The numerical simulation of shallow water: Estimation of the roughness coefficient on the flood stage

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Abstract

The results of the numerical simulations of the dynamics of shallow waters for Volga-Akhtuba Floodplain are discussed. The mathematical model is based on the system of Saint-Venant equations. Numerical solution applies a combined Lagrangian-Eulerian (cSPH-TVD) algorithm. We have investigated the features of the spring flood in 2011 and found the inapplicability of the hydrodynamical model with the constant roughness coefficient n M. We have found a good agreement between the results of numerical simulations and the observational data at gauging stations which allows us to estimate n M in low water n M min = 0.02 and the maximum water level in the river Volga n M max = 0.06-0.07. © 2013 Sergey S. Khrapov et al.

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Khrapov, S. S., Pisarev, A. V., Kobelev, I. A., Zhumaliev, A. G., Agafonnikova, E. O., Losev, A. G., & Khoperskov, A. V. (2013). The numerical simulation of shallow water: Estimation of the roughness coefficient on the flood stage. Advances in Mechanical Engineering, 2013. https://doi.org/10.1155/2013/787016

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