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A hybrid method for reconstructing the historical evolution of aerosol optical depth from sunshine duration measurements

机译:一种重建气溶胶光学深度的历史演化的混合方法,从阳光持续时间测量

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A novel method has been developed to estimate aerosol optical depth (AOD) from sunshine duration (SD) measurements under cloud-free conditions. It is a physically based method serving for the reconstruction of the historical evolution of AOD during the last century. In addition to sunshine duration data, it requires daily water vapor and ozone products as inputs taken from the ECMWF 20th century reanalysis ERA-20C, available at the global scale over the period 1900–2010. Surface synoptic cloud observations are used to identify cloud-free days. For 16 sites over Europe, the accuracy of the estimated daily AOD, and its seasonal variability, is similar to or better than those from two earlier methods when compared to AErosol RObotic NETwork measurements. In addition, it also improves the detection of the signal from massive aerosol events such as important volcanic eruptions (e.g., Arenal and Fernandina Island in 1968, El Chichón in 1982 and Pinatubo in 1992). Finally, the reconstructed AOD time series are in good agreement with the dimming/brightening phenomenon and also provide preliminary evidence of the early-brightening phenomenon.
机译:已经开发了一种新的方法来估计来自无云条件下的阳光持续时间(SD)测量的气溶胶光学深度(AOD)。它是一种基于物理基础的方法,用于在上个世纪中重建AOD的历史演变。除了阳光持续时间数据外,它还需要每日水蒸气和臭氧产品作为从ECMWF 20世纪的Reanalysice Era-20C获取的投入,在1900-2010期间可在全球范围内提供。表面衰减云观察用于识别无云天。对于超过欧洲的16个站点,估计日常AOD的准确性及其季节变异性类似于或更优于两种早期方法与气溶胶机器人网络测量相比的准确性。此外,它还改善了来自大量气溶胶事件的信号的检测,例如重要的火山爆发(例如1968年的Arenal和Fernandina Island,1982年的ElChichón和Pinatubo在1992年)。最后,重建的AOD时间序列与调光/亮化现象吻合良好,也提供了早期亮化现象的初步证据。

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