Inclined loading of suction caisson anchors in calcareous sand with particle breakage

被引:0
|
作者
Cheng, L. [1 ,2 ]
Hossain, M. S. [3 ]
Hu, Y. [1 ]
Ullah, S. N. [4 ]
Kim, Y. H. [5 ]
机构
[1] Univ Western Australia, Sch Civil Environm & Min Engn, Perth, WA, Australia
[2] South China Univ Technol, Sch Marine Sci & Engn, 381 Wushan Rd, Guangzhou 510640, Peoples R China
[3] Univ Western Australia, Ctr Offshore Fdn Syst COFS, Oceans Grad Sch, Australian Res Council ARC, 35 Stirling Highway, Perth, WA 6009, Australia
[4] Cent Queensland Univ Australia, Sch Engn & Technol, Rockhampton, Qld, Australia
[5] Univ Western Australia, Ctr Offshore Fdn Syst COFS, Oceans Grad Sch, Perth, WA, Australia
基金
澳大利亚研究理事会;
关键词
Caisson anchors; Calcareous sand; Failure envelope; Inclined loading; MMC-PB model; Particle breakage; FINITE-ELEMENT-ANALYSIS; FOUNDATIONS; PENETRATION; CAPACITY; STRENGTH; FAILURE; SPUDCAN; SHEAR; FIELD;
D O I
10.1016/j.compgeo.2024.106545
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Despite the high cost-effective potential of using suction caisson anchors for mooring floating facilities for harvesting various marine resources, it is not being considered in sites with calcareous sediments largely due to the lack of understanding of anchor -sand interaction, particularly where sand particles are prone to breakage. This paper reports the behaviour of suction caisson anchors under inclined monotonic loading in medium dense to dense calcareous sands. Three-dimensional finite element simulations were conducted using a recently presented modified Mohr -Coulomb model incorporating particle breakage (MMC-PB). The MMC-PB model was validated against centrifuge test data, with good agreement obtained. Extensive parametric analyses were then carried out varying sand relative density, caisson geometry, padeye location, and loading angle. Soil failure mechanisms were exposed, and the distribution of particle breakage was tracked and quantified, to provide insight into the behaviour of suction caisson anchors. Anchor capacity under inclined loading was presented as failure envelopes expressed in terms of dimensionless vertical ( V ) and horizontal ( H ) components of anchor resistance. A calculation framework was proposed distilling 360 numerical simulations into easy -to -use equations for developing routine V - H failure envelopes. The understanding and framework will provide confidence in designing suction caisson anchors in calcareous sand.
引用
收藏
页数:16
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