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首页> 外文期刊>Annals of Glaciology >Ice-sheet elevation changes caused by variations of the firn compaction rate induced by satellite-observed temperature variations (1982–2003)
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Ice-sheet elevation changes caused by variations of the firn compaction rate induced by satellite-observed temperature variations (1982–2003)

机译:卫星观测的温度变化引起的压实速率变化引起的冰盖高程变化(1982–2003)

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摘要

Changes in the surface elevation of the Greenland and Antarctic ice sheets and ice shelves caused by variations in the rate of firn compaction are calculated with a time-dependent firn densification model driven by two decades (1982–2003) of satellite-observed monthly surface temperatures. The model includes the effects of melting and refreezing, both the direct changes in density and the subsequent effects on the densification rate. As previously shown, the temperaturedependent rate of densification is largest in summer, but changes in winter temperatures also have a significant effect. Over the last decade, climate warming has enhanced the rate of compaction and lowered the average surface elevation of Greenland by 1.8cma–1 and most of West Antarctica by 1.9cma–1. In East Antarctica, a small cooling raised the average surface elevation by 0.14cma–1.
机译:利用由时变的密实密度模型,由由卫星观测的二十年(1982-2003年)驱动的随时间变化的密实密度模型,计算出格陵兰和南极冰盖和冰架表面高程的变化,这些随时间变化的密实密度模型。该模型包括熔化和重新冻结的影响,密度的直接变化以及对致密化速率的后续影响。如前所述,在夏季,致密化的温度依赖性速率最大,但是冬季温度的变化也具有显着影响。在过去的十年中,气候变暖提高了压实率,使格陵兰的平均地表海拔降低了1.8cma-1,西部南极洲的大部分地区降低了1.9cma-1。在南极东部地区,少量的冷却使平均表面高度增加了0.14cma-1。

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