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Xu-zhe Li

Beijing University of Technology

100 Ping Le Yuan

Chaoyang District

Beijing, 100020

China

SCHOLARLY PAPERS

5

DOWNLOADS

94

TOTAL CITATIONS

0

Scholarly Papers (5)

1.

Analysis of the Effect of Local Scour on Pile-Soil Interaction in Marine Pile Foundation

Number of pages: 34 Posted: 23 Nov 2025
Beijing University of Technology, Beijing University of Technology, Beijing University of Technology and Beijing University of Technology
Downloads 44

Abstract:

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Local Scour, Wave-Current Force Distribution, Strain Wedge Model, Pile-Soil Interaction

2.

Study on Horizontal Bearing Capacity of Offshore Pile Foundation Considering the Effect of Local Scour

Number of pages: 22 Posted: 22 Oct 2025
Beijing University of Technology, Beijing University of Technology, Beijing University of Technology and Beijing University of Technology
Downloads 32

Abstract:

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Offshore pile foundation, Local scour, Horizontal bearing capacity, Dynamic response

3.

The Integrated Fluid–Sediment–Seabed Coupled Numerical Method for Local Scour around Marine Pile Foundations

Number of pages: 39 Posted: 15 Jun 2026
Beijing University of Technology, Beijing University of Technology, Beijing University of Technology and Beijing University of Technology
Downloads 9

Abstract:

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4.

A Coupled Computational Method for Fluid–Sediment–Seabed Interaction Considering Scour Evolution

Number of pages: 39 Posted: 24 Jul 2026
Beijing University of Technology, Beijing University of Technology, Guangzhou University and affiliation not provided to SSRN
Downloads 6

Abstract:

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Fluid-sediment-seabed interaction, Scour evolution, OpenFOAM, Partitioned coupling

5.

An Integrated Modeling Method for Offshore Wind Turbines Considering Pile-Soil Interaction and the Realization in OpenFAST

Number of pages: 38 Posted: 24 Jul 2026
Beijing University of Technology, Beijing University of Technology, Beijing University of Technology and affiliation not provided to SSRN
Downloads 3

Abstract:

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Offshore wind turbine, Monopile foundation, OpenFAST, Pile-Soil interaction