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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Long-term trends and variability in measured multi-spectral aerosol optical depth over a tropical urban station in India
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Long-term trends and variability in measured multi-spectral aerosol optical depth over a tropical urban station in India

机译:印度热带城市气象站测得的多光谱气溶胶光学深度的长期趋势和变异性

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摘要

Sun photometer-derived multi-spectral aerosol optical depth (AOD) measurements made at Pune (18°32'N, 73°51'E), India, during the period May 1998-December 2007 have been used to examine possible long-term trends and variability. Long-term mean AOD in the spectral range 380-1020 nm ranged between 0.593 ± 0.11 and 0.220 ± 0.04 with a coefficient of variation (COV) of 34-49%. Day-to-day variations in AOD at all the wavelengths in the range 380-870 nm showed significant long-term increasing trends; the increasing trend at 380 nm being 45% per decade. AODs are higher at shorter wavelengths in winter (December-February) and at longer wavelengths in the pre-monsoon months (March-May) which implies that relatively smaller-sized particles are more in winter and larger sized particles of soil dust origin are more during the pre-monsoon season. Overall mean value of Angstrom-size exponent (α) at this urban location is 0.55, and the mean turbidity coefficient (β) is 0.76. Value of α is higher in winter season compared to the pre-monsoon season. Both α and β show long-term increasing trends of 25.3% and 8.4% per decade, respectively, which points out that with increasing urbanisation and human activity, more and more smaller-sized aerosols are being added to the atmosphere over the urban regions.
机译:1998年5月至2007年12月期间在印度浦那(18°32'N,73°51'E)进行的太阳光度计衍生的多光谱气溶胶光学深度(AOD)测量已用于检验可能的长期趋势和可变性。 380-1020 nm光谱范围内的长期平均AOD介于0.593±0.11和0.220±0.04之间,变异系数(COV)为34-49%。在380-870 nm范围内的所有波长下,AOD的每日变化都显示出长期的显着增长趋势。 380 nm处的增长趋势是每十年增加45%。在冬季(12月至2月)的较短波长处以及在季风前几个月(3月至5月)的较长波长处的AOD较高,这意味着冬季较小的颗粒较多,而较大的土壤尘埃颗粒较大在季风前的季节。该城市位置的埃大小指数的总平均值(α)为0.55,平均浊度系数(β)为0.76。与季风前季节相比,冬季的α值更高。 α和β的长期增长趋势分别为每十年25.3%和8.4%,这表明随着城市化进程和人类活动的增加,城市地区的大气中越来越多地出现了较小尺寸的气溶胶。

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