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February 2, 20260 citationsOpen Access

Terrain readjustment due to spontaneous liquefaction in saturated granular deposits – a two-dimensional end-state model (SEE)

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MWManfred Wittig

Key Points

  • The aim is to develop a model for understanding terrain changes following liquefaction in saturated granular deposits.
  • Developed a state-based end-state formulation for terrain readjustment.
  • Analyzed geometrical configurations post-mobilization derived from energy minimization.
  • Examined mass conservation constraints within the model.
  • Identified metastable end states formed by local geometric equilibration.
  • A constant elevation configuration acts as an asymptotic attractor for repeated states.
  • Dominant adjustments occur during initial mobilization, with minor changes in subsequent states.

Abstract

This work presents a state-based end-state formulation for terrain readjustment after liquefaction in saturated granular deposits. The analysis focuses on the geometrically admissible configurations that establish once mobilization has occurred, derived from energy minimization under strict mass conservation. The formulation is deliberately independent of triggering mechanisms, temporal evolution, and constitutive stress–strain descriptions. Admissible configurations are shown to form a sequence of metastable end states, characterized by local geometric equilibration. A configuration of constant elevation represents the asymptotic geometric attractor of repeated admissible states rather than the immediate outcome of a single liquefaction event. A representative closed-domain example illustrates that the dominant geometric adjustment occurs during the first mobilization, while subsequent admissible states involve only minor internal readjustment that may be difficult to detect.The closed-domain formulation presented here serves as a geometric reference case for future extensions to systems with open boundaries or evolving constraints.

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Cite This Study

Manfred Wittig (2026) studied this question.

synapsesocial.com/papers/6980fd9dc1c9540dea80f622https://doi.org/10.5281/zenodo.18421306
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Spontaneous liquefaction as an energy-releasing state transition in saturated granular systems2026
  2. 2Post-collapse densification as an energy-conditioned state evolution in saturated granular systems2026
  3. 3An energetic state functional for saturated granular systems: Static enthalpy equilibrium as a criterion for stability and liquefaction2026
  4. 4An energetic state functional for saturated granular systems: Static enthalpy equilibrium as a criterion for stability and liquefaction2026
  5. 5Energetic Stability of Saturated Granular Packings under Buoyancy: A Landau-Type Formulation of Static Enthalpy Equilibrium2026