...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Representing Cloud Water Content of Extensive Cloud Systems Over Land Using Satellite-Based Passive Microwave Observations With a Coupled Land and Atmosphere Assimilation Method
【24h】

Representing Cloud Water Content of Extensive Cloud Systems Over Land Using Satellite-Based Passive Microwave Observations With a Coupled Land and Atmosphere Assimilation Method

机译:云含水量广泛的代表云计算系统对土地使用卫星无源微波耦合的观察土地和大气同化方法

获取原文
获取原文并翻译 | 示例
           

摘要

We proposed a method to estimate cloud water content (CWC) over land using satellite-based passive microwave brightness temperatures (TBs) at multiple-kilometer resolutions with land and atmosphere assimilation to overcome the challenges associated with estimating the CWC of broad cloud systems over land. This method enables estimation of broad cloud systems over land using multifrequency TBs, which have different sensitivities to land and cloud, by concurrently optimizing land emissions and CWC estimates from models. Estimated CWC was validated using vertical two-dimensional CloudSat products (2B-CWC-RVOD and 2C-ICE). The results were in good accordance with 2B-CWC-RVOD in terms of cloud water path and the vertical distribution of CWC but represented underestimates in comparison to 2C-ICE. We performed sensitivity analysis of CWC estimates of TBs and cloud top height. The results suggested that the error in TBs is not large uncertainty, and that cloud top height affects the estimated CWC more sensitively than TBs. The addition of cloud top height information, as determined from CloudSat products as a constraint of optimization, allows further improvement of the vertical distributions of CWC in case studies. Sensitivity analysis indicated that it is effective to utilize cloud top height data from other satellites, such as nextgeneration geostationary meteorological satellites, within an error of about ±600 m for further development of our method. This study revealed that the proposed method has great potential to provide unprecedented data for cloud water path and CWC that are continuously distributed over land and ocean with adequate accuracy.
机译:我们提出一个方法来估计云水内容(CWC)对土地使用卫星无源微波亮度温度(TBs)与土地和multiple-kilometer决议气氛同化克服挑战与估计的履行《禁止化学武器公约》有关广泛的云系统。支持广泛的云系统的评估土地使用多频TBs,不同敏感性土地和云同时优化土地排放和履行《禁止化学武器公约》估计模型。使用垂直二维叫做验证产品(2 b-cwc-rvod和2 c-ice)。好按照2 b-cwc-rvod而言云水路径和垂直分布履行《禁止化学武器公约》,但表示低估比较2 c-ice。分析CWC TBs的估计和云高度。TBs不是很大不确定性,云顶高度影响估计CWC更敏感TBs。从叫做“产品信息,确定作为一个约束优化,允许进一步改善CWC的垂直分布在案例研究。它是有效利用云顶高度等其他卫星的数据代地球同步气象卫星,在±600米左右的一个错误我们的方法的进一步发展。表明该方法具有很大的潜在的为云提供前所未有的数据水不断的路径和履行《禁止化学武器公约》分布在陆地和海洋,足够了准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
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