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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Climatology of aerosol optical depth over Eastern Europe based on 19 years (2000-2018) MODIS TERRA data
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Climatology of aerosol optical depth over Eastern Europe based on 19 years (2000-2018) MODIS TERRA data

机译:基于19年(2000-2018)Modis Terra数据的东欧气雾光学深度的气候学

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摘要

This study investigates the spatial-temporal evolution of aerosols, their optical properties (aerosol optical depth [AOD] and angstrom exponent [AE]) and the trend over a period of 19 years in the Eastern European countries. The data used for the study are from moderate-resolution imaging spectroradiometer (MODIS) Terra Collection 6.1 aerosol products with the use of Dark Target algorithm for the period from 2000 to 2018. The satellite-based AOD products were validated against the AERONET AOD measurements in four stations, located in different regions. The results demonstrate high coherence in the setting of high values of correlation (R = 0.8-0.9) and low values of root-mean-square error (RMSE [0.066-0.130]) and mean absolute error (MAE [0.048-0.067]). However, of the total amount of data from AERONET stations, only 68.9% of available data fall within expected error (EE) over land. Generally, all countries recorded a low AOD (83.2% less than 0.2) and high AE (82.5% higher than 1). Mean AOD and AE values varied from 0.17 +/- 0.12 and 1.31 +/- 0.27 (Russia) to 0.24 +/- 0.14 and 1.31 +/- 0.33 (Czech Republic). There was a gradual decrease in aerosol load in all countries, the highest tendencies of AOD reduction are observed in Czech Republic, Bulgaria, Slovakia and Hungary (by -0.0028, -0.0027, -0.0026 and -0.0025 per year), while the lowest tendencies of reduction are observed in Russia and Moldova (by -0.001 and -0.0006 per year). Seasonal averaged AOD values have maximum values in summer and minimum values in winter. We studied predominant aerosol types, which are based on AOD and AE interrelation, the results showed the predominance of clean continental and mixed aerosols over all countries of the region.
机译:本研究调查了气溶胶的空间时间演变,它们的光学性质(气溶胶光学深度[AOD]和Angstrom指数[AE])以及东欧国家的19年时期的趋势。用于该研究的数据来自适度分辨率成像光谱辐射计(MODIS)Terra Collection 6.1气溶胶产品,使用2000年至2018年的暗目标算法。基于卫星的AOD产品验证了AeroNet AOD测量四个站,位于不同地区。结果表明,在具有高值(r = 0.8-0.9)和根均方误差的低值(RMSE [0.066-0.130])和平均误差(MAE [0.048-0.067])中,表现出高相干性。然而,由于AeroNet站的数据总量,只有68.9%的可用数据落在土地上的预期误差(EE)内。一般而言,所有国家都记录了低AOD(83.2%小于0.2),高AE(高于1)。平均AOD和AE值不同于0.17 +/- 0.12和1.31 +/- 0.27(俄罗斯)至0.24 +/- 0.14和1.31 +/- 0.33(捷克共和国)。所有国家的气溶胶载荷均逐渐减少,在捷克共和国,保加利亚,斯洛伐克和匈牙利观察到AOD减少的最高趋势(通过-0.0028,-0.0027,-0.0026和-0.0027,-0.0026和-0.0025),而最低的趋势在俄罗斯和摩尔多瓦观察到还原(每年至多,每年 - 0.0006)。季节性平均AOD值在夏季和冬季最小值中具有最大值。我们研究了基于AOD和AE相互关联的主要气溶胶类型,结果表明,在该地区所有国家的所有国家/地区都有清洁的欧陆和混合气溶胶的主要态度。

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