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- W4306985013 abstract "The ability to quantitatively and non-invasively characterize complex multiphase geomaterials is still a major challenge to the engineering, construction, and geophysical fields. In the context of accelerating climate change, construction on permafrost requires remedial measures and an appropriate characterization of permafrost (e.g., ice content, unfrozen water content, porosity, ice lenses, soil type, and mechanical properties). Current techniques are insufficient for efficient characterization of permafrost samples. Here, we propose an ultrasonic sensing technique and a signal interpretation method based on an inverse multiphase poromechanical approach to overcome critical gaps in permafrost characterization. This technique allows us to interpret the measured electrical signal using a theoretical transfer function obtained through an efficient multiphase poromechanical forward solver. Our study demonstrates the potential of the ultrasonic sensing technique for the rapid characterization of permafrost samples in terms of both physical and mechanical properties." @default.
- W4306985013 created "2022-10-22" @default.
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- W4306985013 date "2023-01-01" @default.
- W4306985013 modified "2023-09-24" @default.
- W4306985013 title "Ultrasonic characterization of frozen soils using a multiphase poromechanical approach" @default.
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- W4306985013 doi "https://doi.org/10.1016/j.compgeo.2022.105068" @default.
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