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9. Temperature-Dependent Post-Cyclic Mechanical Characteristics of Interfaces between Geogrid and Marine Reef Sand: Experimental Research and Machine Learning Modeling.

18. Predicting the Temperature-Dependent Long-Term Creep Mechanical Response of Silica Sand-Textured Geomembrane Interfaces Based on Physical Tests and Machine Learning Techniques.

19. The Application of Machine Learning Techniques in Geotechnical Engineering: A Review and Comparison.

20. Predicting the Gas Permeability of Sustainable Cement Mortar Containing Internal Cracks by Combining Physical Experiments and Hybrid Ensemble Artificial Intelligence Algorithms.

21. Analysis of the Hydromechanical Properties of Compact Sandstone and Engineering Application.

22. Artificial intelligence algorithms for predicting peak shear strength of clayey soil-geomembrane interfaces and experimental validation.

23. The short-term and creep mechanical behaviour of clayey soil-geocomposite drainage layer interfaces subjected to environmental loadings.

24. Modified stress and temperature-controlled direct shear apparatus on soil-geosynthetics interfaces.

25. A Support Vector Machine Model with Hyperparameters Optimised by Mind Evolutionary Algorithm for Assessing Permeability of Rock.

26. Investigation of Anisotropic Permeability and Porosity of CJRM considering Different Confinement Loading Pressures.

27. Experimental research on stress-dependent permeability and porosity of rock-like materials with different thicknesses of smooth hidden joints.

28. Experimental study on stress-dependent gas permeability and porosity of artificially cracked cement mortar.

29. Dependency of hydromechanical properties of monzonitic granite on confining pressure and fluid pressure under compression.

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