Affiliation:
1. Shaanxi Key Laboratory of Safety and Durability of Concrete Structures, Xijing University, Xi’an 710123, China
2. State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, China
3. School of Geological Engineering and Geomatics, Chang’an University, Xi’an 710054, China
Abstract
As a new type of deep-sea anchoring foundation, thetorpedo anchor has the characteristics of simple installation, low cost, and high bearing capacity. Compared with the torpedo anchor without an anchor wing, the end-bearing torpedo anchor forms pile end resistance using a bearing plate, thus further improving its uplift bearing capacity. By conducting the pullout model test of torpedo anchors, we have compared and analyzed the effects of the pullout angle and bearing-plate radius on the bearing characteristics of T, EN3, EN4, and EC types of torpedo anchors. Based on the model test results, we established the V-H envelope of torpedo-anchor bearing capacity using the regression analysis method. The results show that when the displacement is small, the load-displacement curve of the torpedo anchor increases in an approximately linear mode, and the curve fluctuates and gradually entersa stable state with the gradual increase of the displacement. With the increasing pullout angle, the bearing capacity of the torpedo anchor increases first and then decreases. When the pullout angle is 45°, the torpedo anchor has the maximum bearing capacity. When the pullout angle is constant, the order of bearing capacity generated by different types of torpedo anchors is as follows: EC > EN4 > EN3 > T, and the bearing capacity rises with the increasing bearing-plate area. Through regression analysis, it is concluded that for the torpedo anchors of T, EN3, EN4, and EC types, the V-H envelope of bearing capacity shows an outward convex trend, and the determination coefficient reaches 0.930, indicating that the established V-H envelope is suitable for predicting the bearing capacity of torpedo anchors.
Funder
Natural Science Basic Research Program of Shaanxi Province
Special Fund for Scientific Research by Xijing University
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference30 articles.
1. A new approach for longitudinal vibration of a large-diameter floating pipe pile in visco-elastic soil considering the three-dimensional wave effects;Meng;Comput. Geotech.,2020
2. Dynamic impedance of a floating pile embedded in poro-visco-elastic soils subjected to vertical harmonic loads;Cui;Geomech. Eng.,2018
3. Dynamic response of pipe pile embedded in layered visco-elastic media with radial inhomogeneity under vertical excitation;Cui;Geomech. Eng.,2018
4. Analytical solution for horizontal vibration of end-bearing single pile in radially heterogeneous saturated soil;Cui;Appl. Math. Model.,2023
5. Vertical vibration of a floating pile considering the incomplete bonding effect of the pile-soil interface;Cui;Comput. Geotech.,2022
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献