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从太阳光度计测量结果推断突尼斯气溶胶物理特性的气候学方面

Climatological aspects of aerosol physical characteristics in Tunisia deduced from sun photometric measurements.

作者信息

Chaâbane Mabrouk, Azri Chafai, Medhioub Khaled

机构信息

Faculté des Sciences, Université de Sfax, BP 1171, Sfax 3000, Tunisia. chaabane

出版信息

ScientificWorldJournal. 2012;2012:585084. doi: 10.1100/2012/585084. Epub 2012 May 2.

Abstract

Atmospheric and climatic data measured at Thala site (Tunisia) for a long-time period (1977-2001) are used to analyse the monthly, seasonal, and annual variations of the aerosol optical depth at 1 μm wavelength. We have shown that aerosol and microphysical properties and the dominating aerosol types depend on seasons. A comparison of the seasonal cycle of aerosol optical characteristics at Thala site showed that the contribution of long-range transported particles is expected to be larger in summer as a consequence of the weather stability typical of this season. Also, the winter decrease in atmospheric turbidity may result from increases in relative humidity and decreases in temperature, leading to increased particle size and mass and increased fall and deposition velocities. The spring and autumn weather patterns usually carry fine dust and sand particles for the desert area to Thala region. The annual behaviour of the aerosol optical depth recorded a period of stead increase started in 1986 until 2001. Trends in atmospheric turbidity after 1988 could be explained other ways by the contribution of the eruption of Mount Pinatubo in 1991 and by local or regional changes in climate or in aerosol emissions.

摘要

利用在突尼斯塔拉站点长期(1977 - 2001年)测量的大气和气候数据,分析1μm波长处气溶胶光学厚度的月、季和年变化。我们已经表明,气溶胶和微物理特性以及主要的气溶胶类型取决于季节。对塔拉站点气溶胶光学特征季节循环的比较表明,由于该季节典型的天气稳定性,远距离传输颗粒的贡献在夏季预计会更大。此外,冬季大气浑浊度的降低可能是由于相对湿度增加和温度降低,导致颗粒尺寸和质量增加以及沉降和沉积速度增加。春季和秋季的天气模式通常会将来自沙漠地区的细沙尘颗粒带到塔拉地区。记录的气溶胶光学厚度的年度变化显示,从1986年到2001年有一段稳定增加的时期。1988年之后大气浑浊度的趋势可以通过1991年皮纳图博火山爆发的贡献以及气候或气溶胶排放的局部或区域变化以其他方式来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99c1/3354419/c35ccf7e3af5/TSWJ2012-585084.001.jpg

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