首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Improved retrieval of direct and diffuse downwelling surface shortwave flux in cloudless atmosphere using dynamic estimates of aerosol content and type: application to the LSA-SAF project
【24h】

Improved retrieval of direct and diffuse downwelling surface shortwave flux in cloudless atmosphere using dynamic estimates of aerosol content and type: application to the LSA-SAF project

机译:利用气溶胶含量的动态估计和型号:在LSA-SAF项目中,改善了无云气氛中直接和漫射沉船表面短波助线的检索

获取原文
           

摘要

Downwelling surface shortwave flux (DSSF) is a key parameter to addressing many climate, meteorological, and solar energy issues. Under clear sky conditions, DSSF is particularly sensitive to the variability both in time and space of the aerosol load and chemical composition. Hitherto, this dependence has not been properly addressed by the Satellite Application Facility on Land Surface Analysis (LSA-SAF), which operationally disseminates instantaneous DSSF products over the continents since 2005 considering constant aerosol conditions. In the present study, an efficient method is proposed for DSSF retrieval that will overcome the limitations of the current LSA-SAF product. This method referred to as SIRAMix (Surface Incident Radiation estimation using Aerosol Mixtures) is based upon an accurate physical parameterization coupled with a radiative transfer-based look up table of aerosol properties. SIRAMix considers a tropospheric layer composed of several major aerosol species that are conveniently mixed to reproduce real aerosol conditions as best as possible. This feature of SIRAMix allows it to provide not only accurate estimates of global DSSF but also the direct and diffuse DSSF components, which are crucial radiative terms in many climatological applications. The implementation of SIRAMix is tested in the present article using atmospheric analyses from the European Center for Medium-Range Weather Forecasts (ECMWF). DSSF estimates provided by SIRAMix are compared against instantaneous DSSF measurements taken at several ground stations belonging to several radiation measurement networks. Results show an average root mean square error (RMSE) of 23.6, 59.1, and 44.9 W m?2 for global, direct, and diffuse DSSF, respectively. These scores decrease the average RMSE obtained for the current LSA-SAF product by 18.6%, which only provides global DSSF for the time being, and, to a lesser extent, for the state of the art in the matter of DSSF retrieval (RMSE decrease of 10.9, 6.5, and 19.1% for global, direct, and diffuse DSSF with regard to the McClear algorithm). The main limitation of the proposed approach is its high sensitivity to the quality of the ECMWF aerosol inputs, which is proved to be sufficiently accurate for reanalyses but not for forecast data. Given the proximity of DSSF retrieval to the modeling of the atmospheric direct effect, SIRAMix is also able to quantify the direct radiative forcing at the surface due to a given atmospheric component (e.g., gases or aerosols).
机译:沉船表面短波助焊剂(DSSF)是解决许多气候,气象和太阳能问题的关键参数。在清晰的天空条件下,DSSF对气溶胶载荷和化学成分的时间和空间均特别敏感。迄今为止,卫星应用设施对土地表面分析(LSA-SAF)的卫星应用设施尚未得到适当的解决,该依赖于2005年考虑恒定的气溶胶条件自2005年以来在整个大陆上传播瞬时DSSF产品。在本研究中,提出了一种有效的方法,用于DSSF检索,将克服当前LSA-SAF产品的局限性。该方法称为Siramix(使用气溶胶混合物的表面入射辐射估计)基于精确的物理参数化与基于气溶胶特性的辐射转移的查找表耦合。 Siramix认为由几种主要的气溶胶物种组成的对流层,这些层可以随着尽可能地繁殖真正的气溶胶条件。 Siramix的此功能允许其不仅提供全局DSSF的准确估计,还提供了直接和漫反射DSSF组件,这在许多气候学应用中是至关重要的辐射术语。使用欧洲中距离(ECMWF)的大气分析,在本文中测试Sirix的实施。将Sirix提供的DSSF估计与属于多个辐射测量网络的多个地站拍摄的瞬时DSSF测量进行比较。结果分别显示平均根均线(RMSE)为23.6,59.1和44.9 W m 2,用于全局,直接和弥漫性DSSF。这些分数将当前LSA-SAF产品获得的平均RMSE减少18.6%,这只提供全球DSSF,并且在DSSF检索问题中为现有技术的较小程度(RMSE减少)在全球,直接和弥漫性DSSF的10.9,6.5和19.1%方面关于MCTClear算法)。该方法的主要限制是对ECMWF气溶胶投入质量的高敏感性,这被证明是对Reanalyses的充分准确,但不适用于预测数据。考虑到DSSF检索到大气直接效果的建模,Siramix还能够量化由于给定的大气组分(例如气体或气溶胶)的表面上的直接辐射强迫。

著录项

获取原文

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