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Three-Dimensional Numerical Modelling of Real-Field Dam-Break Flows: Review and Recent Advances

期刊

WATER
卷 15, 期 17, 页码 -

出版社

MDPI
DOI: 10.3390/w15173130

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dam break; flooding; numerical modelling; real-world topography; review; three-dimensional models

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This paper systematically reviews literature studies on three-dimensional hydrodynamic models for simulating large-scale dam-break flooding on irregular real-world topography. It analyzes governing equations, numerical methods, recent advances in numerical techniques, modelling accuracy, and computational efficiency. The paper highlights dam-break case studies for model validation and compares the advantages and limitations of three-dimensional dam-break models with commonly used two-dimensional depth-averaged models. The review aims to inform researchers and modellers interested in numerical modelling of dam-break flow on recent advances and developments in three-dimensional hydrodynamic models.
Numerical modelling is a valuable and effective tool for predicting the dynamics of the inundation caused by the failure of a dam or dyke, thereby assisting in mapping the areas potentially subject to flooding and evaluating the associated flood hazard. This paper systematically reviews literature studies adopting three-dimensional hydrodynamic models for the simulation of large-scale dam-break flooding on irregular real-world topography. Governing equations and numerical methods are analysed, as well as recent advances in numerical techniques, modelling accuracy, and computational efficiency. The dam-break case studies used for model validation are highlighted. The advantages and limitations of the three-dimensional dam-break models are compared with those of the commonly used two-dimensional depth-averaged ones. This review mainly aims at informing researchers and modellers interested in numerical modelling of dam-break flow over real-world topography on recent advances and developments in three-dimensional hydrodynamic models so that they can better direct their future research. Practitioners can find in this review an overview of available three-dimensional codes (research, commercial, freeware, and open-source) and indications for choosing the most suitable numerical method for the application of interest.

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