Sep 2026· Water Science· Vol 40· 0 citations· 42 references
Abstract
This study evaluates the sensitivity of soil parameters used for soil stratification in the variable infiltration capacity (VIC) hydrological model and their influence on water balance components under contrasting hydro-climatic conditions. The selected parameters include b-infilt, which defines the shape of the infiltration curve; Ds, the fraction of maximum baseflow velocity; and Ws, the fraction of maximum soil moisture at which non-linear baseflow begins. The Malaprabha catchment was selected as the study area, considering a rainfall deficit year (2001) and a rainfall surplus year (2005). Three representative land cover–soil combinations were analyzed: clayey soil with forest cover, clayey soil with agricultural cover, and loamy soil with agricultural cover. Sensitivity analysis was performed using the Relative Sensitivity Index (RSI). Results show that runoff and evapotranspiration are highly responsive to b-infilt (RSI: 0.01–0.79), while Ds strongly influences baseflow (RSI: 0.08–0.93). In contrast, Ws affects both runoff and baseflow, exhibiting a direct relationship with runoff and an inverse relationship with baseflow (RSI: 0–1). The study reveals greater parameter sensitivity under unsaturated soil conditions and provides new insights into the differential response of VIC soil parameters across rainfall regimes and land cover–soil combinations, supporting improved model calibration and hydrological simulations.
The movement of water into soil is a critical process influencing irrigation efficiency, infiltration processes, groundwater recharge, soil moisture availability, and sustainable agricultural production. While soil characteristics have traditionally been regarded as the principal factors controlling infiltration, the i...
K. Kalu, C. Egwuonwu, N. Nwakuba· Engineering Research Journal· 0 citations
Effective rainfall (
P
eff
) is an important parameter in irrigation requirement estimation and water management; however, current estimation methods still exhibit substantial deviations under different climatic conditions. This study evaluates the performance of three
P
eff
estimation...
P. Nguyen, Minh Quang Nguyen· Journal of irrigation and dr...· 0 citations
Aim of the study: Forest vegetation exerts a significant influence on the physical and chemical characteristics of brown forest soils in transitional climate zones. Among soil physical properties, the infiltration rate (IR) is a key indicator of soil-water interactions, hydrological functioning, and ecosystem stability...
Seval Sünal Kavaklıgil, Ülkü Yılmaz· Kastamonu University Journal...· 0 citations
Accurate estimation of irrigation water use is essential for agricultural water accounting and water-resource allocation in large irrigated districts, yet existing statistics are usually available only as aggregated administrative totals and cannot adequately characterize seasonal and spatial differences in field-appli...
Siyang Cai, Hui-Xiao Wang, Guan-Hang Sui et al.· Sustainability· 0 citations
This study evaluates the hydrological behavior and future water availability of the Karnali basin under changing climatic conditions using a distributed hydrological modeling approach. Despite the basin’s importance for water resources and hydropower development in Nepal, there is no significant study of the relative c...
Monsoon-dominated river basins are increasingly vulnerable to rainfall variability, resulting in enhanced runoff and dry-season water stress. This study evaluated the effectiveness of land management practices (LMPs) in improving baseflow, soil moisture persistence, and low-flow resilience in the Seonath River Basin,...
M. D. Ghongade, M. K. Verma, C. K. Singh· Water Practice & Technol...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.