Please wait a minute...
Frontiers of Structural and Civil Engineering

ISSN 2095-2430

ISSN 2095-2449(Online)

CN 10-1023/X

Postal Subscription Code 80-968

2018 Impact Factor: 1.272

Front. Struct. Civ. Eng.    2008, Vol. 2 Issue (3) : 211-218    https://doi.org/10.1007/s11709-008-0025-7
Modelling autogenous expansion for magnesia concrete in arch dams
JIN Feng1, LUO Xiaoqing1, ZHANG Chuhan1, ZHANG Guoxin2
1.Department of Hydraulic Engineering, Tsinghua University; 2.Institute of Water Resource and Hydropower Research;
 Download: PDF(241 KB)   HTML
 Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks
Abstract Magnesia Concrete is a kind of expansive concrete used in Chinese hydraulic engineering more and more widely. To evaluate the effects of autogenous expansion on the stresses of arch dams, a simple model of autogenous expansion for Magnesia Concrete in dam engineering is presented. This model is based on three assumptions: 1) the total amount of autogenous expansion of Magnesia Concrete is related only to the properties of materials and mixing of concrete; 2) the autogenous expansion of Magnesia Concrete is irreversible due to the irreversibility of hydration reaction of Magnesia in the concrete; 3) the autogenous expansion strain rates of Magnesia Concrete bear a relation between temperature and residual Magnesia per unit volume of concrete. The model is verified by some experimental data of autogenous expansion of Magnesia Concrete and field-measured data of an arch dam in China. Embedded into finite element arch dam simulation software, this model is employed to simulate the effects of autogenous expansion of Magnesia Concrete in hydraulic engineering.
Issue Date: 05 September 2008
 Cite this article:   
ZHANG Guoxin,JIN Feng,ZHANG Chuhan, et al. Modelling autogenous expansion for magnesia concrete in arch dams[J]. Front. Struct. Civ. Eng., 2008, 2(3): 211-218.
 URL:  
https://academic.hep.com.cn/fsce/EN/10.1007/s11709-008-0025-7
https://academic.hep.com.cn/fsce/EN/Y2008/V2/I3/211
1 Stutterheim N . Propertiesand uses of high Magnesia Portland slag cement concretes. Journal of ACI, 1960, 56: 1027–1046
Stutterheim N. Propertiesand uses of high Magnesia Portland slag cement concretes. Journal of ACI, 1960, 56: : 1027-1046
Stutterheim N. Propertiesand uses of high Magnesia Portland slag cement concretes. Journal of ACI, 1960, 56: : 1027-1046
2 Satalkin A V, Komokhov P G, Kromin I P . Autoclave treatment of cement and Silicate-Matrix Concretes. Special Publication of ACI, 1972, 32: 141–148
Satalkin A V, Komokhov P G, Kromin I P. Autoclave treatment of cement and Silicate-Matrix Concretes. Special Publication of ACI, 1972, 32: : 141-148
Satalkin A V, Komokhov P G, Kromin I P. Autoclave treatment of cement and Silicate-Matrix Concretes. Special Publication of ACI, 1972, 32: : 141-148
3 Li Chengmu . Reviews on the applications of Magnesia Concrete in the dam engineering. Research on Hydropower Engineering, 1999, (2): 1–29 (in Chinese)
Li Chengmu. Reviews on the applications of Magnesia Concrete in the dam engineering. Research on Hydropower Engineering, 1999, (2): 1-29(in Chinese)
Li Chengmu. Reviews on the applications of Magnesia Concrete in the dam engineering. Research on Hydropower Engineering, 1999, (2): 1-29(in Chinese)
4 Jensen O M, Hansen P F . Autogenous deformation andin RH-change perspective. Cement and ConcreteResearch, 2001, 31(12): 1859–1865.
doi:10.1016/S0008‐8846(01)00501‐4
Jensen O M, Hansen P F. Autogenous deformation andin RH-change perspective. Cement and ConcreteResearch, 2001, 31(12): 1859-1865
doi: 10.1016/S0008‐8846(01)00501‐4
Jensen O M, Hansen P F. Autogenous deformation andin RH-change perspective. Cement and ConcreteResearch, 2001, 31(12): 1859-1865
doi: 10.1016/S0008‐8846(01)00501‐4
5 Japan Concrete Institute. . TechnicalCommittee on Autogenous Shrinkage of Concrete. 1998
Japan Concrete Institute. TechnicalCommittee on Autogenous Shrinkage of Concrete. 1998
Japan Concrete Institute. TechnicalCommittee on Autogenous Shrinkage of Concrete. 1998
6 Serafim J L, Guerreiro M . Autogenous and hygrometricexpansion of mass concrete. Journal ofACI, 1969, 66: 716–719
Serafim J L, Guerreiro M. Autogenous and hygrometricexpansion of mass concrete. Journal ofACI, 1969, 66: : 716-719
Serafim J L, Guerreiro M. Autogenous and hygrometricexpansion of mass concrete. Journal ofACI, 1969, 66: : 716-719
7 Houk I E, Jr, Borge O E, Houghton D L . Studies of autogenous volume change in concrete for DworshakDam. Journal of ACI, 1969, 66: 560–568
Houk I E, Jr, Borge O E, Houghton D L. Studies of autogenous volume change in concrete for DworshakDam. Journal of ACI, 1969, 66: : 560-568
Houk I E, Jr, Borge O E, Houghton D L. Studies of autogenous volume change in concrete for DworshakDam. Journal of ACI, 1969, 66: : 560-568
8 Li Penghui . Gentle expansion RCC and new structures of RCC arch dams. Dissertationfor the Doctoral Degree.Beijing: Tsinghua University, 2000 (in Chinese)
Li Penghui. Gentle expansion RCC and new structures of RCC arch dams. Dissertationfor the Doctoral Degree.. Beijing, Tsinghua University, 2000(in Chinese)
Li Penghui. Gentle expansion RCC and new structures of RCC arch dams. Dissertationfor the Doctoral Degree.. Beijing, Tsinghua University, 2000(in Chinese)
9 Ulm F, Le Maou F, Boulav C . Creep and shrinkage of concrete-kinetics approach. Special Publication of ACI, 2000, 194: 135–154
Ulm F, Le Maou F, Boulav C. Creep and shrinkage of concrete-kinetics approach. Special Publication of ACI, 2000, 194: : 135-154
Ulm F, Le Maou F, Boulav C. Creep and shrinkage of concrete-kinetics approach. Special Publication of ACI, 2000, 194: : 135-154
10 Ishida T, Chuaube R P, Kishi T, Maekawa K . Micro-physicalapproach to coupled autogenous and drying shrinkage of concrete. In: Proceedings of the Sixth East Asia-PacificConference on Structural Engineering and Construction, EASEC-6. 1998, 1905–1910
Ishida T, Chuaube R P, Kishi T, Maekawa K. Micro-physicalapproach to coupled autogenous and drying shrinkage of concrete. In: Proceedings of the Sixth East Asia-PacificConference on Structural Engineering and Construction, EASEC-6..1998, 1905-1910
Ishida T, Chuaube R P, Kishi T, Maekawa K. Micro-physicalapproach to coupled autogenous and drying shrinkage of concrete. In: Proceedings of the Sixth East Asia-PacificConference on Structural Engineering and Construction, EASEC-6..1998, 1905-1910
11 Liu Guangting, Mai Jiaxuan, Zhang Guoxin . Study on Xibing RCC thin arch dam. Journal of Hydroelectric Engineering, 1997, (2): 19–28 (in Chinese)
Liu Guangting, Mai Jiaxuan, Zhang Guoxin. Study on Xibing RCC thin arch dam. Journal of Hydroelectric Engineering, 1997, (2): 19-28(in Chinese)
Liu Guangting, Mai Jiaxuan, Zhang Guoxin. Study on Xibing RCC thin arch dam. Journal of Hydroelectric Engineering, 1997, (2): 19-28(in Chinese)
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed