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首页> 外文期刊>Journal of Aerosol Science >Improvements in star photometry for aerosol characterizations
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Improvements in star photometry for aerosol characterizations

机译:改进了星形光度法以进行气溶胶表征

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This work addresses the applicability of the Astronomical Langley method to retrieve accurate calibration constants for a star photometer at a high mountain site. For this application, this method provides more accurate and reliable calibration constants than the classical Langley method. The Astronomical Langley method has been also tested in an urban environment using one year of star photometer measurements in the city of Granada (37.16°N, 3.60°W, 680 m a.s.l.). Under low and stable aerosol load conditions the calibration constants obtained are close to those retrieved at altitude. Finally, an analysis of the applicability of the one-star and classical two-star methods to retrieve aerosol optical depth (δ_A(λ)) at night is performed. For the one-star method the estimated errors in δ_A(λ) are close to 0.02 for λ < 800 nm and 0.01 for λ > 800 nm. For the two-star method the uncertainties are larger than those obtained by the one-star method, and thus can lead to unreliable values of the δ_A(λ). As a concluding remark, we consider that the one-star method is more appropriate, especially in an urban environment.
机译:这项工作解决了天文兰利方法的适用性,该方法可为高山场所的星型光度计检索准确的校准常数。对于此应用程序,此方法比经典的兰利方法提供了更准确和可靠的校准常数。天文学兰利法也已经在格拉纳达市(北纬37.16°,西经3.60°W,680 m a.s.l.)使用了一年的恒星光度计测量在城市环境中进行了测试。在低且稳定的气溶胶负载条件下,所获得的校准常数接近于在海拔高度获得的校准常数。最后,对一星法和经典两星法在夜间获取气溶胶光学深度(δ_A(λ))的适用性进行了分析。对于单星方法,估计的δ_A(λ)误差对于λ<800 nm接近0.02,对于λ> 800 nm则接近0.01。对于两星方法,不确定性比通过一星方法获得的不确定性大,因此可能导致δ_A(λ)的值不可靠。最后,我们认为单星方法更合适,尤其是在城市环境中。

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