PRACA ORYGINALNA
Field-based investigation of near-surface lateral flow in a natural mountainous catchment (Hungary)
Więcej
Ukryj
1
Faculty of Water Sciences, Ludovika University of Public Service, Baja, Hungary
2
National Laboratory for Water Science and Water Security, Faculty of Water Sciences, Ludovika University of Public Service, Baja, Hungary
3
Department of Transport Infratructure and Water Resources Engineering, Széchenyi István University, Győr, Hungary
4
National Laboratory for Water Science and Water Security, Department of Transport Infrastructure and Water Resources Engineering, Széchenyi István University, Győr, Hungary
5
Faculty of Sciences, Institute of Geography and Earth Sciences, University of Pécs, Pécs, Hungary
6
Faculty of Civil Engineering Subotica, University of Novi Sad, Subotica, Serbia
Zaznaczeni autorzy mieli równy wkład w przygotowanie tego artykułu
Data nadesłania: 31-01-2026
Data ostatniej rewizji: 16-03-2026
Data akceptacji: 09-04-2026
Data publikacji online: 17-09-2026
Data publikacji: 17-09-2026
Autor do korespondencji
Dániel Koch
Faculty of Water Sciences, Ludovika University of Public Service, Baja, Hungary
INFORMACJE KLUCZOWE
- Field-based identification of near-surface lateral flow in a forested hillslope
- Combined soil moisture monitoring and controlled infiltration experiment
- Water balance indicates lateral redistribution in near-surface soil layers
- Method supports process-based hillslope runoff interpretation
SŁOWA KLUCZOWE
DZIEDZINY
STRESZCZENIE
Aim of the study:
Near-surface lateral flow (interflow) is an important component of runoff generation in hilly catchments; however, its direct identification in the field remains methodologically challenging. In many hydrological studies, this process is inferred indirectly from hydrograph analysis or numerical modelling, while field-based observations linking soil moisture dynamics, soil stratification, and event-based water balance are scarce.
This study presents results from a small, forested hillslope catchment and aims to identify near-surface lateral flow using a combined, measurement-oriented field approach.
Material and methods:
Multi-depth soil moisture monitoring under undisturbed soil conditions was integrated with a controlled, plot-scale rainfall-infiltration experiment, enabling joint interpretation of vertical soil water storage dynamics and event-based water balance components.
Results and conclusions:
The measurements showed rapid wetting in the upper soil layers, while deeper layers exhibited delayed and attenuated responses. Event-based water balance calculations indicated that a substantial fraction of the applied water could not be detected in vertical soil water storage changes within the monitored profile, pointing to lateral redistribution within the near-surface soil layers.
The results demonstrate that the applied measurement concept is effective for field-scale identification of near-surface lateral flow using indirect but physically interpretable indicators. The study highlights the importance of combining multi-depth soil moisture monitoring with controlled infiltration experiments to improve process-based understanding and representation of runoff generation mechanisms in forested hillslope catchments.