A minimum strain energy release-based thermal–mechanical damage model for fracture process simulation of quasi-brittle materials under high temperatures
Author:
Funder
National Program on Key R&D Project of China
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1617/s11527-024-02309-x.pdf
Reference49 articles.
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2. Tang SB, Tang CA (2015) Crack propagation and coalescence in quasi-brittle materials at high temperatures. Eng Fract Mech 134:404–432
3. Yan C, Jiao YY (2020) A 2D discrete heat transfer model considering the thermal resistance effect of fractures for simulating the thermal cracking of brittle materials. Acta Geotech 15(5):1303–1319
4. Yan C, Wang X, Huang D, Wang G (2021) A new 3D continuous-discontinuous heat conduction model and coupled thermomechanical model for simulating the thermal cracking of brittle materials. Int J Solids Struct 229:111123
5. Sun L, Liu Q, Grasselli G, Tang X (2020) Simulation of thermal cracking in anisotropic shale formations using the combined finite-discrete element method. Comput Geotech 117:103237
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