in the spectrum of the internal light source. The three methodologies yielded equivalents results, with differences in total ozone column below 0.08% for a mean diurnal temperature variation of 10 degrees C.
机译:啤酒分光光度计应用于臭氧测量的仪器温度校正源自仪器中内卤素灯的辐照度测量。啤酒分光光度计的这些表征可以在热室内进行,改变5至+ 45摄氏度的温度,或在现场测量期间,使用环境温度的自然变化。然而,用于确定仪器的热敏性的内部光源也可以通过温度变化在两种方法中受到影响,这可能影响温度系数的确定。为了验证确定啤酒的温度系数的标准程序,在ATMOZ项目中已经在ATMOZ项目中执行了两个使用外部光源和内部卤素灯的独立实验。结果清楚地表明,基于内卤素灯的传统方法对内部光源光谱的温度导致变化不敏感。这三种方法产生了等同的结果,其总臭氧柱的差异低于0.08%,对于10℃的平均昼夜温度变化。

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