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首页> 外文期刊>Proceedings of the Geologists' Association >Paraglacial fluvial landscape change in a continuous permafrost environment around the 'Twin Creeks' catchment, Banks Island, western Canadian Arctic
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Paraglacial fluvial landscape change in a continuous permafrost environment around the 'Twin Creeks' catchment, Banks Island, western Canadian Arctic

机译:加拿大西部北极地区班克斯岛“双溪”流域周围连续多年冻土环境中的冰川期河流景观变化

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摘要

Following Late Wisconsin glaciation of southwest Banks Island, four stages of landscape change are reconstructed for a small (c. 2 km(2)) tundra catchment draining a south facing slope in an environment underlain by continuous permafrost. Initially, during deglaciation, glaciolacustrine silts and sands were deposited on a proximal slope underlain by till (Unit A). Subsequently a cyclic sub-aerial fluvial erosional-depositional system developed. First, an alluvial fan aggraded unconformably on Unit A with penecontemporaneous growth of ice and sand wedges (Unit B). Second, deep incision of the fan created a network of steep-sided flat bottomed channels. Third, wetland fens developed on the channel floors and peats with a sandy aeolian component aggraded and largely infilled the channels (Unit C). Synchronously, on the interfluves a soil catena developed under a warmer climate in the early Holocene. This was later buried by coversands (Unit D). Fourth, in the late Holocene, entrenchment recurred and currently fluvial processes are both exhuming and extending the first phase channel networks. A combination of climate and vegetation cover changes appears to control the pattern of geomorphological process responses. (C) 2014 The Geologists' Association. Published by Elsevier Ltd. All rights reserved.
机译:在西南班克斯岛的威斯康星州晚期冰川化之后,为一个小的(约2公里(2))苔原集水区重建了四个阶段的景观变化,该苔原集水区在连续多年冻土所掩盖的环境中向南倾斜。最初,在冰消过程中,冰川湖淤泥和沙子沉积在下垫层的近端斜坡上(单元A)。随后,开发了一种循环式的地下河道冲蚀沉积系统。首先,冲积扇在A单元上不均匀地积聚,同时冰楔和沙楔(B单元)同时生长。其次,风扇的深切口形成了一个陡边平底通道的网络。第三,湿地在河道底和泥炭上发育,沙质风沙成分被聚集并大量填充河道(C单元)。同时,在全新世早期,气候变暖的情况下,土壤间的土壤连通性也逐渐增强。后来被掩埋物掩埋(D单元)。第四,在全新世晚期,纠缠再次发生,目前的河流过程正在挖掘和扩展第一阶段的渠道网络。气候和植被覆盖变化的结合似乎可以控制地貌过程响应的模式。 (C)2014地质学家协会。由Elsevier Ltd.出版。保留所有权利。

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