Quantifying preferential flow occurrence in dependence of land cover on the southern slopes of Mount Kilimanjaro, Tanzania

Loading...
Thumbnail Image

Date

Advisors/Reviewers

Further Contributors

Contributing Institutions

Publisher

Journal Title

Journal ISSN

Volume Title

Publisher

Quotable link

DOI:
https://doi.org/10.22029/jlupub-21342

Abstract

Study regions: This study examined preferential flow occurrence and patterns in eight ecosystem types on the southern slopes of Mount Kilimanjaro in Tanzania. Study Focus: We analyzed continuous soil moisture content measured in three soil depths and rainfall data at 1-h resolution from January 2022 to August 2023. After a separation and clustering of rainfall events we assessed the dynamics of soil moisture responses. The sequence and timing of soil moisture changes informed about the occurrence of preferential versus sequential (matrix) flow. New hydrological insights for the Region: The results showed that the frequency of occurrence of preferential flow events were notably high in Erica forest (81.6 %), montane forest (26.4 %), and Ocotea forest (30.1 %), highlighting rapid subsurface water movement and potential for groundwater recharge. Other land covers such as disturbed Ocotea forest, grassland and maize indicated more uniform flow dynamics, which may favor surface runoff and increased soil erosion. We found that rainfall depth, duration and intensity are important factors that influence preferential flow. Additionally, the level of initial soil moisture also played a role in preferential flow occurrence, with optimal initial soil moisture levels between 35 % and 45 %. Both, very dry and very wet soil conditions were less favorable for preferential flow occurrence. These findings have important implications for understanding subsurface water movements and managing water resources in both natural and disturbed ecosystems.

Link to publications or other datasets

Description

Notes

Original publication in

Journal of hydrology. Regional studies 58 (2025), 102215

Original publication in

Anthology

Forschungsdaten

Series

Citation