首页> 外文会议>Geoscience and Remote Sensing, 1997. IGARSS '97. Remote Sensing - A Scientific Vision for Sustainable Development., 1997 IEEE International >Results of satellite and in-situ remote sensing measurement and modeling studies of Arctic sea ice which support the monitoring of changes in the global climate
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Results of satellite and in-situ remote sensing measurement and modeling studies of Arctic sea ice which support the monitoring of changes in the global climate

机译:北极海冰的卫星和原位遥感测量与建模研究的结果,这些数据有助于监测全球气候的变化

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Coordinated satellite, in situ monitoring, and theoretical modeling studies of Arctic sea ice have been supported by both the Office of Naval Research and the National Aeronautic and Space Administration over the last 2 decades. Application of the results from these efforts is being applied to the monitoring of changes in the global climate. Two geophysical parameters are now retrieved on an operational basis: the extent of ice covered waters, and the fraction of multiyear ice, first year ice and open water. Efforts are on-going to increase the number of ice type categories and to invert signal statistics (e.g., emission and backscatter) to ice thickness. Knowledge of the distribution of ice thickness is critical to improving the ability to directly measure a geophysical response in the polar regions due to small changes in the global climate.
机译:在过去的20年中,海军研究办公室和美国国家航空航天局共同支持了北极海冰的协调卫星,原位监测和理论建模研究。这些努力成果的应用正在被用于监测全球气候变化。现在,在操作上可以检索到两个地球物理参数:覆冰水域的范围,以及多年制冰,第一年制冰和开阔水的比例。正在努力增加冰类型类别的数量,并将信号统计数据(例如,发射和反向散射)转换为冰的厚度。由于全球气候的微小变化,了解冰厚度的分布对于提高直接测量极地地区地球物理响应能力的能力至关重要。

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