References
The physics implemented in this package, and the data the examples rely on.
Biot, M. A. (1941). General theory of three-dimensional consolidation. Journal of Applied Physics 12, 155–164.
Cheng, A. H.-D. and Detournay, E. (1988). A direct boundary element method for plane strain poroelasticity. International Journal for Numerical and Analytical Methods in Geomechanics 12, 551–572.
Cryer, C. W. (1963). A comparison of the three-dimensional consolidation theories of Biot and Terzaghi. The Quarterly Journal of Mechanics and Applied Mathematics 16, 401–412.
Gardner, W. R. (1958). Some steady-state solutions of the unsaturated moisture flow equation with application to evaporation from a water table. Soil Science 85, 228–232.
van Genuchten, M. T. (1980). A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Science Society of America Journal 44, 892–898.
de Leeuw, E. H. (1965). The theory of three-dimensional consolidation applied to cylindrical bodies. In: Proceedings of the 6th International Conference on Soil Mechanics and Foundation Engineering, Vol. 1 (Montreal); pp. 287–290.
Lothenbach, B.; Kulik, D. A.; Matschei, T.; Balonis, M.; Baquerizo, L.; Dilnesa, B.; Miron, G. D. and Myers, R. J. (2019). Cemdata18: A chemical thermodynamic database for hydrated Portland cements and alkali-activated materials. Cement and Concrete Research 115, 472–506.
Mandel, J. (1953). Consolidation des sols (étude mathématique). Géotechnique 3, 287–299.
Mehrabian, A. and Abousleiman, Y. N. (2018). Theory and analytical solution to Cryer's problem of N-porosity and N-permeability poroelasticity. Journal of the Mechanics and Physics of Solids 118, 218–227.
Mualem, Y. (1976). A new model for predicting the hydraulic conductivity of unsaturated porous media. Water Resources Research 12, 513–522.
Oh, B. H. and Jang, S. Y. (2004). Prediction of diffusivity of concrete based on simple analytic equations. Cement and Concrete Research 34, 463–480.
Philip, J. R. and de Vries, D. A. (1957). Moisture movement in porous materials under temperature gradients. Transactions of the American Geophysical Union 38, 222–232.
Richards, L. A. (1931). Capillary conduction of liquids through porous mediums. Physics 1, 318–333.
Terzaghi, K. (1943). Theoretical Soil Mechanics (John Wiley & Sons, New York).
Tran, V. Q.; Soive, A.; Bonnet, S. and Khelidj, A. (2018). A numerical model including thermodynamic equilibrium, kinetic control and surface complexation in order to explain cation type effect on chloride binding capability of concrete. Construction and Building Materials 190, 191–200.
Xu, T.; Sonnenthal, E.; Spycher, N. and Pruess, K. (2006). TOUGHREACT: A simulation program for non-isothermal multiphase reactive geochemical transport in variably saturated geologic media. Computers and Geosciences 32, 145–165.