By ACI Committee 223
Shrinkage-compensating concrete is utilized in development to lessen drying-shrinkage cracking. Its features are just like these of portland-cement concrete. The fabrics, proportions, placement, and curing should still make sure that growth compensates for next drying-shrinkage.
This consultant units forth standards and practices to make sure the improvement of expansive pressure in concrete. as well as a dialogue of simple rules, equipment and information are given masking structural layout, concrete blend proportioning, placement, completing, and curing.
The fabrics, techniques, qc measures, and inspections defined during this record can be proven, monitored, or played as acceptable purely by means of members keeping the proper ACI Certifications or an identical.
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Extra info for ACI 223R-10: Guide for the Use of Shrinkage-Compensating Concrete
H. Barahona-Fernandes, Some effects of light intensity and photoperiod on the sea bass larvae (Dicentrarchus labrax) reared at the Centre Oceanologique de Bretagne. Aquaculture 17, 311-321 (1979).  A. Tandler, C. Mason, Light and food density effects on the growth and survival of larval gilthead seabream (Sparus aurata, Linnaeus, Sparidae). World Mariculutre Society Special Publication Series 3, 103-116 (1983).  P. Dutton, Effects of experience on feeding success by larval white seabass, Atractoscion nobilis.
Labrax because the longer photoperiods caused these larvae to expend more energy than was gained through feed consumption [14, 72]. The differences described here highlight the potential differences between species and care should be taken to determine species preferences to photoperiods being considered for culture. Rearing larvae under the inappropriate photoperiod has the potential to cause problems such as slow growth, malformations and poor survival. Additional research for photoperiod manipulation should include investigation of changes in optimal photoperiod levels throughout development.
60] M Yúfera, MJ Darias: The onset of exogenous feeding in marine fish larvae. Aquaculture (2007), 268:53-63.  I Martínez, FJ Moyano, C Fernández-Díaz, M Yúfera: Digestive enzyme activity during larval development of the Senegal sole (Solea senegalensis). Fish Physiology and Biochemistry (1999), 21:317-323.  Ma H, Cahu C, Zambonino J, Yu H, Duan Q, Le Gall M-M, Mai K: Activities of selected digestive enzymes during larval development of large yellow croaker (Pseudosciaena crocea). Aquaculture 2005, 245:239-248.
ACI 223R-10: Guide for the Use of Shrinkage-Compensating Concrete by ACI Committee 223