4.6 Article

Factors Controlling Contemporary Suspended Sediment Yield in the Caucasus Region

期刊

WATER
卷 13, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/w13223173

关键词

sediment yield; suspended sediment; Caucasus; soil erosion; denudation rates

资金

  1. Russian Science Foundation [19-17-00181]
  2. Institute of Geography, Russian Academy of Science [01482019-0005]
  3. Laboratory of soil erosion and fluvial processes, Faculty of Geography, Lomonosov Moscow State University [121051100166-4]
  4. Russian Science Foundation [19-17-00181] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

This paper discusses the joint impact of various catchment complexity factors on suspended sediment yield in the Caucasus region, revealing clear spatial patterns and the importance of topographic factors and land cover types in influencing sediment yield.
This paper discusses the joint impact of catchment complexity in topography, tectonics, climate, landuse patterns, and lithology on the suspended sediment yield (SSY, t km(-2) year(-1)) in the Caucasus region using measurements from 244 gauging stations (GS). A Partial Least Square Regression (PLSR) was used to reveal the relationships between SSY and explanatory variables. Despite possible significant uncertainties on the SSY values, analysis of this database indicates clear spatial patterns of SSY in the Caucasus. Most catchments in the Lesser Caucasia and Ciscaucasia are characterized by relatively low SSY values (< 100-150 t km(-2) year(-1)), the Greater Caucasus region generally have higher SSY values (more than 150-300 t km(-2) year(-1)). Partial correlation analyses demonstrated that such proxies of topography as height above nearest drainage (HAND) and normalized steepness index (K-sn) tend to be among the most important ones. However, a PLSR analysis suggested that these variables' influence is likely associated with peak ground acceleration (PGA). We also found a strong relationship between land cover types (e.g., barren areas and cropland) and SSY in different elevation zones. Nonetheless, adding more gauging stations into analyses and more refined characterizations of the catchments may reveal additional trends.

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