Moisture-dependent erodibility and flooding potential of alluvial clay and peat soils in Selangor, Malaysia

Study region This study focuses on the Quaternary alluvial plains of Selangor, Malaysia. Flood-driven erosion in these urbanizing tropical monsoon catchments remains poorly understood despite high vulnerability to interacting hydraulic forces, rainfall, and varying soil moisture. Study focus Controlled flume experiments evaluated cohesive clay and peat soils under three rainfall intensities (16, 42, 105 mm/h), three slopes (0°, 15°, 30°), and five moisture levels (0%–40%). Measured detachment rates and excess-shear metrics, examined by principal component analysis, identified a primary hydraulic forcing axis and a secondary moisture-influenced soil-state axis for precise determination of sediment transport control. New hydrological insights for the region The soils display distinct behaviours with important hydrological implications. Dry clay is highly erodible with a critical shear stress of 8.02 Pa and detaches 1.3 times faster than dry peat. Above 30% moisture, mineral swelling and matrix sealing increase clay thresholds to 17.50 Pa, reducing erodibility by two orders of magnitude and detachment by 11.5-fold. This response alters runoff dynamics during intense rainfall. Conversely, peat thresholds increase from 19.43 Pa under dry conditions to 44.11 Pa under wet conditions, though erodibility declines only modestly. This trend promotes continuous fibrous sloughing and greater surface water retention than clay, potentially contributing to prolonged inundation and elevated sediment transport. These empirical parameters support process based geomorphic models and enhance the understanding of flooding potential in tropical climates.

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Publication Details

Journal
Journal of Hydrology Regional Studies
Published
2026-08-25
DOI
https://doi.org/10.1016/j.ejrh.2026.103901
Primary Topic
Coastal wetland ecosystem dynamics
Type
article
Field-Weighted Citation Impact
0.00

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article

Moisture-dependent erodibility and flooding potential of alluvial clay and peat soils in Selangor, Malaysia

Nor Shahidah Mohd Nazer, Azlan Shah Nerwan Shah, Zulaikha Nabila Ahmad Pua'ad, Anis Syazwani Jamsus et al.
Journal of Hydrology Regional Studies
Coastal wetland ecosystem dynamics
article

Moisture-dependent erodibility and flooding potential of alluvial clay and peat soils in Selangor, Malaysia

Nor Shahidah Mohd Nazer, Azlan Shah Nerwan Shah, Zulaikha Nabila Ahmad Pua'ad, Anis Syazwani Jamsus, Nabila Nurina, Mohd Hariri Arifin
article en

Abstract

Study region This study focuses on the Quaternary alluvial plains of Selangor, Malaysia. Flood-driven erosion in these urbanizing tropical monsoon catchments remains poorly understood despite high vulnerability to interacting hydraulic forces, rainfall, and varying soil moisture. Study focus Controlled flume experiments evaluated cohesive clay and peat soils under three rainfall intensities (16, 42, 105 mm/h), three slopes (0°, 15°, 30°), and five moisture levels (0%–40%). Measured detachment rates and excess-shear metrics, examined by principal component analysis, identified a primary hydraulic forcing axis and a secondary moisture-influenced soil-state axis for precise determination of sediment transport control. New hydrological insights for the region The soils display distinct behaviours with important hydrological implications. Dry clay is highly erodible with a critical shear stress of 8.02 Pa and detaches 1.3 times faster than dry peat. Above 30% moisture, mineral swelling and matrix sealing increase clay thresholds to 17.50 Pa, reducing erodibility by two orders of magnitude and detachment by 11.5-fold. This response alters runoff dynamics during intense rainfall. Conversely, peat thresholds increase from 19.43 Pa under dry conditions to 44.11 Pa under wet conditions, though erodibility declines only modestly. This trend promotes continuous fibrous sloughing and greater surface water retention than clay, potentially contributing to prolonged inundation and elevated sediment transport. These empirical parameters support process based geomorphic models and enhance the understanding of flooding potential in tropical climates.

Journal of Hydrology Regional StudiesVol. 67
Malaysian Nuclear Agency (MY), National University of Malaysia (MY)
Ministry of Higher Education, Malaysia, Universiti Kebangsaan Malaysia
Sustainable cities and communities
Openalex Percentile: Top 10%
Coastal wetland ecosystem dynamics
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