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Continuous Ground-Based Observation of Aerosol Optical Properties at Tsukuba, Japan: Trend and Climatology

机译:在日本筑波市进行气溶胶光学特性的连续地基观测:趋势和气候学

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摘要

To investigate aerosol optical properties, the Meteorological Research Institute has been continuously measuring scattering and absorption coefficients since January 2002 by using an integrating nephelometer and one- and three-wavelength absorption photometers in dry air conditions at Tsukuba, Japan. We used these optical data to investigate trends of aerosol properties and climatology from 2002 to 2013. The results showed that most aerosol characteristics had seasonal variation and decreasing or increasing trends significant at the 95 % confidence level. From 2002 to 2013, the extinction coefficient at 550 nm and absorption coefficient at 530 nm had statistically significant decreases of -1.5 x 10(-6) and -5.4 x 10(-7) m(-1) year(-1), respectively. In the same period, the scattering coefficient showed a non-significant decrease of -8.8 x 10(-7) m(-1) year(-1). The single scattering albedo (SSA) at 550 nm had a significant increasing trend of 7.4 x 10(-3) year(-1). Asymmetry factors did not show a significant trend. The increasing trend in the extinction Angstrom exponent was significant, whereas the trend in the effective radius was not significant. The increasing trend of 2.1 x 10(-2) year(-1) in the absorption Angstrom exponent from 2006 to 2013 was significant. This tendency suggests a compositional change of light-absorbing aerosol. Frequency distributions of aerosol properties were investigated during 2006-2012. In this period, absorption coefficients were measured by the three-wavelength absorption photometer. The most frequent values of the extinction coefficient at 550 nm, the absorption coefficient at 530 nm, and the SSA at 550nm were 25 x 10(-6), 3.0 x 10(-6) m(-1), and 0.905, respectively. The analysis using the extinction Angstrom exponent showed that aerosol characteristics were dependent on the extinction Angstrom exponent. The aerosol characteristics estimated from optical data were consistent with those derived from radiometer data. Therefore, ground-based monitoring of aerosol optical properties is useful for monitoring aerosol characteristics and interpreting variations in the surface radiation budget.
机译:为了研究气溶胶的光学特性,气象研究所自2002年1月以来一直在干燥的空气条件下,在日本筑波市使用积分浊度计和一波长和三波长吸收光度计,连续测量散射和吸收系数。我们使用这些光学数据调查了2002年至2013年的气溶胶特性和气候趋势。结果表明,大多数气溶胶特征均具有季节性变化,并且在95%的置信水平上具有明显的下降或上升趋势。从2002年到2013年,在550 nm处的消光系数和在530 nm处的吸收系数在统计上显着下降-1.5 x 10(-6)和-5.4 x 10(-7)m(-1)年(-1),分别。在同一时期,散射系数显示出显着下降-8.8 x 10(-7)m(-1)年(-1)。 550 nm处的单散射反照率(SSA)有7.4 x 10(-3)year(-1)的显着增加趋势。不对称因素没有显示出明显的趋势。消光埃斯通指数的增加趋势是显着的,而有效半径的趋势却不显着。从2006年到2013年,吸收埃斯特罗姆指数以2.1 x 10(-2)year(-1)的增加趋势显着。这种趋势表明吸光气溶胶的成分变化。在2006-2012年期间调查了气溶胶特性的频率分布。在此期间,通过三波长吸收光度计测量吸收系数。 550nm处的消光系数,530nm处的吸收系数和550nm处的SSA的最频繁值分别为25 x 10(-6),3.0 x 10(-6)m(-1)和0.905。 。使用消光埃指数的分析表明,气溶胶特性取决于消光埃指数。根据光学数据估算的气溶胶特性与根据辐射计数据得出的气溶胶特性一致。因此,基于地面的气溶胶光学特性监测对于监测气溶胶特性和解释表面辐射预算的变化非常有用。

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