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Research paper | Publishing Language: Chinese

Experimental Investigation on the Formation Mechanism of Inside-Trapped Water and Its Impact on Bearing Capacity

Wentao Wang1Weichen Wang1Dengfeng Fu1( )Hanbo Zhai2
The Key Laboratory of Marine Environment and Ecology, Ministry of Education, Ocean University of China, Qingdao 266100, China
Research Institute of Science and Technology of China Three Gorges Group Limited Company, Beijing 101199, China
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Abstract

To address the engineering challenges associated with trapped water formation during suction penetration in clay and its impact on bearing capacity, this study developed a novel "Suction Caisson Installation-Loading" integrated testing system. This system enables self-weight penetration, suction penetration, monotonic loading, and cyclic loading. The effects of penetration rate, aspect ratio, local seabed slope, and soil strength on trapped water formation were systematically investigated in this research. Subsequent experiments evaluated the influence of varying trapped water thicknesses on the static and cyclic vertical bearing capacities. Key findings include: (1) No trapped water formed during suction penetration in flat clay, but soil plugging occurred. (2) Soil plug heave increased with higher penetration rates, larger caisson aspect ratios, steeper soil slopes, and greater seabed soil strength. (3) While trapped water exerted negligible effects on monotonic vertical bearing capacity, cyclic loading induced localized seepage at the soil-structure-water interface, triggering progressive failure and significant bearing capacity degradation. (4) Bidirectional cyclic loading caused more pronounced reductions in vertical bearing capacity compared to unidirectional loading under identical amplitude conditions.

CLC number: TU476;P752 Document code: A Article ID: 1672-5174(2026)03-151-12

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Periodical of Ocean University of China
Pages 151-162

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Cite this article:
Wang W, Wang W, Fu D, et al. Experimental Investigation on the Formation Mechanism of Inside-Trapped Water and Its Impact on Bearing Capacity. Periodical of Ocean University of China, 2026, 56(3): 151-162. https://doi.org/10.16441/j.cnki.hdxb.20250041

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Received: 14 February 2025
Revised: 07 April 2025
Published: 01 March 2026
© Periodical of Ocean University of China