将印度卫星数据纳入NGFS并监测其质量的努力

V. S. Prasad, S. K. Singh
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引用次数: 1

摘要

Megha-Tropiques (MT)是印度-法国联合卫星任务,于2011年10月12日发射。mt - safir是一种在183 GHz水汽吸收带附近有6个通道的探测仪器,用于研究热带地区的水循环和能量交换。该任务的主要目标是了解影响热带天气和气候的对流系统的生命周期及其在热带地区大气相关能量和水分收支中的作用。印度也有一个享有盛誉的空间计划,并于2013年7月26日发射了INSAT-3D卫星,该卫星首次配备了大气探测器和改进的VHRR成像仪。NCMRWF(国家中期天气预报中心)定期接收这些新数据集,并不时对其全球数据同化预报(GDAF)系统进行修改,以同化这些新数据集。制定了一项精心规划的战略,包括监测数据质量、发展观测操作员和质量控制程序,最后研究其对预报的影响,以便将新的观测结果纳入全球数据分析系统。通过采用这一策略,对预报质量有积极影响的观测数据,如mt - sapir和INSAT-3D晴空辐射(CSR)产品被识别并被吸收到全球数据同化和预报(GDAF)系统中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efforts in assimilating Indian satellite data in the NGFS and monitoring of their quality
Megha-Tropiques (MT) is an Indo-French Joint Satellite Mission, launched on 12 October 2011. MT-SAPHIR is a sounding instrument with 6 channels near the absorption band of water vapor at 183 GHz, for studying the water cycle and energy exchanges in the tropics. The main objective of this mission is to understand the life cycle of convective systems that influence the tropical weather and climate and their role in associated energy and moisture budget of the atmosphere in tropical regions. India also has a prestigious space programme and has launched the INSAT-3D satellite on 26 July 2013 which has an atmospheric sounder for the first time along with improved VHRR imager. NCMRWF (National Centre for Medium Range Weather Forecasting) is regularly receiving these new datasets and also making changes to its Global Data Assimilation Forecasting (GDAF) system from time-to-time to assimilate these new datasets. A well planned strategy involving various steps such as monitoring of data quality, development of observation operator and quality control procedures, and finally then studying its impact on forecasts is developed to include new observations in global data analysis system. By employing this strategy observations having positive impact on forecast quality such as MT-SAPHIR, and INSAT-3D Clear Sky Radiance (CSR) products are identified and being assimilated in the Global Data Assimilation and Forecasting (GDAF) system.
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