首页> 外文OA文献 >Post-processing to remove residual clouds from aerosol optical depth retrieved using the Advanced Along Track Scanning Radiometer
【2h】

Post-processing to remove residual clouds from aerosol optical depth retrieved using the Advanced Along Track Scanning Radiometer

机译:使用先进的沿航迹扫描辐射计进行后处理,以从气溶胶光学深度中去除残留的云

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Cloud misclassification is a serious problem in the retrieval of aerosol optical depth (AOD), which might considerably bias the AOD results. On the one hand, residual cloud contamination leads to AOD overestimation, whereas the removal of high-AOD pixels (due to their misclassification as clouds) leads to underestimation. To remove cloudcontaminated areas in AOD retrieved from reflectances measured with the (Advanced) Along Track Scanning Radiometers (ATSR-2 and AATSR), using the ATSR dual-view algorithm (ADV) over land or the ATSR single-view algorithm (ASV) over ocean, a cloud post-processing (CPP) scheme has been developed at the Finnish Meteorological Institute (FMI) as described in Kolmonen et al. (2016). The application of this scheme results in the removal of cloudcontaminated areas, providing spatially smoother AOD maps and favourable comparison with AOD obtained from the ground-based reference measurements from the AERONET sun photometer network. However, closer inspection shows that the CPP also removes areas with elevated AOD not due to cloud contamination, as shown in this paper. We present an improved CPP scheme which better discriminates between cloud-free and cloud-contaminated areas. The CPP thresholds have been further evaluated and adjusted according to the findings. The thresholds for the detection of high-AOD regions (> 60% of the retrieved pixels should be high-AOD (> 0.6) pixels), and cloud contamination criteria for lowAOD regions have been accepted as the default for AOD global post-processing in the improved CPP. Retaining elevated AOD while effectively removing cloud-contaminated pixels affects the resulting global and regional mean AOD values as well as coverage. Effects of the CPP scheme on both spatial and temporal variation for the period 2002-2012 are discussed. With the improved CPP, the AOD coverage increases by 10-15% with respect to the existing scheme. The validation versus AERONET shows an improvement of the correlation coefficient from 0.84 to 0.86 for the global data set for the period 2002-2012. The global aggregated AOD over land for the period 2003-2011 is 0.163 with the improved CPP compared to 0.144 with the existing scheme. The aggregated AOD over ocean and globally (land and ocean together) is 0.164 with the improved CPP scheme (compared to 0.152 and 0.150 with the existing scheme, for ocean and globally respectively). Effects of the improved CPP scheme on the 10-year time series are illustrated and seasonal and temporal changes are discussed. The improved CPP method introduced here is applicable to other aerosol retrieval algorithms. However, the thresholds for detecting the high-AOD regions, which were developed for AATSR, might have to be adjusted to the actual features of the instruments.
机译:云的错误分类是气溶胶光学深度(AOD)检索中的一个严重问题,可能会严重影响AOD结果。一方面,残留的云污染会导致AOD高估,而去除高AOD像素(由于将其错误分类为云)会导致低估。使用在地面上的ATSR双视图算法(ADV)或在陆地上的ATSR单视图算法(ASV),从使用(高级)沿轨道扫描辐射计(ATSR-2和AATSR)测量的反射率中去除的AOD中被云污染的区域去除在海洋中,芬兰气象研究所(FMI)已开发出云后处理(CPP)方案,如Kolmonen等人所述。 (2016)。该方案的应用导致去除了云污染的区域,提供了空间上更平滑的AOD图,并与从AERONET太阳光度计网络的地面参考测量获得的AOD进行了有利的比较。但是,更仔细的检查表明,CPP还可以去除并非由云污染引起的AOD升高的区域,如本文所示。我们提出了一种改进的CPP方案,可以更好地区分无云和受云污染的区域。 CPP阈值已根据结果进一步评估和调整。高AOD区域检测的阈值(大于60%的检索像素应为高AOD(> 0.6)像素),低AOD区域的云污染标准已被接受为AOD全局后处理的默认设置改进的CPP。保持升高的AOD值,同时有效去除受云污染的像素会影响最终的全球和区域平均AOD值以及覆盖范围。讨论了CPP计划对2002-2012年期间时空变化的影响。通过改进的CPP,相对于现有方案,AOD覆盖率增加了10-15%。相对于AERONET的验证显示,对于2002-2012年期间的全球数据集,相关系数从0.84改善到0.86。 CPP值提高后,2003-2011年期间全球AOD总量为0.163,而现有方案为0.144。通过改进的CPP计划,海洋和全球(陆地和海洋共计)的AOD总计为0.164(相比之下,现有计划的海洋和全球AOD分别为0.152和0.150)。说明了改进的CPP方案对10年时间序列的影响,并讨论了季节和时间变化。此处介绍的改进的CPP方法适用于其他气溶胶回收算法。但是,为AATSR开发的检测高AOD区域的阈值可能必须根据仪器的实际功能进行调整。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号