425 / 2024-03-15 18:58:02
An Effect of Hydraulic Heave Phenomenon on Fine Sands Permeability in Laboratory Conditions
Hydraulic heave phenomenon,Fine sand,Density index,Permeability coefficient,Empirical formula
Draft Accepted
Agnieszka Dąbska / Warsaw University of Technology
Bartosz Bednarz / Warsaw University of Technology
Karol Borzyński / Warsaw University of Technology
Kacper Kawczyński / Kawczyński development Kacper Kawczyński
The work aims to assess the impact of the heave phenomenon on the permeability properties of fine sands based on laboratory tests. The critical issue is that soil structure changes as hydraulic heave occurs, affecting the soil porosity responsible for the permeability characteristics of the soil. The results of laboratory tests conducted on a unique stand are presented. Three fine-grained sands with three different density indexes were used. The sands' permeability was examined before the critical hydraulic gradient of the heave was tested. Hence, the soil volume changes were accurately measured, and permeability was examined again. The constant head method was used for permeability tests. Moreover, the permeability was evaluated based on empirical formulas for sands before and after structure changes. The values of tested and calculated sand permeability were precisely analysed and compared. It was revealed that the hydraulic heave phenomenon significantly impacts the permeability properties of sands, causing an increase in their permeability. The results can have important implications for the design and safety assessment of hydraulic structures, foundations and other engineering structures founded on soil susceptible to failure due to seepage, highlighting the need to consider the heave phenomenon in the design process

 
Important Date
  • Conference Date

    Oct 14

    2024

    to

    Oct 17

    2024

  • Sep 30 2024

    Draft paper submission deadline

  • Oct 17 2024

    Registration deadline

Sponsored By
International Association for Hydro Environment Engineering and Research Asia Pacific Division
Organized By
Changjiang River Scientific Research Institute
Sichuan University
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