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Multi-decadal reduction in glacier velocities and mechanisms driving deceleration at polythermal White Glacier, Arctic Canada

机译:冰川速度和机制驾驶减速,北极加拿大驾驶减速

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Annual and seasonal surface velocities measured continuously from 1960 to 1970 at White Glacier, a 14 km long polythermal valley glacier spanning similar to 100-1800 m a.s.l., provide the most comprehensive early record of ice dynamics in the Canadian Arctic. Through comparison with differential GPS-derived velocity data spanning 2012-16, we find reductions in mean annual velocity by 31 and 38% at lower elevations (600 and 400 m a.s.l.). These are associated with decreased internal ice deformation due to ice thinning and reduced basal motion likely due to increased hydraulic efficiency in recent years. At higher elevation (similar to 850 m a.s.l.) there is no detectable change in annual velocity and the expected decrease in internal deformation rates due to ice thinning is offset by increased basal motion in both summer and winter, likely attributable to supraglacial melt accessing a still inefficient subglacial drainage system. Decreases in mass flux at lower elevations since the 1960s cannot explain the observed elevation loss of similar to 20 m, meaning that ice thinning along the glacier trunk is primarily a function of downwasting rather than changing ice dynamics. The current response of the glacier exemplifies steady thinning, velocity slowdown and upstreamretreat of the ELA but, because the glacier has an unstable geometry with considerable mass in the 1300-1500 m elevation range, a retreat of the ELA to >1300 plausible within 25-40 years, could trigger runaway wastage.
机译:年和季节性表面速度从1960年到1970年在白色冰川中持续测量,一个14公里长的聚热谷冰川玻璃,类似于100-1800米A.L.,提供加拿大北极的最全面的早期记录冰动力学。通过与跨越2012-16跨越的差分GPS导出的速度数据进行比较,我们在较低的高度(600和400 m A.L.)下,我们发现平均年度速度的速度减少了31%和38%。由于近几年来,由于冰变薄而导致的内部冰变形,并且由于近年来的液压效率提高,可能降低了基础运动的减少。在高度升高(类似于850米ASL)时,没有可检测的年速度变化,并且由于夏季和冬季的基础运动增加,由于夏季和冬季的基础动作增加,预期的内部变形率的预期降低是抵消效率低下底透射系统。自20世纪60年代无法解释类似于20米的观察到的高度损失以来,较低升高的质量磁通量下降,这意味着沿着冰川躯干的冰变薄主要是剧本而不是改变冰动力学的函数。冰川的电流响应举例说明了浅趋势,速度减速和eLA的上游,因为冰川在1300-1500米的海拔范围内具有相当大的物质,因此在25-内部的粘附性具有相当大的物质。 40年来,可以触发失控的浪费。

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