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首页> 外文期刊>Journal of Glaciology >Glacier velocity and water input variability in a maritime environment: Franz Josef Glacier, New Zealand
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Glacier velocity and water input variability in a maritime environment: Franz Josef Glacier, New Zealand

机译:海洋环境中的冰川速度和水输入的可变性:弗朗兹·约瑟夫冰川,新西兰

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Short-term glacier velocity variations typically occur when a water input is accommodated by an increase in the subglacial water pressure. Although these velocity variations have been well documented on many glaciers, few studies have considered them on glaciers where heavy rain and glacier melt occur year-round. This study investigates the relationship between water inputs and glacier velocity on Franz Josef Glacier, New Zealand. We installed six GNSS stations across the lower glacier during austral summer 2010/11 and one station during summer 2012/13. Glacier velocity remained elevated at all stations for similar to 7 days following large rain events. During diurnal melt events, we find velocity variations in the early afternoon (12:00-16:00) at 600 m a.s.l. and in the late evening (20:00 01:00) at 400 m a.s.l. We hypothesize that the late-evening velocity variations occurred as an upstream region of high subglacial water pressures and accelerated ice motion propagated downstream. This mechanism may also explain the increased longitudinal compression and transverse extension across the lower glacier during speed-up events. Our results indicate that the subglacial drainage system likely decreases in efficiency upstream and that the water input variability can still cause short-term velocity variations despite the large year-round water inputs.
机译:短期冰川速度变化通常发生在冰川下水压升高而适应水输入的情况下。尽管这些速度变化已在许多冰川上得到了充分的记录,但很少有研究认为它们在常年发生大雨和冰川融化的冰川上被考虑。这项研究调查了新西兰弗朗兹约瑟夫冰川的水输入量与冰川速度之间的关系。在2010/11夏季,我们在下冰川上安装了6个GNSS站,在2012/13夏季期间,我们安装了1个站。发生大雨后的7天内,所有站点的冰川速度均保持升高。在昼间融化过程中,我们发现下午凌晨(12:00-16:00)600 m a.s.l.的速度变化。在深夜(20:00 01:00)在400 m a.s.l.我们假设傍晚速度变化发生在高冰川下水压力的上游区域,而加速的冰运动向下游传播。该机制还可以解释在加速事件期间,越过下部冰川的纵向压缩和横向延伸增加。我们的结果表明,冰川下排水系统的上游效率可能降低,尽管全年有大量的水输入,但水输入的可变性仍会引起短期速度变化。

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