Rainfall and Runoff Characteristics of Alluvial Gullies in the Upper Burdekin Catchment

Pelgay, Phuntsho, Koci, Jack, Jarihani, Ben, Smithers, Scott, and Buono, Luke Francis (2025) Rainfall and Runoff Characteristics of Alluvial Gullies in the Upper Burdekin Catchment. Water, 17 (21). 3071.

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Abstract

Gully erosion is a major driver of land degradation globally, particularly in semi-arid regions where it is fundamentally controlled by rainfall and runoff dynamics. Understanding how rainfall translates into runoff in gullied landscapes is crucial for predicting erosion processes and modelling runoff to inform land management strategies. In this study, rainfall-runoff analysis was conducted using high-resolution rainfall and runoff data from intensely monitored alluvial gullies in the semi-arid regions of northern Australia. Runoff responses were strongly seasonal, with flashy but low-volume flows during the early wet season (October–November) and prolonged, high-discharge events during peak rainfall months (December–March). Antecedent soil moisture had a limited influence on runoff generation, likely due to rapid wetting–drying cycles and shallow infiltration depths. Notably, rainfall-runoff behavior diverged with catchment-to-gully area ratio (A<inf>ca</inf>): linear runoff to rainfall responses were observed where gullies were eroded to the catchment limit (A<inf>ca</inf> ≈ 1) whereas high-A<inf>ca</inf> systems (A<inf>ca</inf> > 5) exhibited threshold, stepwise behavior with upslope contributions activating at ~26 mm event rainfall. Field infiltration tests showed upslope catchment infiltration capacity was ~70% higher than on gully floors (~36 vs. 21 mm h<sup>−1</sup>). This indicates greater near-surface storage and delayed upslope runoff, consistent with an activation threshold for upslope contributions. Mean rainfall–runoff ratios were higher in low-A<inf>ca</inf> gullies (≈0.52–0.68) than in high-A<inf>ca</inf> systems (≈0.40–0.46). These findings have implications for rainfall-runoff modelling, process-based understanding of gully erosion and gully management in semi-arid environments.

Item ID: 89925
Item Type: Article (Research - C1)
ISSN: 2073-4441
Keywords: alluvial gullies, catchment-to-gully area ratio, Hortonian flow, management, rainfall-runoff relationship, saturation-excess flow, segmented linear regression
Copyright Information: © 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Date Deposited: 29 Jul 2026 05:50
FoR Codes: 37 EARTH SCIENCES > 3707 Hydrology > 370704 Surface water hydrology @ 100%
SEO Codes: 18 ENVIRONMENTAL MANAGEMENT > 1803 Fresh, ground and surface water systems and management > 180308 Surface water quantification, allocation and impact of depletion @ 100%
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