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首页> 外文期刊>Journal of Glaciology >Surging, accelerating surface lowering and volume reduction of the Malaspina Glacier system, Alaska, USA, and Yukon, Canada, from 1972 to 2006
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Surging, accelerating surface lowering and volume reduction of the Malaspina Glacier system, Alaska, USA, and Yukon, Canada, from 1972 to 2006

机译:1972年至2006年间,美国阿拉斯加和加拿大育空地区的Malaspina冰川系统在澎,、加速地表下降和体积减小

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摘要

Near-concurrent surges and multi-decadal surface-elevation changes on the Malaspina Glacier system Alaska, USA, and Yukon, Canada, were investigated using digital elevation models and laser altimetry from airborne and space-borne sensors. Surface-elevation changes on Seward Lobe in two time periods support a hypothesis of moraine folding by a mechanism of sequential surges alternating from southeast to south-southwest. The near-concurrent surges of Agassiz, Lower Seward and Marvine glaciers support a hypothesis of englacial water storage being a critical factor of surging. Acceleration of area-average surface lowering on the piedmont glaciers occurred, from 1.5 +/- 0.1 m a(-1) between 1972 and 1999 to 2.3 +/- 0.3 m a(-1) between 1999 and 2002. On the western half of Upper Seward Glacier, above 1600 m, acceleration of surface lowering occurred from 2000 to 2003 relative to that from 1976 to 2000, indicating an effect from the surge of Lower Seward Glacier. From 2003 to 2006, the rate of surface lowering on Upper Seward Glacier has moderated back to the pre-2000 rate, indicating a recovery of surface elevation following the surge. From 1972 to 2002, the Malaspina Glacier system lost 156 +/- 19 km(3) (ice equivalent) on an area of 3661 km(2).
机译:使用数字高程模型和来自机载和星载传感器的激光测高仪,研究了美国阿拉斯加Malaspina冰川系统和加拿大育空地区近并发的浪涌和数十年的表面高程变化。在两个时间段内,苏厄德河瓣的表面高程变化通过从东南到西南交替的连续波涌机制支持了冰ora折叠的假说。阿加西,下苏厄德和大理石冰川近乎同时出现的潮涌支持了冰水储量是水涨船高的关键因素的假说。皮埃蒙特冰川的面积平均下降速度加快,从1972年至1999年的1.5 +/- 0.1 ma(-1)到1999年至2002年的2.3 +/- 0.3 ma(-1)。在上西区在1600 m以上的苏厄德冰川上,相对于1976年至2000年,从2000年到2003年出现了地面下降的加速现象,这表明苏厄德冰川下涌的影响。从2003年到2006年,上苏厄德冰川的地表下降速率已经回落到2000年前的水平,这表明在激增之后地表高度恢复了。从1972年到2002年,马拉帕西纳冰川系统在3661公里(2)的面积上损失了156 +/- 19 km(3)(相当于冰)。

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