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Remote sensing of aerosols in the Arctic for an evaluation of global climate model simulations

机译:遥感北极气溶胶,以评估全球气候模型模拟

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In this study Moderate Resolution Imaging Spectroradiometer (MODIS) Aqua retrievals of aerosol optical thickness (AOT) at 555 nm are compared to Sun photometer measurements from Svalbard for a period of 9 years. For the 642 daily coincident measurements that were obtained, MODIS AOT generally varies within the predicted uncertainty of the retrieval over ocean (ΔAOT = ±0.03 ± 0.05 · AOT). The results from the remote sensing have been used to examine the accuracy in estimates of aerosol optical properties in the Arctic, generated by global climate models and from in situ measurements at the Zeppelin station, Svalbard. AOT simulated with the Norwegian Earth System Model/Community Atmosphere Model version 4 Oslo global climate model does not reproduce the observed seasonal variability of the Arctic aerosol. The model overestimates clear-sky AOT by nearly a factor of 2 for the background summer season, while tending to underestimate the values in the spring season. Furthermore, large differences in all-sky AOT of up to 1 order of magnitude are found for the CoupledModel Intercomparison Project phase 5 model ensemble for the spring and summer seasons. Large differences between satellite/ground-based remote sensing of AOT and AOT estimated from dry and humidified scattering coefficients are found for the subarctic marine boundary layer in summer.
机译:在这项研究中,将中分辨率成像光谱仪(MODIS)在555 nm处的水溶胶光学厚度(AOT)的水上提取结果与斯瓦尔巴特群岛的太阳光度计测量结果进行了9年的比较。对于每天获得的642个每日重合测量值,MODIS AOT通常会在预计的海洋检索不确定性范围内变化(ΔAOT=±0.03±0.05·AOT)。遥感的结果已用于检查北极的气溶胶光学特性估算值的准确性,该估算值是由全球气候模型以及在斯瓦尔巴特的齐柏林站进行的实地测量产生的。使用挪威地球系统模型/社区大气模型第4版进行的AOT模拟奥斯陆全球气候模型不能重现观测到的北极气溶胶的季节性变化。该模型在背景夏季将高空AOT估计高出将近2倍,而在春季时往往低估了该值。此外,在春季和夏季,CoupledModel Intercomparison Project阶段5模型集成发现全天空AOT的差异高达1个数量级。在夏季,北极亚海洋边界层发现了基于卫星/地面的AOT遥感与根据干湿散射系数估算出的AOT之间的巨大差异。

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