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February 11, 2026Mathematics0 citationsOpen Access

A Well-Balanced Wet–Dry Front Reconstruction for Two-Layer Shallow Water Flows

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XWXue Wang

Key Points

  • The aim is to develop a scheme that balances wet–dry fronts in two-layer shallow water equations while preserving water depth positivity.
  • Developed a finite volume method for two-layer shallow water equations.
  • Proposed a reconstruction technique for wet–dry fronts for each layer.
  • Employed a draining time method to ensure positivity of water depth.
  • Conducted numerical experiments to validate the scheme's robustness.
  • The scheme is proven to be well-balanced in steady-state solutions.
  • The method preserves the positivity of water depth across various simulations.
  • Numerical experiments showcase the scheme's stability and accuracy under different conditions.

Abstract

In this paper, a well-balanced and positivity-preserving scheme for the nonconservative two-layer shallow water equations is developed in the framework of the finite volume method. To address the challenges posed by wet–dry fronts, the focus of our study is on reconstructing them for each layer to ensure a well-balanced property. To this end, a new numerical discretization and a special wet–dry front reconstruction are proposed. In addition, the draining time method is employed to ensure the positivity of the water depth. We prove that the proposed scheme is both well-balanced in steady-state solutions and positivity-preserving. Finally, numerical experiments demonstrate the robustness of the scheme.

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Cite This Study

Xue Wang (2026) studied this question.

synapsesocial.com/papers/698c1c11267fb587c655e2b2https://doi.org/10.3390/math14040595
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