Canadian Geotechnical Journal · 2006 · 96 citations · 14 references
EngineeringSoil SalinityHigher Salt ConcentrationEarth ScienceUnfrozen WaterGeotechnical EngineeringFreeze-thaw CyclingBiophysicsHydrogeologyIce-water SystemSalt DomeCryosphereSedimentologySediment TransportIce CrystalsCivil EngineeringIce-structure InteractionPeriglacial ProcessCoarse-grained Sands
Unfrozen water is very important because it has a significant influence on the mechanical response of a frozen soil. It is particularly important to know if the water is available as free water or if it is bonded to the solid particles. A simple experimental setup was used to observe the freezing process of a coarse-grained soil under controlled freezing gradients and salinities. A fluorescent tracer helped to determine the location of the unfrozen water during freezing. Depending on the salinity and the thermal gradient, pockets of unfrozen water with a much higher salt concentration were trapped in pores under increased pore pressures. Even at salinities as low as 2 g/L, spicular ice crystals were identified with channels containing unfrozen water between the ice crystals. The experiments further indicate that the unfrozen water in coarse-grained frozen soils is in the middle of the pore space compared to the unfrozen water film that immediately surrounds fine-grained saline or non-saline soil particles.Key words: frozen soil, salinity, frost penetration, thermal conductivity.
14
The Principle of Effective Stress
A. W. Bishop · Teknisk ukeblad/TU-nett/Teknisk ukeblads nettavis · 1959 · 1.4K citations
Engineering, Stress, Mechanics +7
Stephen W. Taber · The Journal of Geology · 1929 · 355 citations
Geotechnical Engineering, Freeze-thaw Cycling, Ice Crystals +9