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Radar remote sensing proposed for monitoring freeze-thaw transitions in boreal regions

机译:建议用于监测北方地区冻融过渡的雷达遥感

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摘要

New research is finding that satellite-based radar remote sensing techniques are particularly well-suited for quantifying the transition of remote boreal regions from a frozen to a thawed condition. The implications for studying global warming are far reaching. If the timing or areal extent of this freeze/thaw transition were to change significantly, measurable changes in boreal climate, hydrology, and biogeochemistry would result.Abrupt transition from frozen to thawed conditions occurs each year over roughly 50 million km2of the Earth\u27s remote terrestrial surface at latitudes above 40°N. Radar remote sensing works well to capture this transition because of the way electromagnetic radiation at radar wavelengths interacts with polar water molecules in solid and liquid states. Also, radar has the substantial advantages at high latitudes of both penetrating through clouds and not requiring solar illumination of the land surface.
机译:新的研究发现,基于卫星的雷达遥感技术特别适合于量化偏远的北方地区从冻结状态到解冻状态的转变。研究全球变暖的意义是深远的。如果这种冻结/融化转变的时机或范围发生显着变化,则将导致北方气候,水文学和生物地球化学的可测量变化。每年在大约5000万平方公里的地球偏远地区,从冻结状态突然转变为融化状态高于40°N的纬度的地面。雷达遥感很好地捕获了这种转变,因为雷达波长的电磁辐射与固态和液态的极性水分子相互作用的方式。同样,雷达在高纬度具有穿透云层且不需要太阳照亮地面的实质优势。

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