References
- Akin, J.E., and Tezduyar, T.E. (2004). "Calculation of the advective limit of the SUPG stabilization parameter for linear and higher-order elements." Computer Methods in Applied Mechanics and Engineering, Vol. 193, No. 21, pp. 1909-1922. https://doi.org/10.1016/j.cma.2003.12.050
- Bova, S.W., and Carey, G.F. (1996) "A symmetric formulation and SU/PG scheme for the shallow-water equations." Advances in Water Resources, Vol. 19, No. 3, pp 123-131. https://doi.org/10.1016/0309-1708(95)00040-2
- Chanson, H. (2006). Analytical solutions of laminar and turbulent dam break wave. River Flow 2006, Edited by Ferreira, Alves, Leal and Cardoso, Taylor & Francis Group, London, ISBN 0-415-40815-6.
- Dressler, R.F. (1952). Hydraulic resistance effect upon the dam-break functions. National Bureau of Standards.
- Hungr, O. (1995). "A model for the runout analysis of rapid flow slides, debris flows, and avalanches." Canadian Geotechnical Journal, Vol. 32, No. 4, pp. 610-623. https://doi.org/10.1139/t95-063
- Jeong, W.C., and Park, Y.J. (2011). "A study on simulation of dam-break wave using two-dimensional finite volume model." Journal of Korea Water Resources Association, Vol. 44, No. 3, pp. 249-262. https://doi.org/10.3741/JKWRA.2011.44.3.249
- Kim, B.H., Han, K.Y., and Ahn, K.H. (2009a). "Propagation analysis of dam break wave using approximate Riemann solver." Journal of the Korean Society of Civil Engineers, Vol. 29, No. 5B, pp. 429-439.
- Kim, D.H., and Cho, Y.S. (2005). "An improved surface gradient method for the computation of hyperbolictype shallow-water equations on irregular bathymetry." Journal of the Korean Society of Civil Engineers, Vol. 25, No. 3B, pp. 223-229.
- Kim, H.J., Kim, J.M., and Cho, Y.S. (2009b). "Numerical analysis of dam-break flow in an experimental channel using cut-cell method." Journal of the Korean Society of Civil Engineers, Vol. 29, No. 2B, pp. 121-129.
- Mangeney, A., Heinrich, P., and Roche, R. (2000). "Analytical solution for testing debris avalanche numerical models. Pure and Applied Geophysics, Vol. 157, No. 6-8, pp. 1081-1096. https://doi.org/10.1007/s000240050018
- Medina, V., Hurlimann, M., and Bateman, A. (2008). "Application of FLATModel, a 2D finite volume code, to debris flows in the northeastern part of the Iberian Peninsula." Landslides, Vol. 5, No. 1, pp. 127-142. https://doi.org/10.1007/s10346-007-0102-3
- Mungkasi, S., and Roberts, S.G. (2011). "A new analytical solution for testing debris avalanche numerical models." ANZIAM Journal, Vol. 52, pp. C349-C363.
- Murillo, J., and Garcia-Navarro, P. (2012). "Wave Riemann description of friction terms in unsteady shallow flows: Application to water and mud/debris floods. Journal of Computational Physics, Vol. 231, No. 4, pp. 1963-2001. https://doi.org/10.1016/j.jcp.2011.11.014
- Naef, D., Rickenmann, D., Rutschmann, P., and McArdell, B.W. (2006). "Comparison of flow resistance relations for debris flows using a one-dimensional finite element simulation model." Natural Hazards and Earth System Science, Vol. 6, No. 1, pp. 155-165. https://doi.org/10.5194/nhess-6-155-2006
- Ritter, A. (1892). "Die Fortpflanzung der Wasserwelle." Vereine Deutscher Ingenieure Zeitswchrift, Vol. 36, pp. 947-954.
- Seo, I.W., and Song, C.G. (2010). "Development of 2D finite element model for the analysis of shallow water flow." Journal of the Korean Society of Civil Engineers, Vol. 30, No. 2B, pp. 199-209.
- Seo, I.W., Kim, Y.D., and Song, C.G. (2014). "Validation of Depth-Averaged Flow Model Using Flat-Bottomed Benchmark Problems." The Scientific World Journal, Vol. 2014, Article ID 197539, 18 pages.
- Song, C.G., and Seo, I.W. (2012). "Numerical simulation of convection-dominated flow using SU/PG scheme." Journal of the Korean Society of Civil Engineers, Vol. 32, No. 3B, pp. 175-183.
- Stoker, J.J. (1957). Water Waves: The Mathematical Theory with Application. Interscience Publishers, New York.
- Toro, E.F. (2001). Shock-capturing Methods for Freesurface Shallow Water Flows. Wiley, New York.
- Whitham, G.B. (1955). "The effects of hydraulic resistance in the dam-break problem." Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, Vol. 227, No. 1170, pp. 399-407. https://doi.org/10.1098/rspa.1955.0019
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