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- W4378876914 abstract "The floating caisson system is a procedure for the construction of breakwaters and docks. The floating caissons are built on floating platforms where a sliding formwork rises gradually for the execution of the structure. While the formwork is sliding, the already concreted caisson strip is gradually submerged in the sea, a few hours after its execution. This construction process has constructive and economic advantages, but its durability is sometimes questioned due to the premature contact of concrete with seawater and the risk of corrosion that it involves. This communication shows the research carried out in the Center for Public Works Studies and Experimentation (CEDEX) to evaluate the influence of seawater curing on reinforced concrete located in XS2 environment. Firstly, a laboratory study has evaluated the effect of seawater curing on three different concretes, made with CEM I (Portland), CEM II (fly ash) and CEM III (slags). Secondly, samples from 5 caissons in 2 different ports have been extracted to evaluate the effects of seawater curing in real caissons. The results obtained conclude that the maximum difference appears in Portland cement concretes in the laboratory research, where the differences in chloride penetration are around 1 cm. Pozzolanic cements tested in the laboratory and real caissons did not show significant differences in terms of the type of curing carried out. Therefore, increasing the coating by 10 mm when the concrete is cured with seawater would ensure that the concrete used in the floating caissons shows, at least, equivalent chloride penetration resistance to the same concrete cured with freshwater, irrespective of the binder used." @default.
- W4378876914 created "2023-06-01" @default.
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- W4378876914 date "2023-01-01" @default.
- W4378876914 modified "2023-09-25" @default.
- W4378876914 title "Influence of Seawater Curing on Reinforced Concrete Located in XS2 Environment" @default.
- W4378876914 cites W2028003305 @default.
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- W4378876914 doi "https://doi.org/10.1007/978-3-031-32519-9_26" @default.
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