Influence of infiltration and soil moisture models on urban hydrological model reliability

dc.contributor.author Batunonya, Margaret
dc.date.accessioned 2026-08-31T08:00:36Z
dc.date.available 2026-08-31T08:00:36Z
dc.date.issued 2026-06-26
dc.description A dissertation submitted to the College of Engineering, Design, Art and Technology in partial fulfilment of the requirements for the award of a degree of Bachelor of Science in Civil Engineering of Makerere University.
dc.description.abstract This study investigates the influence of infiltration and soil moisture models on the reliability of urban hydrological models, focusing on guiding the selection of Blue-Green Infrastructure (BGI) for stormwater management. Infiltration models such as Horton and Green-Ampt, combined with dynamic representation of soil moisture, fundamentally affect predictions of runoff generation and flood risks in urban catchments. Given that the Kinawataka catchment contains compacted urban soils, heterogeneous pervious–impervious patterns, and frequently saturated low-lying areas, accurately modelling infiltration and soil moisture becomes essential for improving flood prediction reliability. The results from these hydrological models provide critical insights that help in choosing appropriate BGI solutions by indicating how infiltration and soil moisture conditions impact urban runoff and flood mitigation potential. This approach supports optimized BGI selection to enhance urban flood resilience and sustainable water management strategies. The study aims to enhance the understanding of runoff and infiltration processes within the Kinawataka catchment by conducting rainfall simulations and applying hydrological modelling techniques. This research provides a novel contribution by jointly evaluating infiltration models and soil moisture dynamics specifically for an urban Ugandan catchment, an aspect that has received limited attention in previous studies. The research will generate reliable data to support the strategic selection and design of Blue-Green Infrastructure (BGI) interventions that are appropriate for the local urban context. Ultimately, by clarifying how infiltration and soil moisture representations influence hydrological model reliability, the study contributes to improving flood forecasting, model calibration, and urban flood resilience in data-scarce and rapidly urbanizing cities such as Kampala.
dc.description.sponsorship PRIVATE
dc.identifier.citation Batunonya, M. (2026). Influence of infiltration and soil moisture models on urban hydrological model reliability. (Unpublished undergraduate dissertation). Makerere University, Kampala, Uganda.
dc.identifier.uri https://dissertations.mak.ac.ug/handle/20.500.12281/22357
dc.language.iso en
dc.publisher Makerere University
dc.title Influence of infiltration and soil moisture models on urban hydrological model reliability
dc.type Other
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