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Comparison of the optical depth of total ozone and atmospheric aerosols in Poprad-Gánovce, Slovakia

机译:斯洛伐克Poprad-Gánovce中总臭氧和大气气溶胶光学深度的比较

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The amount of ultraviolet solar radiation reaching the Earth's surface is significantly affected by atmospheric ozone along with aerosols. The present paper is focused on a?comparison of the total ozone and atmospheric aerosol optical depth in the area of Poprad-Gánovce, which is situated at the altitude of 706 m?a.?s.?l. in the vicinity of the highest mountain in the Carpathian mountains. The direct solar ultraviolet radiation has been measured here continuously since August?1993 using a?Brewer MKIV ozone spectrophotometer. These measurements have been used to calculate the total amount of atmospheric ozone and, subsequently, its optical depth. They have also been used to determine the atmospheric aerosol optical depth?(AOD) using the Langley plot method. Results obtained by this method were verified by means of comparison with a?method that is part of the Brewer operating software, as well as with measurements made by a?Cimel sun photometer. Diffuse radiation, the stray-light effect and?polarization corrections were applied to calculate the AOD using the Langley plot method. In this paper, two factors that substantially attenuate the flow of direct ultraviolet solar radiation to the Earth's surface are compared. The paper presents results for 23?years of measurements, namely from 1994 to 2016. Values of optical depth were determined for the wavelengths of 306.3, 310, 313.5, 316.8 and 320 nm. A?statistically significant decrease in the total optical depth of the atmosphere was observed with all examined wavelengths. Its root cause is the statistically significant decline in the optical depth of aerosols.
机译:到达地球表面的紫外线辐射量受大气臭氧和气溶胶的影响很大。本文着重比较波普拉德-加诺夫采地区的总臭氧和大气气溶胶光学深度,该区域位于706 m?a.s.?l的高度。在喀尔巴阡山脉最高的山脉附近。自1993年8月以来,这里使用Brewer MKIV臭氧分光光度计连续不断地测量太阳直接紫外线辐射。这些测量已用于计算大气臭氧总量,然后计算其光学深度。它们还被用于使用兰利图法确定大气气溶胶光学深度?(AOD)。通过与Brewer操作软件的一部分方法进行比较,以及通过Cimel太阳光度计进行测量,可以验证通过该方法获得的结果。使用兰利图法,使用漫射辐射,杂散光效应和偏振校正来计算AOD。在本文中,比较了两个因素,这些因素大大减弱了直接紫外线太阳辐射到地球表面的流动。本文介绍了23年的测量结果,即从1994年到2016年。确定了306.3、310、313.5、316.8和320 nm波长的光学深度值。在所有检查的波长下,观察到大气总光学深度的统计学显着下降。其根本原因是气溶胶光学深度的统计显着下降。

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