Debris generated by the destruction of houses in a floodplain can cause damage to structures in the way of floodwaters due to the impact of different hydraulic forces. In this study, the impacts of different hydraulic forces, including impact force, hydrostatic force, hydrodynamic force, fluid force index (FFI) and moment index (MI), on house models of different porosity were examined. The impacts of these hydraulic forces on house models for different types of debris (rectangular and cylindrical debris) were also investigated. The results showed that type D5 cylindrical debris (with the greatest mass) had a greater specific gravity (0.206) than the other types of debris examined, which was why it resulted in a higher magnitude of impact force (40%) for the double porous house model (DPHM). Type D3 cylindrical debris (with the longest length) produced the highest value of hydrostatic force (40%). A higher velocity of flow caused a greater magnitude of the FFI (60%) on the impermeable house model (IHM), and this reduced with an increase in the porosity of the house model. The highest MI (97%) acted on the IHM because of greater flow velocity and water depth on the upstream side. Under different types of debris, vegetation provided as a countermeasure on the upstream side of the house model reduced the impact force by 10–22% for the DPHM and by 1–12% for the SPHM; the hydrostatic force was reduced by 12–59%. Hydrodynamic force reduction was observed to be 30% when vegetation was provided on the upstream side of house models of different porosity. Providing vegetation as a countermeasure reduced the FFI and MI by up to, respectively, 70% and 63.39% for the IHM.
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April 2025
Research Article|
November 28 2024
Impact of floating debris on houses during floods and vegetation-based mitigation Available to Purchase
Ghufran Ahmed Pasha, PhD;
Ghufran Ahmed Pasha, PhD
Civil Engineering Department, University of Engineering and Technology Taxila, Pakistan (corresponding author: ghufran.ahmed@uettaxila.edu.pk)
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Muhammad Asghar, MSc;
Muhammad Asghar, MSc
Civil Engineering Department, University of Engineering and Technology Taxila, Pakistan
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Nadir Murtaza, MSc;
Nadir Murtaza, MSc
Civil Engineering Department, University of Engineering and Technology Taxila, Pakistan
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Abdul Razzaq Ghumman, PhD;
Abdul Razzaq Ghumman, PhD
Qassim University, College of Engineering, Department of Civil Engineering, Saudi Arabia
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Afzal Ahmed, PhD;
Afzal Ahmed, PhD
Civil Engineering Department, University of Engineering and Technology Taxila, Pakistan
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Kashif Iqbal, MSc
Kashif Iqbal, MSc
Civil Engineering Department, University of Engineering and Technology Taxila, Pakistan
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Publisher: Emerald Publishing
Received:
August 18 2023
Accepted:
November 09 2024
Online ISSN: 1751-7729
Print ISSN: 1741-7589
Emerald Publishing Limited: All rights reserved
2025
Proceedings of the Institution of Civil Engineers - Water Management (2025) 178 (2): 126–141.
Article history
Received:
August 18 2023
Accepted:
November 09 2024
Citation
Pasha GA, Asghar M, Murtaza N, Ghumman AR, Ahmed A, Iqbal K (2025), "Impact of floating debris on houses during floods and vegetation-based mitigation". Proceedings of the Institution of Civil Engineers - Water Management, Vol. 178 No. 2 pp. 126–141, doi: https://doi.org/10.1680/jwama.23.00055
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