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Article

Experimental Assessment of Geocell-Reinforced Sandy Subgrades Under Traffic-Induced Dynamic Loading

1
School of Transportation and Logistics Engineering, Wuhan University of Technology, Wuhan 430063, China
2
Department of Civil Engineering, Faculty of Engineering, Al Al-Bayt University, Mafraq 25113, Jordan
3
Civil Engineering Department, University of Technology-Iraq, Baghdad 10066, Iraq
4
Civil Engineering Department, University of Karbala, Karbala 56001, Iraq
*
Authors to whom correspondence should be addressed.
Infrastructures 2026, 11(2), 38; https://doi.org/10.3390/infrastructures11020038
Submission received: 11 December 2025 / Revised: 18 January 2026 / Accepted: 23 January 2026 / Published: 26 January 2026

Abstract

This study performs a comprehensive experimental analysis of the dynamic response of geocell-reinforced sandy subgrades exposed to traffic-induced loading. A series of laboratory tests were performed using a custom-manufactured loading apparatus capable of creating monitored dynamic waveforms representative of vehicular traffic. A steel strip footing was assigned on both unreinforced and geocell-reinforced sandy beds to evaluate the implementation of the reinforcement in attenuating transmitted vertical stresses and surface settlements. The influence of key parameters, among which were load amplitude (0.5 and 1.0 tons), loading frequency (0.5, 1.0, and 2.0 Hz), and relative density of sand (30% loose and 60% medium), was systematically examined. The applied dynamic loading was based on a force-controlled sinusoidal waveform with constant amplitudes and frequencies, which corresponded to low-frequency harmonic cyclic loading in the case of traffic-induced quasi-static effects. Therefore, the experimental results indicate that geocell reinforcement reduces the transmitted vertical dynamic stress by up to 45% and reduces surface settlement by about 60% compared to unreinforced sand. However, the heightening efficiency decreases with loading frequency, the amplitude of the load, and the relative sand density. Thus, the findings are important in highlighting the capacity of geocell systems to enhance the longevity and efficiency of sand substrates when the systems are subjected to low-frequency harmonic cyclical loading conditions pertaining to traffic-induced quasi-static influences.
Keywords: geocell reinforcement; dynamic traffic load; sandy soil; surface settlement geocell reinforcement; dynamic traffic load; sandy soil; surface settlement

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MDPI and ACS Style

Ayasrah, M.; Qiu, H.; Fattah, M.Y.; Mohammed Redha, W.B.; Zhu, B. Experimental Assessment of Geocell-Reinforced Sandy Subgrades Under Traffic-Induced Dynamic Loading. Infrastructures 2026, 11, 38. https://doi.org/10.3390/infrastructures11020038

AMA Style

Ayasrah M, Qiu H, Fattah MY, Mohammed Redha WB, Zhu B. Experimental Assessment of Geocell-Reinforced Sandy Subgrades Under Traffic-Induced Dynamic Loading. Infrastructures. 2026; 11(2):38. https://doi.org/10.3390/infrastructures11020038

Chicago/Turabian Style

Ayasrah, Mo’men, Hongsheng Qiu, Mohammed Y. Fattah, Wallaa B. Mohammed Redha, and Bin Zhu. 2026. "Experimental Assessment of Geocell-Reinforced Sandy Subgrades Under Traffic-Induced Dynamic Loading" Infrastructures 11, no. 2: 38. https://doi.org/10.3390/infrastructures11020038

APA Style

Ayasrah, M., Qiu, H., Fattah, M. Y., Mohammed Redha, W. B., & Zhu, B. (2026). Experimental Assessment of Geocell-Reinforced Sandy Subgrades Under Traffic-Induced Dynamic Loading. Infrastructures, 11(2), 38. https://doi.org/10.3390/infrastructures11020038

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