Tracking Sediment Transport Through Miage Glacier, Italy, Using a Lagrangian Approach With Luminescence Rock Surface Burial Dating of Englacial Clasts

IF 3.5 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Audrey Margirier, Julien Brondex, Ann V. Rowan, Christoph Schmidt, Vivi K. Pedersen, Benjamin Lehmann, Leif S. Anderson, Remy Veness, C. Scott Watson, Darrel Swift, Georgina E. King
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Abstract

Constraining the timescales of sediment transport by glacier systems is important for understanding the processes controlling sediment dynamics within glacierized catchments, and because the accumulation of supraglacial sediment influences glacier response to climate change. However, glacial sediment transport can be difficult to observe; sediment can be transported englacially, subglacially, supraglacially or at the ice margins, and may be stored temporarily on headwall slopes or within moraines before being (re-)entrained and transported by glacier ice. This study is a proof of concept of the use of luminescence rock surface burial dating to establish rates of englacial sediment transport. Our novel approach combines luminescence rock surface burial dating of englacial clasts with an ice-flow model that includes Lagrangian particle tracking to quantify rates of sediment transport through the Miage Glacier catchment in the Italian Alps. Luminescence rock surface burial ages for seven samples embedded in the near-surface ice in the ablation area range from 0.0 ± 1.0 to 4.7 ± 0.3 ka and are consistent with the ice-flow model results. Our results show that the transport durations of individual clasts vary by an order of magnitude, implying rapid clast transport near the glacier surface and longer transport histories for clasts transported lower in the ice column. In some cases, clasts were stored on the headwalls or within ice-marginal moraines for several thousand years before being englacially transported. The results illustrate the different routes by which glaciers transport sediment and provide the first direct measurements of englacial sediment transport duration.

Abstract Image

用拉格朗日方法追踪意大利Miage冰川中沉积物的运移与英格兰碎屑的发光岩石表面埋藏定年
限制冰川系统输沙的时间尺度对于理解控制冰川流域泥沙动力学的过程非常重要,因为冰川上沉积物的积累影响冰川对气候变化的响应。然而,冰川沉积物的移动很难观测到;沉积物可以在冰川上、冰川下、冰川上或冰缘运输,在被冰川冰(再)夹带和运输之前,可能暂时储存在顶部的斜坡上或冰碛内。这项研究证明了利用发光岩石表面埋藏定年来确定冰川沉积物运输速率的概念。我们的新方法结合了冰川碎屑的发光岩石表面埋藏定年法和冰流模型,其中包括拉格朗日粒子跟踪,以量化意大利阿尔卑斯山Miage冰川集水区的沉积物运输速率。消融区近地表冰中7个样品的发光岩石表面埋藏年龄在0.0±1.0 ~ 4.7±0.3 ka之间,与冰流模型结果一致。研究结果表明,单个碎屑的搬运时间在一个数量级上存在差异,表明碎屑在冰川表面附近的搬运速度较快,而在冰柱下部搬运的碎屑的搬运历史较长。在某些情况下,碎屑被储存在顶壁上或冰缘冰碛中数千年,然后才被完整地运送出去。研究结果阐明了冰川输沙的不同途径,并提供了冰川输沙持续时间的第一次直接测量。
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来源期刊
Journal of Geophysical Research: Earth Surface
Journal of Geophysical Research: Earth Surface Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
6.30
自引率
10.30%
发文量
162
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