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Geomorphological consequences of a glacier advance across a paraglacial rock avalanche deposit

机译:冰川期穿越冰川期雪崩沉积的地貌学后果

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摘要

Glacial reworking of paraglacial rock slope sediment has been inferred from long-deglaciated terrains to contribute significantly to glacial sediment transfer. At Feegletscher, Switzerland, we provide the first description of the geomorphological consequences of glacier advance across paraglacial rock avalanche sediment This produced a small arcuate end moraine that encloses a zone of hummocky debris. The sedimentology of these landforms is conditioned by rock avalanche sediment and can be differentiated from purely glacial sediments, indicating that the contribution of glacially reworked rock avalanche debris may be recognisable in deglaciated terrain. Remarkably, much of the overridden rock avalanche debris has maintained its angularity and delicate brecciation features, despite up to 40 years of glacial action. We suggest that the surface 'carapace facies' of the rock avalanche deposit, comprising large openwork blocks, limited the effectiveness of glacial erosion processes. The carapace facies will have resisted significant erosion by the relatively thin glacier because of its high shear strength and because it was able to transmit subglacial meltwater efficiently. Thus, enhanced debris transfer associated with reworking of paraglacial rock avalanche sediment should not necessarily be expected during the initial stages of glacier advance.
机译:从长期冰雪覆盖的地形中推断出冰川副岩坡沉积物的冰川修复,这对冰川沉积物的转移起了重要作用。在瑞士的Feegletscher,我们对冰川越过冰川期岩石雪崩沉积物的地貌学后果进行了首次描述。这产生了一个小的弧形末端冰end,它包围了一个山形碎屑区。这些地貌的沉积学是由岩石雪崩沉积物决定的,并且可以与纯冰川沉积物区分开,这表明在冰川融化的地形中可以识别出冰川重做的岩石雪崩碎片的贡献。值得注意的是,尽管进行了长达40年的冰川活动,但大部分被覆盖的岩石雪崩碎片仍保持了其棱角分明和微弱的角砾化特征。我们认为岩石雪崩沉积物的表面“甲壳相”(包括大型的透雕块)限制了冰川侵蚀过程的有效性。甲壳相将具有较高的抗剪强度,并且能够有效地传送冰川下的融水,因此可以抵抗相对薄的冰川的严重侵蚀。因此,在冰川发展的初期阶段,不一定需要预期与冰川期岩石雪崩沉积物的再加工有关的碎屑转移会增加。

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