[1] Popoola A., Aboayanah K., Ghafouri S., Haile B., Sun L.*, Peterson K., Grasselli G. Anisotropic mechanical characterization of gneissic rock from Canadian Shield: bridging the micro- and meso-scale gap. Journal of Rock Mechanics and Geotechnical Engineering, 2025. (一区TOP, IF7.3) [2] Sun L*, Grasselli G. Liu Q, Aboayanah K, Tang X. Investigating the frost cracking mechanism and the related shallow alpine rockfall initiation process using three-dimensional FDEM. Engineering Geology, 2025. (一区TOP, IF6.9) [3] Sun L*, Tang X, Aboayanah K, Liu Q, Grasselli G. Coupled hydro-mechanical two-phase flow model in fractured porous medium with the combined finite discrete element method. Engineering with Computers, 2024. (一区TOP, IF8.7) [4] Sun L*, Tang X, Zeeman B, Liu Q, Grasselli G. Numerical investigation of the path-dependent frost heave process in frozen rock under different freezing conditions. Journal of Rock Mechanics and Geotechnical Engineering, 2024. (一区TOP, IF7.3) [5] Aboayanah K, Ossetchkina E, Abdelaziz A, Sun L*. Effect of Thermal Pre-treatment on Thermal Gradient Response of Granitic Rocks: Insights from Optical Microscopy and Digital Image Correlation. Rock Mechanics and Rock Engineering 2024, 57, 10805–10830. (一区TOP, IF6.2) [6] Sun L*, Tao S, Tang X, Liu Q, Grasselli G. A TOUGH-FEMM based cryogenic THM coupled model and its application to cold-region tunnels. Engineering Analysis with Boundary Elements 2024; 169, 105994. (一区, IF3.3) [7] Sun L*, Tang X, Zhao Q, Liu Q, Grasselli G. A coupled cryogenic thermo-hydro-mechanical model for frozen medium: theory and implementation in FDEM. Journal of Rock Mechanics and Geotechnical Engineering, 2023. (一区TOP, IF7.3) [8] Sun L, Li M, Abdelaziz A, Tang X, Liu Q, Grasselli G. An efficient 3D cell-based discrete fracture-matrix flow model for digitally captured fracture networks. International Journal of Coal Science & Technology, 2023, 10, 70. (一区, IF8.3) [9] Sun L*, Tang X, Li M, Liu Q et al. Flow simulation in 3D fractured porous medium using a generalized pipe-based cell-centered finite volume model with local grid refinement. Geomechanics for Energy and the Environment 2023;51(9):100505. (一区,IF5.1) [10] Sun L*, Tang X, Abdelaziz A, Liu Q, Grasselli G. Stability analysis of reservoir slopes under fluctuating water levels using the combined finite-discrete element method. Acta Geotechnica 2023;52(3):561. (一区TOP, IF5.7) [11] Sun L*, Tao S, Liu Q. Frost Crack Propagation and Interaction in Fissured Rocks Subjected to Freeze–thaw Cycles: Experimental and Numerical Studies. Rock Mechanics and Rock Engineering 2023;107(4):59. (一区TOP, IF6.2) [12] Abdelaziz A, Ha J, Li M, Magsipoc E, Sun L*, Grasselli G. Understanding hydraulic fracture mechanisms: From the laboratory to numerical modelling. Advances in Geo-Energy Research 2023;7(1):66–8 (一区, IF8.2) [13] Sun L*, Liu Q, Tao S, Grasselli G. A novel low-temperature thermo-mechanical coupling model for frost cracking simulation using the finite-discrete element method. Computers and Geotechnics 2022;152(2):105045. (一区TOP, IF5.3) [14] Shao Z, Sun L*, Aboayanah K, Liu Q, Grasselli G. Investigate the Mode I Fracture Characteristics of Granite After Heating/-LN2 Cooling Treatments. Rock Mechanics and Rock Engineering 2022;55(7):4477–96. (一区TOP, IF6.2) [15] Sun L*, Liu Q, Abdelaziz A, Tang X, Grasselli G. Simulating the entire progressive failure process of rock slopes using the combined finite-discrete element method. Computers and Geotechnics 2022;141(4):104557. (一区TOP, IF5.3) [16] Sun L*, Grasselli G, Liu Q, Tang X, Abdelaziz A. The role of discontinuities in rock slope stability: Insights from a combined finite-discrete element simulation. Computers and Geotechnics 2022;147(2):104788. (一区TOP, IF5.3) [17] Aboayanah K, Popoola AK, Abdelaziz A, Sun L*, Ossetchkina E, Peterson K et al. Effect of pre-existing cracks on thermal cracking of granitic rocks under confinement. Geomechanics and Geophysics for Geo-Energy and Geo-Resources 2022;8(4):73. (一区, IF5.0) [18] Liu Z, Zhang M, Sun L*, Ye S, Chen Z, Tang X. The Influence of Natural Joints on the Evolution of Fracturing Curves: From a Numerical Perspective. Arabian Journal for Science and Engineering 2022;36:83. (二区, IF2.9) [19] Sun L*, Tao S, Tang X, Liu Q. Simulation of the nonplanar three-dimensional thermal cracking using the finite element-meshfree method. Applied Mathematical Modelling 2021;99(4):106–28. (一区TOP, IF5) [20] Sun L*, Grasselli G, Liu Q, Tang X. Thermal cracking simulation of functionally graded materials using the combined finite–discrete element method. Computational Particle Mechanics 2020;7(5):903–17. (一区, IF3.3) [21] Sun L*, Liu Q, Grasselli G, Tang X. Simulation of thermal cracking in anisotropic shale formations using the combined finite-discrete element method. Computers and Geotechnics 2020;117(6):103237. (一区TOP, IF5.3) [22] Sun L*, Grasselli G, Liu Q, Tang X. Coupled hydro-mechanical analysis for grout penetration in fractured rocks using the finite-discrete element method. International Journal of Rock Mechanics & Mining Sciences 2019;124(2):104138. (一区TOP, IF7.2) [23] Liu Q, Sun L*. Simulation of coupled hydro-mechanical interactions during grouting process in fractured media based on the combined finite-discrete element method. Tunnelling and Underground Space Technology 2019;84(2):472–86. (一区TOP, IF6.9) [24] Liu Q, Sun L*, Tang X. Investigate the influence of the in-situ stress conditions on the grout penetration process in fractured rocks using the combined finite-discrete element method. Engineering Analysis with Boundary Elements 2019;106(2):86–101. (一区, IF3.3) |