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In CPB, tailings are traditionally mixed with water (typically 25% by weight) and small amounts (3 7%) of binders, and backfilled into excavated underground areas.
Hence, defining the hydraulic processes in CPB requires a fully coupled THMC model specific for CPB materials.
Modeling of the coupled THMC processes that occur in CPB are crucial for reliably assessing and predicting the performance of CPB structures.
The obtained results provide better insight into the process of the strength increase and spatial distribution in CPB structures as well as contribute to more cost-effective engineering designs of CPB structures.
SUMITOMO BANK LTD., Osaka, Japan, sold almost a third of its holdings in CPB Inc., Honolulu, back to the company, which operates Central Pacific Bank.
As discussed previously, the initial sulphate content in CPB can significantly affect the strength development in CPB mass.
The results showed that the pores in CPB specimens were mainly small, "non-damaging" ones, which accounted for about 70 vol% of all pores in CPB specimens.
To investigate the changes in CPB strength in the field under different curing and loading conditions.
Therefore, modelling and simulation of hydraulic processes in CPB are necessary.
Therefore, higher CPB strength is observed in CPB with a higher initial temperature.
Therefore, the developed model can simulate the improvements in CPB strength with increased cement content.
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