A new surface-processes model combining glacial and fluvial erosion

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Abstract

We have developed a new surface-processes model incorporating large-scale fluvial processes, local hill-slope processes and glacial erosion. Ice thickness and velocity are calculated under a shallow-ice approximation. Simulation experiments in fast-growing orogens comparing the efficiencies of fluvial and glacial erosion, where the two are operating simultaneously over several glacial cycles, show that: glacial landscapes can support greater ice masses than fluvial landscapes; glacial valley and lake shapes create a disequilibrium between landform and land-forming process that leads to pulses of high erosion at the end of glacial periods; glacial erosion rates can reach a constant value in a uniformly growing orogen; and glacial erosion is capable of eroding drainage divides when the ice is moderately thick.

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Braun, J., Zwartz, D., & Tomkin, J. H. (1999). A new surface-processes model combining glacial and fluvial erosion. Annals of Glaciology, 28, 282–290. https://doi.org/10.3189/172756499781821797

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