Acknowledgement
This work was supported by the Ministry of Science and Technology of Taiwan under MOST 108-2221-E-002-019-MY3 and MOST 110-2224-E-002-009 projects. These supports are gratefully acknowledged.
References
- AASHTO (2014), AASHTO LRFD Bridge Design Specifications 7th Edition, American Association of State Highway and Transportation Officials (AASHTO), Washington DC, USA.
- ACI Committee 209 (1982), Prediction of Creep, Shrinkage and Temperature Effects in Concrete Structures, Designing for Creep and Shrinkage in Concrete Structures, A Tribute to Adrian Pauw, American Concrete Institute, Farmington Hills, MI, USA.
- ACI Committee 318-14 (2014), Building Code Requirements for Structural Concrete and Commentary, American Concrete Institute, Farmington Hills, MI, USA.
- Afroughsabet, V. and Teng, S. (2020), "Experiments on drying shrinkage and creep of high performance hybrid-fiber-reinforced concrete", Cement Concrete Compos., 106, 103481. https://doi.org/10.1016/j.cemconcomp.2019.103481.
- Aslani, F. (2015), "Creep behaviour of normal-and high-strength self-compacting concrete", Struct. Eng. Mech., 53(5), 921-938. https://doi.org/10.12989/sem.2015.53.5.921.
- Bazant, Z., Hubler, M. and Wendner, R. (2015), "Model B4 for creep, drying shrinkage and autogenous shrinkage of normal and high-strength concretes with multi-decade applicability", RILEM Tech. Comm. TC-242-MDC, 9.
- Bazant, Z.P. and Murphy, W.P. (1995), "Creep and shrinkage prediction model for analysis and design of concrete structures-model B3", Materiaux et Construct., 28(180), 357-365.
- Bazant, Z.P. and Panula, L. (1978), "Practical prediction of time-dependent deformations of concrete", Materiaux et Construct., 11(5), 317-328. https://doi.org/10.1007/BF02473873.
- Bazant, Z.P., Hubler, M.H. and Yu, Q. (2011), "Pervasiveness of excessive segmental bridge deflections: Wake-up call for creep", ACI Struct. J., 108(6), 766-774.
- Bazant, Z.P., Yu, Q. and Li, G.H. (2012), "Excessive long-time deflections of prestressed box girders. II: Numerical analysis and lessons learned", J. Struct. Eng., 138(6), 687-696. https://doi.org/10.1061/(ASCE)ST.1943-541X.0000375.
- Bazant, Z.P., Yu, Q. and Li, G.H. (2012a), "Excessive long-time deflections of prestressed box girders. I: Record-span bridge in Palau and other paradigms", J. Struct. Eng., 138(6), 676-686. https://doi.org/10.1061/(ASCE)ST.1943-541X.0000487.
- CEB Bulletin (1991), Evaluation of the Time Dependent Properties of Concrete, Bulletin d'Information No. 199, Comite European du Beton/Federation Internationale de la Precontrainte, Lausanne, Switzerland.
- CEB Bulletin (1999), Structural Concrete-Textbook on Behaviour, Design and Performance, Updated Knowledge of the Ceb/Fip Model Code 1990, fib Bulletin 2, V. 2, Federation Internationale du Beton, Lausanne, Switzerland.
- Chern, J.C., Liao, W.C., Liu, T.K. and Chin, W.Y. (2018), "Development and analysis of creep and shrinkage database of concrete in Taiwan", Struct. Eng., 33(1), 103-116. http://doi.org/10.6849/SE.201803_33(1).0005.
- fib (2013), Fib Model Code for Concrete Structures 2010, Berlin, Germany.
- Gardner, N.J. and Lockman, M.J. (2001), "Design provisions for drying shrinkage and creep of normal-strength concrete", Mater. J., 98(2), 159-167.
- Hu, W.H. and Liao, W.C. (2020), "Study of prediction equation for modulus of elasticity of normal strength and high strength concrete in Taiwan", J. Chin. Inst. Eng., 43(7), 638-647. https://doi.org/10.1080/02533839.2020.1771207.
- Le Roy, R., Le Maou, F. and Torrenti, J.M. (2017), "Long term basic creep behavior of high performance concrete: Data and modelling", Mater Struct., 50, 85. https://doi.org/10.1617/s11527-016-0948-8.
- Noguchi, T., Tomosawa, F., Nemati, K.M., Chiaia, B.M. and Fantilli, A.P. (2009), "A practical equation for elastic modulus of concrete", ACI Struct. J., 106(5), 690.
- Sakata, K. and Shimomura, T. (2004), "Recent progress in research on and code evaluation of concrete creep and shrinkage in Japan", J. Adv. Concrete Tech., 2(2), 133-140. https://doi.org/10.3151/jact.2.133.
- Sakata, K., Ayano, T., Imamoto, K. and Sato, Y. (2009), "Database of creep and shrinkage based on Japanese researches", 8th International Conference Creep, Shrinkage Durability Mechanics of Concrete Concrete Structures, 1253-1274.
- Xu, Y., Liu, J., Liu, J., Zhang, P., Zhang, Q. and Jiang, L. (2018), "Experimental studies and modeling of creep of UHPC", Constr. Build. Mater., 175, 643-652. https://doi.org/10.1016/j.conbuildmat.2018.04.157.
- Yazdizadeh, Z., Marzouk, H. and Hadianfard, M.A. (2017), "Monitoring of concrete shrinkage and creep using Fiber Bragg Grating sensors", Constr. Build. Mater., 137, 505-512. https://doi.org/10.1016/j.conbuildmat.2017.01.084.