Giảng Viên - Bài Báo khoa học ISI/SCOPUS - Năm 2022

  1. Vo-Minh, T., & Nguyen, H. C. (2022). Seismic stability of a circular tunnel in cohesive-frictional soils using a stable node-based smoothed finite element method. Tunnelling and Underground Space Technology130, 104606.
  2. Nguyen, H. C., & Vo-Minh, T. (2022). Calculation of seismic bearing capacity of shallow strip foundations using the cell-based smoothed finite element method. Acta Geotechnica17(8), 3567-3590.
  3. Nguyen, H. C., & Vo-Minh, T. (2022). The use of the node-based smoothed finite element method to estimate static and seismic bearing capacities of shallow strip footings. Journal of Rock Mechanics and Geotechnical Engineering14(1), 180-196.
  4. Thai, C. H., Nguyen-Xuan, H., Nguyen, L. B., & Phung-Van, P. (2022). A modified strain gradient meshfree approach for functionally graded microplates. Engineering with Computers38(Suppl 5), 4545-4567.
  5. Pham-Tan, H., Thai, C. H., & Phung-Van, P. (2022). NURBS-based refined plate theory for metal foam plates with porosities. Thin-Walled Structures175, 109246.
  6. Hung, P. T., Phung-Van, P., & Thai, C. H. (2022). A refined isogeometric plate analysis of porous metal foam microplates using modified strain gradient theory. Composite Structures289, 115467.
  7. Bui, X. B., Nguyen, T. K., Nguyen, N. D., & Vo, T. P. (2022). A general higher-order shear deformation theory for buckling and free vibration analysis of laminated thin-walled composite I-beams. Composite Structures295, 115775.
  8. Tran, V. T., Nguyen, T. K., Nguyen, P. T., & Vo, T. P. (2022). Stochastic vibration and buckling analysis of functionally graded microplates with a unified higher-order shear deformation theory. Thin-Walled Structures177, 109473.
  9. Nguyen, N. D., Nguyen, T. N., Nguyen, T. K., & Vo, T. P. (2022). A new two-variable shear deformation theory for bending, free vibration and buckling analysis of functionally graded porous beams. Composite Structures282, 115095.
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