Affiliation:
1. College of Transportation, Shandong University of Science and Technology, Qingdao 266000, China
Abstract
Based on the plane–strain assumption, a calculation model of pile–soil–pile vertical coupling vibration response considering the scattering effect of passive piles is established in this paper. Using this model, the vertical displacement expressions of pile core soil and pile surrounding soil, soil displacement attenuation function, and longitudinal complex impedance are obtained. Then, based on the strict pile–soil coupling effect, the displacement of the active pile under vertical load and scattering effect, as well as the displacement of the passive pile under incident waves, are solved separately. A new type of dynamic interaction factor for pipe group piles is derived by introducing scattering effect factors. A numerical example shows that the degenerate solution in this paper is in good agreement with the existing solution, which verifies the rationality of the solution. Considering the scattering effect is helpful in improving the accuracy of vibration response analysis of pile groups. The variation in parameters such as slenderness ratio, pile spacing, and outer diameter has significant effects on the interaction factor, and compared with the solid pile, the influence of parameter change on the pipe pile is smaller.
Funder
National Science Foundation for Young Scientists of China
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference30 articles.
1. Study on pile cap effects of pile group foundations under linear wave action by a hybrid BEM and EEM method;Qiu;Ocean Eng.,2022
2. Mechanical model for predicting wave loads on complex pile group foundations under linear wave action;Wang;Eng. Anal. Bound. Elem.,2022
3. Hi, Y., Yao, W., and Yu, G. (2022). Dynamic Analysis on Pile Group Supported Offshore Wind Turbine under Wind and Wave Load. J. Mar. Sci. Eng., 10.
4. Analysis of the Settlement of Pile Groups;Poulos;Géotechnique,1968
5. Kaynia, A.M., and Kausel, E. (1982). Dvmamic Stiffess and Seismic Response of Pile Groups, Massachusetts Institute of Technology.