...
首页> 外文期刊>Journal of Applied Meteorology and Climatology >Information Content and Uncertainties in Thermodynamic Profiles and Liquid Cloud Properties Retrieved from the Ground-Based Atmospheric Emitted Radiance Interferometer (AERI)
【24h】

Information Content and Uncertainties in Thermodynamic Profiles and Liquid Cloud Properties Retrieved from the Ground-Based Atmospheric Emitted Radiance Interferometer (AERI)

机译:从地基大气辐射辐射干涉仪(AERI)检索到的热力学曲线和液云特性的信息内容和不确定性

获取原文
获取原文并翻译 | 示例
           

摘要

The Atmospheric Emitted Radiance Interferometer (AERI) observes spectrally resolved downwelling radiance emitted by the atmosphere in the infrared portion of the electromagnetic spectrum. Profiles of temperature and water vapor, and cloud liquid water path and effective radius for a single liquid cloud layer, are retrieved using an optimal estimation-based physical retrieval algorithm from AERI-observed radiance data. This algorithm provides a full error covariance matrix for the solution, and both the degrees of freedom for signal and the Shannon information content. The algorithm is evaluated with both synthetic and real AERI observations. The AERI is shown to have approximately 85% and 70% of its information in the lowest 2 km of the atmosphere for temperature and water vapor profiles, respectively. In clear-sky situations, the mean bias errors with respect to the radiosonde profiles are less than 0.2 K and 0.3 g kg(-1) for heights below 2 km for temperature and water vapor mixing ratio, respectively; the maximum root-mean-square errors are less than 1 K and 0.8 g kg(-1). The errors in the retrieved profiles in cloudy situations are larger, due in part to the scattering contribution to the downwelling radiance that was not accounted for in the forward model. Scattering is largest in one of the spectral regions used in the retrieval, however, and removing this spectral region results in a slight reduction of the information content but a considerable improvement in the accuracy of the retrieved thermodynamic profiles.
机译:大气辐射辐射干涉仪(AERI)在电磁频谱的红外部分观察由大气发射的光谱分辨的下降辐射。使用基于最优估计的物理检索算法从AERI观测到的辐射数据中检索温度和水蒸气的分布图,以及单个液态云层的云液态水路径和有效半径。该算法为解决方案提供了完整的误差协方差矩阵,以及信号的自由度和Shannon信息内容。该算法通过合成和实际AERI观测值进行评估。对于温度和水蒸气剖面,AERI在最低的2 km大气中分别具有大约85%和70%的信息。在晴朗的天空中,温度和水蒸气混合比低于2 km时,相对于探空仪剖面的平均偏差误差分别小于0.2 K和0.3 g kg(-1);最大均方根误差小于1 K和0.8 g kg(-1)。在多云的情况下,所获取的剖面中的误差较大,部分原因是正向模型中未考虑对向下辐射的散射的贡献。但是,在检索中使用的光谱区域之一中,散射最大,并且删除此光谱区域会导致信息内容略有减少,但检索到的热力学曲线的准确性会大大提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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