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A Mass-Conservative Numerical Solution for Finite-Strain Consolidation during Continuous Soil Deposition (CROSBI ID 560645)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Gjerapic, Goran ; Znidarcic, Dobroslav A Mass-Conservative Numerical Solution for Finite-Strain Consolidation during Continuous Soil Deposition // Proceedings of the Geo Institute Congress / Siegel, Timothy C. ; Luna, Ronaldo ; Hueckel, Tomasz et al. (ur.). Denver (CO): ASCE Publications, 2007. str. 1-10

Podaci o odgovornosti

Gjerapic, Goran ; Znidarcic, Dobroslav

engleski

A Mass-Conservative Numerical Solution for Finite-Strain Consolidation during Continuous Soil Deposition

Consolidation of accreting soft soils is a topic of significant interest for engineers dealing with mine tailings deposition, hydraulic fills, dredging deposits, and wetland construction. In these cases, the classical Terzaghi's theory often fails to produce satisfactory solutions due to variations in compressibility and permeability under large deformations. The finite-strain theory introduced by Gibson allows for the non-linearity of material properties and provides an accurate description of soft soil deposits undergoing large displacements. Numerical accretion models based on Gibson's theory need to account for both the non-linearity of the governing equation and the continuous domain change. This paper investigates the numerical performance of several one-dimensional finite-difference schemes with different time-stepping algorithms and mesh discretization procedures. An optimal mass-conservative scheme is selected and implemented into a numerical model. The presented field example demonstrates that the employed mapping technique ensures both mass and water conservation, essential for water balance and storage capacity prediction in slurry disposal projects.

Numerical models; Soil consolidation; Strain; Wetlands; Dredging; Hydraulic fill; Sediment deposits

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Podaci o prilogu

1-10.

2007.

objavljeno

Podaci o matičnoj publikaciji

Proceedings of the Geo Institute Congress

Siegel, Timothy C. ; Luna, Ronaldo ; Hueckel, Tomasz ; Laloui, Lyesse

Denver (CO): ASCE Publications

0-7844-0901-3

Podaci o skupu

Geo Institute Congress, Geo-Denver 2007.

predavanje

19.02.2007-21.02.2007

Denver (CO), Sjedinjene Američke Države

Povezanost rada

Rudarstvo, nafta i geološko inženjerstvo