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首页> 外文期刊>Atmospheric Measurement Techniques >A multi-axis differential optical absorption spectroscopy aerosol profile retrieval algorithm for high-altitude measurements: application to measurements at Schneefernerhaus (UFS), Germany
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A multi-axis differential optical absorption spectroscopy aerosol profile retrieval algorithm for high-altitude measurements: application to measurements at Schneefernerhaus (UFS), Germany

机译:一种多轴差分光学吸收光谱气溶胶型材检索算法,用于高海拔测量:应用于德国Schnefernerhaus(UFS)测量的应用

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摘要

We present a new aerosol extinction profile retrieval algorithm for multi-axis differential optical absorption spectrometer (MAX-DOAS) measurements at high-altitude sites. The algorithm is based on the lookup table method. It is applied to retrieve aerosol extinction profiles from the long-term MAX-DOAS measurements (February 2012 to February 2016) at the Environmental Research Station Schneefernerhaus (UFS), Germany (47.417 degrees N, 10.980 degrees E), which is located near the summit of Zugspitze at an altitude of 2650 m. The lookup table consists of simulated O-4 differential slant column densities (DSCDs) corresponding to numerous possible aerosol extinction profiles. The sensitivities of O-4 absorption to several parameters were investigated for the design and parameterization of the lookup table. In the retrieval, simulated O-4 DSCDs for each possible profile are derived by interpolating the lookup table to the observation geometries. The cost functions are calculated for each aerosol profile in the lookup table based on the simulated O-4 DSCDs, the O-4 DSCD observations, and the measurement uncertainties. Valid profiles are selected from all the possible profiles according to the cost function, and the optimal solution is defined as the weighted mean of all the valid profiles. A comprehensive error analysis is performed to better estimate the total uncertainty. Based on the assumption that the lookup table covers all possible profiles under clear-sky conditions, we determined a set of O-4 DSCD scaling factors for different elevation angles and wavelengths. The profiles retrieved from synthetic measurement data can reproduce the synthetic profile. The results also show that the retrieval is insensitive to measurement noise, indicating the retrieval is robust and stable. The aerosol optical depths (AODs) retrieved from the long-term measurements were compared to coinciding and co-located sun photometer observations. High correlation coefficients (R) of 0.733 and 0.798 are found for measurements at 360 and 477 nm, respectively. However, especially in summer, the sun photometer AODs are systematically higher than the MAX-DOAS retrievals by a factor of similar to 2. The discrepancy might be related to the limited measurement range of the MAX-DOAS and is probably also related to the decreased sensitivity of the MAX-DOAS measurements at higher altitudes. The MAX-DOAS measurements indicate the aerosol extinction decreases with increasing altitude during all seasons, which agrees with the co-located ceilometer measurements. Our results also show maximum AOD and maximum Angstrom exponent in summer, which is consistent with observations at an AERONET station located similar to 43 km from the UFS.
机译:我们在高海拔地点提供了一种新的气溶胶消光轮廓检索算法,用于多轴差分光学吸收光谱仪(MAX-DOA)测量。该算法基于查找表方法。应用于从长期MAX-DOAS测量中(2012年2月至2016年2月)在环境研究站Schneefernerhaus(UFS),德国(47.417度N,10.980摄氏度)(47.417度,10.980度)(47.417)附近Zugspitze峰会在海拔2650米。查找表包括对应于许多可能的气溶胶消光轮廓的模拟O-4微分倾斜列密度(DSCD)。研究了O-4吸收对几个参数的敏感性,用于查找表的设计和参数化。在检索中,通过将查找表插入观察几何形状,导出用于每个可能轮廓的模拟O-4 DSCD。基于模拟O-4 DSCD,O-4 DSCD观察和测量不确定性,为查找表中的每个气溶胶配置文件计算成本函数。根据成本函数从所有可能的配置文件中选择有效的配置文件,并且最佳解决方案被定义为所有有效配置文件的加权均值。进行全面的误差分析以更好地估计总不确定性。基于查找表在清晰天空条件下涵盖所有可能的轮廓的假设,我们确定了一组O-4 DSCD缩放因子,用于不同的高度角度和波长。从合成测量数据中检索的配置文件可以再现合成轮廓。结果还表明,检索对测量噪声不敏感,表明检索是坚固且稳定的。将从长期测量中检索的气溶胶光学深度(AOD)与恰逢和共同定位的太阳光度计观察进行了比较。发现0.733和0.798的高相关系数(R)分别在360和477nm处进行测量。然而,特别是在夏季,太阳光度计AODS系统地高于MAX-DOAS检索的因素类似于2.差异可能与MAX-DOA的有限测量范围有关,并且可能与减少有关较高海拔地区MAX-DOA测量的敏感性。 MAX-DOAS测量表明,在所有季节期间,气溶胶消耗随着高度的增加而降低,这与共同定位的天花板测量相同。我们的结果还显示了夏季最大AOD和最大埃克斯特罗姆指数,这与距离UFS 43公里的AeroNet站的观测一致。

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