Underwater Concrete—Impact of Fine Particles in Cement …
137
References
1. Yao SX, Gerwick BC (2004) Underwater concrete, construction issues. Concrete International,
pp 60–64
2. Ka´ nka S, Sołtysik R (2010) Examples of the use of underwater concreting technology in the
renovation of hydrotechnical structures. Przegl˛ ad Budowlany 7–8:54–57
3. Ka´ nka S, Rysiewicz M (2011) Experience with concreting the foundation of a cylindrical intake
tower using underwater concrete. In˙ zynieria i Budownictwo 67(10):519–522
4. Okamura H, Ozawa K (1995) Mix design for self-compacting concrete. Concr Libr JSCE 25
5. Okamura H, Ozawa K, Ouchi M (1996) Self-compacting high performance concrete. Collcted
Papers (University of Tokyo Department of Civil Engineering) 34:33–41
6. Khayat KH, Sonebi M (2001) Effect of mixture composition on washout resistance of highly
flowable underwater concrete. ACI Mater J 289–295
7. Khayat KH, Assaad J (2003) Relationship between washout resistance and rheological
properties of high-performance underwater concrete. ACI Mater J 185–193
8. Yao SX, Gerwick BC (2004) Underwater concrete, part 3: proper mixture proportioning. Concr
Int 77–82
9. Sonebi M, Tamimi AK, Bartos PJM (2000) Application of factorial models to predict the
effect antiwashout admixture, superplasticizer and cement on slump, flow time and washout
resistance of underwater concrete. Mater Struct 33:317–323
10. Sam XY, Berner DE, Gerwick BC (1999) Assesment of underwater concrete technologies for
in-the-wet construction of navigation structures. US Army Corps of Engineers, USA
11. Ramachandran VS (1984) Concrete admixtures handbook. Noyes Publications, Park Ridge,
N.J., pp 528–533
12. Kawai T (1987) Non-Dispersible underwater concrete using polymers, marine concrete. In:
International congress on polymers in concrete, Brighton, England
13. Khayat KH (1995) Effects of antiwashout admixtures on fresh concrete properties. ACI Mater
J 92(2):161–174
14. Van Chanh N (2008) Design and construction of antiwashout underwater concrete. In: The 3rd
ACF international conference ACF/VCA, Ho Chi Minh, Vietnam, pp 356–364
15. Khayat KH, Yahia A, Sonebi M (1988) Applications of statistical models for proportioning underwater concrete. In: 4th International conference on recent advanced in concrete
technology, Japan, pp 95–113
16. Grzeszczyk S, Jurowski K (2015) Effect of metakaolin addition on the properties of self
compacting concrete for underwater construction. Cement Wapno Beton 6:393–400
17. McLeish A (1994) Underwater concreting and repair. Halsted Press, New York, USA
18. Yousri KM (2008) Self-flowing underwater concrete mixtures. Mag Conc Res 60(1):1–10
19. Kojouri SJ, Abang Ali AA, Farzadnia N (2016) Effect of colloidal nano silica as a viscosity
modifying agent in self compacting concrete with high volume POFA. Adv Mater Res
1133:491–495
20. Yao SX, Gerick BC, Underwater Concrete—mix design and construction particles, Inc. San
Francisco, CA, USA
21. Grzeszczyk S, Jurowski K, Bosowska K, Grzymek M (2019) The role nanoparticles in decrease
washout of underwater concrete. Constr Build Mater 203:670–678
22. Grzeszczyk S, Jurowski K, Kowalska J (2019) Effects of adding granulated blast-furnace slag
to cement on the washout of concrete mixes in underwater construction. Cement Wapno Beton
6:515–524
137
References
1. Yao SX, Gerwick BC (2004) Underwater concrete, construction issues. Concrete International,
pp 60–64
2. Ka´ nka S, Sołtysik R (2010) Examples of the use of underwater concreting technology in the
renovation of hydrotechnical structures. Przegl˛ ad Budowlany 7–8:54–57
3. Ka´ nka S, Rysiewicz M (2011) Experience with concreting the foundation of a cylindrical intake
tower using underwater concrete. In˙ zynieria i Budownictwo 67(10):519–522
4. Okamura H, Ozawa K (1995) Mix design for self-compacting concrete. Concr Libr JSCE 25
5. Okamura H, Ozawa K, Ouchi M (1996) Self-compacting high performance concrete. Collcted
Papers (University of Tokyo Department of Civil Engineering) 34:33–41
6. Khayat KH, Sonebi M (2001) Effect of mixture composition on washout resistance of highly
flowable underwater concrete. ACI Mater J 289–295
7. Khayat KH, Assaad J (2003) Relationship between washout resistance and rheological
properties of high-performance underwater concrete. ACI Mater J 185–193
8. Yao SX, Gerwick BC (2004) Underwater concrete, part 3: proper mixture proportioning. Concr
Int 77–82
9. Sonebi M, Tamimi AK, Bartos PJM (2000) Application of factorial models to predict the
effect antiwashout admixture, superplasticizer and cement on slump, flow time and washout
resistance of underwater concrete. Mater Struct 33:317–323
10. Sam XY, Berner DE, Gerwick BC (1999) Assesment of underwater concrete technologies for
in-the-wet construction of navigation structures. US Army Corps of Engineers, USA
11. Ramachandran VS (1984) Concrete admixtures handbook. Noyes Publications, Park Ridge,
N.J., pp 528–533
12. Kawai T (1987) Non-Dispersible underwater concrete using polymers, marine concrete. In:
International congress on polymers in concrete, Brighton, England
13. Khayat KH (1995) Effects of antiwashout admixtures on fresh concrete properties. ACI Mater
J 92(2):161–174
14. Van Chanh N (2008) Design and construction of antiwashout underwater concrete. In: The 3rd
ACF international conference ACF/VCA, Ho Chi Minh, Vietnam, pp 356–364
15. Khayat KH, Yahia A, Sonebi M (1988) Applications of statistical models for proportioning underwater concrete. In: 4th International conference on recent advanced in concrete
technology, Japan, pp 95–113
16. Grzeszczyk S, Jurowski K (2015) Effect of metakaolin addition on the properties of self
compacting concrete for underwater construction. Cement Wapno Beton 6:393–400
17. McLeish A (1994) Underwater concreting and repair. Halsted Press, New York, USA
18. Yousri KM (2008) Self-flowing underwater concrete mixtures. Mag Conc Res 60(1):1–10
19. Kojouri SJ, Abang Ali AA, Farzadnia N (2016) Effect of colloidal nano silica as a viscosity
modifying agent in self compacting concrete with high volume POFA. Adv Mater Res
1133:491–495
20. Yao SX, Gerick BC, Underwater Concrete—mix design and construction particles, Inc. San
Francisco, CA, USA
21. Grzeszczyk S, Jurowski K, Bosowska K, Grzymek M (2019) The role nanoparticles in decrease
washout of underwater concrete. Constr Build Mater 203:670–678
22. Grzeszczyk S, Jurowski K, Kowalska J (2019) Effects of adding granulated blast-furnace slag
to cement on the washout of concrete mixes in underwater construction. Cement Wapno Beton
6:515–524
