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January 18, 20260 citationsOpen Access

Stability of Saturated Granular Systems as a State Problem A First-Principles Perspective

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MWManfred Wittig

Key Points

  • The aim is to explore the stability of saturated granular systems through a first-principles viewpoint.
  • Formulated stability as a state problem.
  • Employed conservation laws and mechanical principles.
  • Discussed transitions as state transitions caused by energetic loss.
  • Outlined the Static Enthalpy Equilibrium approach as an example.
  • Introduced a framework that reinterprets stability and failure events.
  • Clarified the limitations of traditional process-based descriptions.
  • Highlighted energetic admissibility as a core concept in stability assessment.

Abstract

This preprint presents a first-principles perspective on the stability of saturated granular systems by formulating stability as a state problem rather than a purely path-dependent process. Starting from fundamental mechanical considerations—conservation laws, gravity, buoyancy, and geometric constraints—stability is interpreted as a property of energetically admissible configurations. Transitions commonly described as failure events are discussed as state transitions, triggered by external disturbances but caused by the loss of energetic admissibility of the preceding state. The paper does not introduce a new constitutive model and does not aim to replace classical soil mechanics; instead, it provides a complementary conceptual framework that clarifies the scope and limitations of process-based descriptions. A specific realization of this perspective, referred to as the Static Enthalpy Equilibrium (SEE) approach, is briefly outlined as an illustrative example. The primary purpose of this work is to make the underlying conceptual foundations explicit and to provide a unifying reference for related analytical and experimental studies.

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Cite This Study

Manfred Wittig (2026) studied this question.

synapsesocial.com/papers/696c785beb60fb80d13967fchttps://doi.org/10.5281/zenodo.18270006
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Also Consider

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

  1. 1An energetic state functional for saturated granular systems: Static enthalpy equilibrium as a criterion for stability and liquefaction2026
  2. 2An energetic state functional for saturated granular systems: Static enthalpy equilibrium as a criterion for stability and liquefaction2026
  3. 3Energetic Stability of Saturated Granular Packings under Buoyancy: A Landau-Type Formulation of Static Enthalpy Equilibrium2026
  4. 4Energetic Stability and Structural Admissibility in Granular Systems: Hydro-Mechanical Coupling and Saturation-Induced Destabilization2026
  5. 5Energetic stability and structural admissibility in granular systems2026