Fluvial Morphology in Different Permafrost Environments—A Review

Quaternary Pub Date : 2024-03-15 DOI:10.3390/quat7010015
Jef Vandenberghe
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Abstract

This review presents a synthesis of the interaction between the hydro-morphological processes on interfluves and channels within fluvial catchments in permafrost regions. Both in modern and ancient permafrost catchments, this integrated landscape is quite diverse because of a variegated extent of frozen ground, density of vegetation cover, snow thickness, and other local factors. Moreover, temporal changes in environmental conditions are expressed in the morphological evolution of catchments. Channel patterns vary between single- and different multi-channel forms while the interfluves show a high diversity ranging from complete stability to intense denudation by surface runoff. It appears that braided channels, despite their high energy, were only significant during short intervals of peak discharge and transported only limited amounts of eroded sediment, while other channel patterns required more subdued annual discharge variability. Further, denudational processes on interfluves were a specific characteristic of landscape evolution during subsequent ice ages, especially in conditions of snow-rich and poorly vegetated, seasonal frost, or discontinuous permafrost resulting in the formation of extended planforms (cryopediments). In contrast, interfluves appeared to be rather stable on continuously frozen soils.
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不同永久冻土环境中的冲积形态--综述
这篇综述综述了永冻土地区河流集水区内水流界面和河道水文形态过程之间的相互作用。由于冻土范围、植被覆盖密度、积雪厚度和其他当地因素的不同,现代和远古永冻土集水区的综合地貌非常多样。此外,环境条件的时间变化也表现在集水区的形态演变上。河道形态既有单一河道形态,也有不同的多河道形态,而河间沟则表现出高度的多样性,既有完全稳定的,也有被地表径流严重冲刷的。看起来,尽管辫状河道具有高能量,但只在短时间的峰值泄洪时才有重要作用,并且只输送有限数量的侵蚀沉积物,而其他河道形态则需要更低的年泄洪量变化。此外,在其后的冰期,尤其是在积雪丰富、植被稀少、季节性霜冻或永久冻土不连续的条件下,水道间的剥蚀过程是地貌演化的一个具体特征,从而形成了延伸的平面地貌(冰冻地貌)。与此相反,在连续冰冻的土壤上,交错地貌似乎相当稳定。
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