...
首页> 外文期刊>Journal of Applied Meteorology and Climatology >Regional Retrieval Processor for Direct Broadcast High-Resolution Infrared Data
【24h】

Regional Retrieval Processor for Direct Broadcast High-Resolution Infrared Data

机译:用于直播高分辨率红外数据的区域检索处理器

获取原文
获取原文并翻译 | 示例
           

摘要

The Space Science Engineering Center, in collaboration with the Mauna Kea Weather Center at the University of Hawai'i at Manoa, has developed a regional retrieval processor for high-spectral-resolution infrared data. The core of the processor makes use of an inversion system, referred to as Mirto, which combines, in a Bayesian way, the a priori knowledge of the atmospheric state, based on available numerical weather prediction forecasts, with the physical information embedded in satellite observations. Forecast temperature and water vapor mixing ratio fields over the central North Pacific Ocean are adjusted to produce synthetic radiances closer and closer to the Suomi NPP Cross-track Infrared Sounder (CrIS) observations taken in clear-sky conditions. The paucity of synoptic observations over this area and the highly homogeneous background represented by the ocean provide a good framework for the implementation of this hyperspectral data inversion system. Nearly real-time (less than 60 min from overpass time) Internet publication of retrieved atmospheric profiles is made possible by the availability of a direct broadcast system that provides data from the Suomi NPP platform (CrIS and VIIRS). The main goal for the implemented system is to provide the forecasting community with products suitable for nowcasting applications and for optimal data assimilation. The implemented processor has been running routinely since August 2013. Validation based on the comparisons of retrievals with rawinsonde data from Hilo, Hawaii, and Lihue, Hawaii, and GPS-derived total precipitable water from four stations, performed over a time period of more than 1 year, shows a statistically significant improvement on the background atmospheric state used as a priori information.
机译:该科学工程中心与Manoa夏威夷大学的Mauna Kea天气中心合作,开发了一个用于高光谱分辨率红外数据的区域检索处理器。处理器的核心利用作为MiRto的反转系统,其在贝叶斯方式基于可用的数字天气预测预测,以贝叶斯方式在贝叶斯方式中结合的优先知识,其中嵌入在卫星观测中的物理信息。预测温度和水蒸气混合比在中央北太平洋上的野外域被调整,以产生更接近的合成无线且更接近苏米米的跨轨道红外发声器(CRIS)观察,在清晰的天空条件下采取的观察。在该地区的概要观测和海洋代表的高度同质背景的缺乏提供了良好的框架,用于实现该超光数据反转系统​​。几乎实时(从立交桥时间小于60分钟)通过提供来自Suomi NPP平台(CRIC和VIIR)的直接广播系统,可以实现检索到的大气配置文件的互联网出版物。实施系统的主要目标是为预测社区提供适合于临近应用程序的产品和最佳数据同化的产品。自2013年8月以来,所实施的处理器一直在运行。根据来自HILO,夏威夷和Lihue,Hawaii,Hawaii和Lihue,Hawaii和GPS衍生的GPS衍生的总可降水水的检索的比较,从四个站进行了验证,在一段时间内进行1年,显示了用作先验信息的背景大气状态的统计上显着的改进。

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