北极斯瓦尔巴群岛冰川表面物质平衡和冰流研究:北极斯瓦尔巴群岛冰川表面物质平衡和冰流研究

Mingxing Xu, M. Yan, Jiawen Ren, Songtao Ai, Jiancheng Kang, E. Dongchen
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引用次数: 1

摘要

lauste Lovenbreen和Pedersenbreen冰川位于斯瓦尔巴群岛的Ny-lesund。在第一年(2005/2006)观测的基础上,对两个冰川的表面物质平衡和冰流速度进行了分析,同时对奥斯特洛夫布林的前沿也进行了调查。结果表明:(1)auste Lovenbreen和Pedersenbreen的净质量平衡分别为-0.44和-0.20 m w.e。年消融量分别为-0.99和-0.94 m w.e,相应的ELA分别为478.10和494.87m。(2) auste Lovenbreen和Pedersenbreen是斯瓦尔巴群岛激流型冰川的冰流模式。冰流速度的水平矢量平行于或收敛于两个冰川的中心线,冰流速度在冰川的下部消融区较慢,在冰川的中部和上部相对较快。Lovenbreen的平均、最大和最小冰流速度分别为2.28、3.91和0.81 m·a-1, Pedersenbreen的平均、最大和最小冰流速度分别为6.74、8.13和5.49 m·a-1。冰流速度垂直矢量表明,消融区存在质量损失,随着海拔高度的增加,质量损失减弱,而Lovenbreen高地ELA附近存在质量增加。实际垂直位移符合堆积区向下运动,而消融区向上运动的一般规律。(3) Lovenbreen的锋面以平均21.83 m.a-1的速度后退,最大速度为77.30 m.a-1,最小速度为2.76 m.a-1。
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THE STUDIES OF SURFACE MASS BALANCE AND ICE FLOW ON GLACIERS AUSTRELOVéNBREEN AND PEDERSENBREEN, SVALBARD, ARCTIC: THE STUDIES OF SURFACE MASS BALANCE AND ICE FLOW ON GLACIERS AUSTRELOVéNBREEN AND PEDERSENBREEN, SVALBARD, ARCTIC
The glaciers Austre Lovenbreen and Pedersenbreen are located at Ny-lesund, Svalbard. Based on the observation of first year (2005/2006), surface mass balance and ice flow velocity of both glaciers have been analysed, while the front edge of Austre Lovenbreen has also been surveyed. The results are as following: (1) The net mass balance of Austre Lovenbreen and Pedersenbreen is -0.44 and -0.20 m w.e., respectively. Their annual ablation is -0.99 and -0.94 m w.e., respectively, and corresponding ELA is 478.10 and 494.87m, respectively. (2) Austre Lovenbreen and Pedersenbreen are characterized as ice flow model of surge-type glaciers in Svalbard. The level vectors of ice flow velocity are parallel or converge to the central lines of both glaciers, with slower velocities at the lower ablation area and relatively faster ones at the middle and upper part of glaciers. The mean, maximum and minimum of ice flow velocities on Austre Lovenbreen are 2.28, 3.91 and 0.81 m·a-1, and Pedersenbreen's are 6.74, 8.13 and 5.49 m·a-1. The vertical vectors of ice flow velocity show that there is a mass loss in the ablation area, which weakness with the increase of altitude, while there exists a mass gain near ELA on Austre Lovenbreen. The actual vertical displacement is in accord with the general pattern that motion is downward in the accumulation area, and is, by contrast, upward in the ablation area. (3) The front edge of Austre Lovenbreen has receded at an average rate of 21.83 m.a-1, with maximum 77.30 m.a-1 and minimum 2.76 m.a-1.
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