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Assessing the role of thermal erosion in channel deformation processes in rivers of permafrost zone

机译:评估热侵蚀在多年冻土区河流河流变形过程中的作用

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摘要

The study is focused on the deformations caused by the impact of water flow in a river channel composed of melt-able permafrost rocks. It is based on the results of laboratory and mathematical simulation. The results of numerical calculations are compared with data of laboratory and field observations. The study shows that a comprehensive and adequate model of river channel deformations should take into account not only ablation, but also other factors, including heat transfer in the soil, sediment transport, and bank slope collapses. Numerical experiments with an improved mathematical model, applied to long time intervals, have shown that the differences between the averaged deformations, calculated by a model of ablation alone, i.e., ignoring bank slope collapses and sediment transport, and a comprehensive model can be considerable. Experiments in a hydraulic flume were good enough to reproduce the effect of delayed collapse, consisting in nonsimultaneous impacts of channel-forming rock melting and a freshet.
机译:该研究专注于由河流通道中的水流的影响引起的变形,由熔化的永久冻土岩体组成。它是基于实验室和数学模拟的结果。将数值计算结果与实验室和现场观察的数据进行比较。该研究表明,河流渠道变形的全面和足够的河流变形应考虑到烧蚀,而且还要考虑到土壤,沉积物运输和银行坡度坍塌的其他因素用改进的数学模型应用于长时间间隔的数值实验表明,通过单独的消融模型计算的平均变形之间的差异,即忽略了银行斜率塌陷和沉积物传输,以及综合模型可以相当可观。液压水槽中的实验足以使延迟崩溃的效果繁殖,包括渠道形成岩石熔化和新鲜的无菌影响。

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