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References:

  1. Bentz, D.P., "Three-Dimensional Computer Simulation of Cement Hydration and Microstructure Development", Journal of the American Ceramic Society 80 (1) (1997) 3-21.
  2. Bentz, D.P., "CEMHYD3D: A Three-Dimensional Cement Hydration and Microstructure Development Modelling Package. Version 2.0", NISTIR 6485, U.S. Department of Commerce, April 2000.
  3. van Breugel, K., "Simulation of Hydration and Formation of Structure in Hardening Cement-Based Materials", Ph.D. Thesis, Delft University of Technology, Delft (1991) 295 pp.
  4. Koenders, E.A.B., "Simulation of Volume Changes in Hardening Cement-Based Materials", Ph.D. Thesis, Delft University of Technology, Delft (1997) 171 pp.
  5. Ye, G., "Experimental Study and Numerical Simulation of the Development of the Microstructure and Permeability of Cementitious Materials," Delft University Press, ISBN 9040724350, 2003.
  6. Maekawa, K., Chaube, R., and Kishi, T., "Modelling of Concrete Performance", E&FN Spon, London 1999.
  7. Sellevold, E.J., and Justnes, H., "High Strength Concrete Binders Part B: Nonevaporable Water, Self-Desiccation, and Porosity of Cement Pastes with Condensed Silica Fume", 4th CANMET/ACI Intl. Conference on Fly Ash, Silica Fume, and Natural Pozzolans in Concrete, Istanbul, Turkey (1992) 891-902.
  8. Bentz, D.P., Snyder, K.A., and Stutzman, P.E., "Microstructural Modelling of Self-Desiccation during Hydration", 1st International Research Seminar on Self-Desiccation and its Importance in Concrete Technology, Eds. B. Persson and G. Fagerlund, Lund, 10 June 1997, Report TVBM-3075, Lund University, Lund, Sweden (1997) 132-140.
  9. Norling Mjörnell, K., "A Model on Self-Desiccation in High-Performance Concrete", 1st International Research Seminar on Self-Desiccation and its Importance in Concrete Technology, Eds. B. Persson and G. Fagerlund, Lund, 10 June 1997, Report TVBM-3075, Lund University, Lund, Sweden (1997) 141-157.
  10. Bentz, D.P., Hansen, K.K., Madsen, H.D., Vallee, F.A., and Griesel, E.J., "Drying/Hydration in Cement Pastes During Curing", Materials and Structures 34 (2001) 557-565.
  11. Bentz, D.P., Jensen, O.M., Hansen, K.K., Oleson, J.F., Stang, H., and Haecker, C.J., "Influence of Cement Particle Size Distribution on Early Age Autogenous Strains and Stresses in Cement-Based Materials", Journal of the American Ceramic Society 84 (1) (2001) 129-135.
  12. Lura, P., Jensen, O.M., and van Breugel, K., "Autogenous Shrinkage in High-Performance Cement Paste: An Evaluation of Basic Mechanisms," Cement and Concrete Research 33 (2003) 223-232.
  13. Bentz, D.P., "Effects of Cement PSD on Porosity Percolation and Self-Desiccation", 2nd International Research Seminar on Self-Desiccation and its Importance in Concrete Technology, Eds. B. Persson and G. Fagerlund, Lund, 18 June 1999, Report TVBM-3085, Lund University, Lund, Sweden (1999) 127-134.
  14. Bentz, D.P., and Garboczi, E.J., "Computer Modelling of Interfacial Transition Zone: Microstructure and Properties," in Engineering and Transport Properties of the Interfacial Transition Zone in Cementitious Composites, RILEM Report 20, Eds. M.G. Alexander, G. Arliguie, G. Ballivy, A. Bentur, and J. Marchand, RILEM Publications S.A.R.L. (1999) 349-385.
  15. Chen, H., Ye, G., and Stroeven, P., "Influence of the Surface Spacing Between Neighboring Aggregate Grains on the Microstructure of Fresh and Hardened Interfacial Transition Zone", to be published in Proceedings of the International Conference on Durability of High-Performance Concrete, Essen, Germany, Aug. 23-24, 2004.
  16. Powers, T.C., and Brownyard, T.L., "Studies of the Physical Properties of Hardened Cement Paste", Res. Lab. Portland Cem. Assoc. Bull. 22 (1948).
  17. Bentz, D.P., and Snyder, K.A., "Protected Paste Volume in Concrete: Extension to Internal Curing Using Saturated Lightweight Fine Aggregates", Cement and Concrete Research 29 (1999) 1863-1867.
  18. Jensen, O.M., and Hansen, P.F., "Water-Entrained Cement-Based Materials I. Principle and Theoretical Background" and "Water-Entrained Cement-Based Materials II: Experimental Observations", Cement and Concrete Research 31 (5) (2001) 647-654 and 32 (6) (2002) 973-978.
  19. Justnes, H., Sellevold, E.J., Reyniers, B., Van Loo, D., Van Gemert, A., Verboven, F., and Van Gemert, D., "The Influence of Cement Characteristics on Chemical Shrinkage", Autogenous Shrinkage of Concrete, Ed. E. Tazawa, E&FN Spon (1999) 71-80.
  20. Mounanga, P., Khelidj, A., Loukili, A., and Baroghel-Bouny, V., "Predicting Ca(OH)2 Content and Chemical Shrinkage of Hydrating Cement Pastes Using Analytical Approach", Cement and Concrete Research 34 (2) (2004) 255-265.
  21. Bentz, D.P., Lura, P., and Roberts, J., "Mixture Proportioning for Internal Curing," Concrete International 27 (2) (2005) 35-40.
  22. Lura, P., "Autogenous Deformation and Internal Curing of Concrete," Ph.D. Thesis, Delft University of Technology, Delft, The Netherlands, 2003.
  23. Weber, S., and Reinhardt, H.W., "Manipulating the Water Content and Microstructure of High Performance Concrete Using Autogenous Curing", Modern Concrete Materials: Binders, Additions, and Admixtures, Eds. R.K. Dhir and T.D. Dyer, Thomas Telford (1999) 567-577.
  24. Nyame, B.K., and Illston, J.M., "Capillary Pore Structure and Permeability of Hardened Cement Paste", 7th International Congress on the Chemistry of Cement, 3 (1980) VI:181-185.
  25. Bentz, D.P., "Influence of Curing Conditions on Water Loss and Hydration in Cement Pastes with and without Fly Ash Substitution", NISTIR 6886, U.S. Department of Commerce, July 2002. (PDF Version)
  26. Zhutovsky, S., Kovler, K., and Bentur, A., "Assessment of Water Migration Distance in Internal Curing of High-Strength Concrete", in ACI SP-220 Autogenous Deformation of Concrete, Eds. O.M. Jensen, D.P. Bentz, and P. Lura, American Concrete Institute, Farmington Hills, MI (2004) 181-197.
  27. Larsen, T., Cady, P., and Malloy, J., "The Protected Paste Volume Concept Using New Air-Void Measurement and Distribution Techniques", Journal of Materials 2 (1) (1967) 202-224.
  28. Bentz, D.P., Garboczi, E.J., and Snyder, K.A., "A Hard Core/Soft Shell Microstructural Model for Studying Percolation and Transport in Three-Dimensional Composite Media", NISTIR 6265, U.S. Department of Commerce, January 1999.
  29. Lu, B.L., and Torquato, S., "Nearest-surface Distribution Functions for Polydispersed Particle Systems", Physical Review A 45 (8) (1992) 5530-5544.
  30. Reinhardt, H.-W., and Mönnig, S., "Modelling of the Hydration of High Performance Concrete with Normal and Lightweight Aggregates", to be pub. 2004.

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