4.6 Article

Soil Moisture Behavior in Relation to Topography and Land Use for Two Andean Colombian Catchments

期刊

WATER
卷 13, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/w13111448

关键词

land uses; soil moisture behavior; pedon; microcatchment; hydropedology

资金

  1. regional environmental authority CVC
  2. regional environmental authority COR-TOLIMA
  3. Universidad del Tolima

向作者/读者索取更多资源

Understanding the relationship between soil moisture and land use in tropical Andean mountain catchments is crucial for comprehending water fluxes and hydrological dynamics. This study found a connection between soil moisture, precipitation, and land use, with soil moisture showing differences at various scales. The study also highlighted the limitations of the topographic wetness index in predicting soil humidity behavior at the pedon scale.
Understanding the soil moisture behavior in relation to land use in tropical Andean mountain catchments is essential for comprehending water fluxes, ecohydrological relations and hydrological dynamics in this understudied ecosystem. Soils are a key factor of these ecosystems, especially in reference to water level regulation and anthropogenic activities that can alter the interactions, and generate physical, chemical and biological imbalances. In this study, we investigated the relationship between precipitation, soil water content (SWC) and the flow at different pedon scales, and hillslope and microcatchment scales subjected to different land uses. The results showed the relation between the soils uses, topographical conditions and soil moisture at the microcatchment scale. At the pedon scale, soil moisture is higher and with a low variability in depth; high soil moisture content throughout the study period was registered in forest > pasture > coffee agroforestry systems. The topographic wetness index (TWI), despite its adjusted interpretation of the behavior of humidity at the microcatchment scale, is a poor predictor of the behavior of soil humidity at the pedon scale. Pedon water content has a close relation with the precipitation behavior, especially in prolonged dry and humid periods. The soils studied tend to present udic moisture regimes with a dry period of approximately 67 accumulative days per year. The mean flow behavior responds to precipitation and soil moisture behavior at a monthly scale. Understanding the consequences of the land cover changes in relation to soil water behavior, as well as how soil water interacts with the different components of the hydric balance at different scales, allows an understanding of the complex interactions in natural microcatchments under different land use systems.

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