Novel Slope Source Term Treatment for Preservation of Quiescent Steady States in Shallow Water Flows

  • Rehman, Khawar
  • Cho, Yong-Sik
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초록

This paper proposes a robust method for modeling shallow-water flows and near shore tsunami propagation, applicable for both simple and complex geometries with uneven beds. The novel aspect of the model includes the introduction of a new method for slope source terms treatment to preserve quiescent equilibrium over uneven topographies, applicable to both structured and unstructured mesh systems with equal accuracy. Our model is based on the Godunov-type finite volume numerical approximation. Second-order spatial and temporal accuracy is achieved through high resolution gradient reconstruction and the predictor-corrector method, respectively. The approximate Riemann solver of Harten, Lax, and van Leer with contact wave restoration (HLLC) is used to compute fluxes. Comparisons of the model's results with analytical, experimental, and published numerical solutions show that the proposed method is capable of accurately predicting experimental and real-time tsunami propagation/inundation, and dam-break flows over varying topographies.

키워드

finite volume methodslope source term treatmentshallow water flowstwo-dimensional modelswell-balanced schemeFINITE-VOLUME MODELHYPERBOLIC CONSERVATION-LAWSWELL-BALANCED SCHEMEHYDROSTATIC RECONSTRUCTIONUNSTRUCTURED GRIDSNUMERICAL-MODELWENO SCHEMESRUN-UPEQUATIONSSIMULATION
제목
Novel Slope Source Term Treatment for Preservation of Quiescent Steady States in Shallow Water Flows
저자
Rehman, KhawarCho, Yong-Sik
DOI
10.3390/w8110488
발행일
2016-11
유형
Article
저널명
Water (Switzerland)
8
11
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