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NOAA NESDIS global multisensor automated satellite-based snow mapping system and products

机译:NOAA NESDIS全球多传感器自动化卫星雪地测绘系统和产品

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Accurate, timely and spatially detailed information on the snow cover distribution and on the snow pack properties is needed in various research and practical applications including numerical weather prediction, climate modeling, river runoff estimates and flood forecasts. Owing to the wide area coverage, high spatial resolution and short repeat cycle of observations satellites present one of the key components of the global snow and ice cover monitoring system. The Global Multisensor Automated Snow and Ice Mapping System (GMASI) has been developed at the request of NOAA National Weather Service (NWS) and NOAA National Ice Center (NIC) to facilitate NOAA operational monitoring of snow and ice cover and to provide information on snow and ice for use in NWP models. Since 2006 the system has been routinely generating daily snow and ice cover maps using combined observations in the visible/infrared and in the microwave from operational meteorological satellites. The output product provides continuous (gap free) characterization of the global snow and ice cover distribution at 4 km spatial resolution. The paper presents a basic description of the snow and ice mapping algorithms incorporated in the system as well as of the product generated with GMASI. It explains the approach used to validate the derived snow and ice maps and provides the results of their accuracy assessment.
机译:在包括数值天气预报,气候建模,河流径流估算和洪水预报的情况下,需要有关雪覆盖分布和雪覆盖物性的准确,及时和空间的详细信息,包括数值天气预报,气候建模,河流径流估算和洪水预测。由于广域覆盖范围广,观测卫星的高空间分辨率和短重复周期呈现了全球雪和冰覆盖监测系统的一个关键部件之一。全球多传感器自动化雪和冰映射系统(GMASI)是由NOAA国家天气服务(NWS)和NOAA国家冰中心(NIC)的要求制定的,以促进NOAA对雪和冰盖的操作监测,并提供有关雪的信息和冰用于NWP模型。自2006年以来,该系统已经在操作气象卫星中使用了可见/红外线和微波的组合观察,常规地产生日常雪和冰覆盖图。输出产品以4公里的空间分辨率提供全球雪和冰盖分布的连续(间隙)表征。本文介绍了在系统中掺入的雪和冰映射算法以及用GMASI产生的产品的基本描述。它解释了用于验证衍生的雪和冰地图的方法,并提供其准确性评估的结果。

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