Ngày xuất bản: 30-03-2023
Số tạp chí: Số 1-2023

Nguyen Thanh Sang, Nguyen Tuong Lai, Pham Duc Tiep

Từ khóa:

interface friction angle
calcareous soils
coral soils
pile bearing capacity
direct shear test.

 

 

https://doi.org/10.59382/j-ibst.2023.en.vol1-5

Tóm tắt:

A modified direct shear tests of interface between well-graded coral sand and coral sandy-gravel with smooth steel plate were conducted in this study under various normal stress levels. The obsevation from experimental results indicates that: (1) interface shear behavior between well-graded coral soils and steel structure follows the strain hardening rules; (2) the magnitudes of friction resistances between two materials are related to the gradation and grain size of coral soils, for coral sand limit sliding displacement is around 1mm with interface friction angle of 27.9o while for coral sandy-gravel these values are 2-3mm and 32.8o respectively; (3) interface direct shear test can be used to accurately determine friction characteristics between calcareous soil and structural material, which can effectively support analysis and design of structures built on calcareous soil.

Nội dung:

Tài liệu tham khảo:

[1] Cao Van Hoa, Vu Anh Tuan, Nguyen Thanh Sang, Nguyen Tuong Lai, Pham Duc Tiep (2020), Effect of Grain Size on Shear Strength of Coral Gravel Sand, The 3nd International Conference on Sustainability in Civil Engineering; [2] Nguyen Tuong Lai (2019), Study on the friction between pile foundation with calcareous soil and forecast stability of marine structures subjected to sea wave load, Reprort of National research project ĐTĐL-CN.17/15 (in Vietnamese). [3] Andreas-Nizar Granitzer and Franz Tschuchnigg (2021), Practice-Oriented Validation of Embedded Beam Formulations in Geotechnical Engineering, processes MDPI, Page 8. [4] H. S. Aksoy1, E. İnal2, M. Gör (2016), Skin Friction between Soil and Pile Materials, 12th International congress on advances in civil engineering, Bogazich University, istanbul/Turkey, Page 03-5; [5] Saurabh Rawat, Ashok Kumar Gupta (2017), Numerical modelling of pullout of helical soil nail, Journal of Rock Mechanics and Geotechnical Engineering, journal of Rock Mechanics and Geotechnical Engineering 9; [6] American Petroleum Institute (2002). “API Recommended Practice 2A-WSD - Planning, Designing, and Constructing Fixed Offshore Platforms – Working Stress Design”. [7] Innovative geotechnics Pty Ltd (2017), “User Manual for PileAXL-A Program for single Piles under Axial loading; [8] Portions @2019 Bentley Systems, Incorporated, All Rights Reserved (2019), Plaxis Material Models Connect Edition V20.1.0.98.

Bài viết liên quan: