Anuga-Publications

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References Anuga

Publication(s)YearTypeCited
Nielsen, O.; Roberts, S.; Gray, D.; McPherson, A.; Hitchman, A.; 2005. Hydrodynamic modelling of coastal inundation.. In: (eds.).. .
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2005Model overview 11
Drie, R.V.; Simon, M.; Schymitzek, I.; 2008. 2D Hydraulic Modelling over a Wide Range of Applications with ANUGA.. Engineers Australia, 9th National Conference on Hydraulics in Water Engineering. Volume .
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2008Model overview 2
Bock, Hans Georg; Kostina, Ekaterina; Phu, Hoang Xuan; Rannacher, Rolf; Roberts, S. G.; Nielsen, O. M.; Jakeman, J.; 2008. Simulation of Tsunami and Flash Floods. In: (eds.)Modeling, Simulation and Optimization of Complex Processes.. 489–498.
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2008Model overview 10
Baldock, T. E.; Barnes, M. P.; Guard, P. A.; Hie, Thomas; Hanslow, D.; Ranasinghe, R.; Gray, D.; Nielsen, O.; 2007. Modelling tsunami inundation on coastlines with characteristic form.. 16th Australasian Fluid Mechanics Conference (AFMC).. Volume .
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2007Model overview 7
Baldock, T. E.; Morrison, N.; Shimamoto, T.; Barnes, Matthew P.; Gray, D.; Nielsen, O.; 2007. Application and testing of the ANUGA Tsunami Model for overtopping and coastal sediment transport. In: (eds.).. 6.
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2007Model overview --
Perignon, M. C.; Tucker, G. E.; Griffin, E. R.; Friedman, J. M.; 2013. Effects of riparian vegetation on topographic change during a large flood event, Rio Puerco, New Mexico, USA: VEGETATION EFFECTS ON TOPOGRAPHIC CHANGE. Journal of Geophysical Research: Earth Surface, 118, 1193–1209. 10.1002/jgrf.20073
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2013Related theory 26
Intan, Rolly; Chi, Chi-Hung; Palit, Henry N.; Santoso, Leo W.; Mungkasi, Sudi; Darmawan, J. B. Budi; 2015. Fast and Efficient Parallel Computations Using a Cluster of Workstations to Simulate Flood Flows. In: (eds.)Intelligence in the Era of Big Data.. 469–477.
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2015Model overview 3
Mungkasi, S; Roberts, S G; 2013. Validation of ANUGA hydraulic model using exact solutions to shallow water wave problems. Journal of Physics: Conference Series, 423, 012029. 10.1088/1742-6596/423/1/012029
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2013Model overview 15
Roberts, Stephen Gwyn; Stals, Linda; Nielsen, Ole Moller; 2007. Parallelisation of a finite volume method for hydrodynamic inundation modelling. ANZIAM Journal, 49, 558. 10.21914/anziamj.v48i0.153
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2007Model overview 2
Griffin, Jonathan; Latief, Hamzah; Kongko, Widjo; Harig, Sven; Horspool, Nick; Hanung, Raditya; Rojali, Aditia; Maher, Nicola; Fuchs, Annika; Hossen, Jakir; Upi, Supryiati; Edi Dewanto, Sri; Rakowsky, Natalja; Cummins, Phil; 2015. An evaluation of onshore digital elevation models for modeling tsunami inundation zones. Frontiers in Earth Science, 3, . 10.3389/feart.2015.00032
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2015Model application 35
Jiang, Zhonglian; Baldock, Tom E.; 2015. Direct bed shear measurements under loose bed swash flows. Coastal Engineering, 100, 67–76. 10.1016/j.coastaleng.2015.04.001
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2015Model application 10
Hossen, M. Jakir; Cummins, Phil R.; Roberts, Stephen G.; Allgeyer, Sebastien; 2015. Time Reversal Imaging of the Tsunami Source. Pure and Applied Geophysics, 172, 969–984. 10.1007/s00024-014-1014-5
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2015Model application 16
Lapotre, Mathieu G. A.; Lamb, Michael P.; 2015. Hydraulics of floods upstream of horseshoe canyons and waterfalls: FLOOD HYDRAULICS UPSTREAM OF WATERFALLS. Journal of Geophysical Research: Earth Surface, 120, 1227–1250. 10.1002/2014JF003412
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2015Model application 7
Wenzel, Friedemann; Zschau, Jochen; Goseberg, N.; Lämmel, G.; Taubenböck, H.; Setiadi, N.; Birkmann, J.; Schlurmann, T.; 2014. The Last-Mile Evacuation Project: A Multi-disciplinary Approach to Evacuation Planning and Risk Reduction in Tsunami-Threatened Coastal Areas. In: (eds.)Early Warning for Geological Disasters.. 207–226.
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2014Model application 1
Guerra, Maricarmen; Cienfuegos, Rodrigo; Escauriaza, Cristian; Marche, Fabien; Galaz, José; 2014. Modeling Rapid Flood Propagation Over Natural Terrains Using a Well-Balanced Scheme. Journal of Hydraulic Engineering, 140, 04014026. 10.1061/(ASCE)HY.1943-7900.0000881
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2014Model application 9
Kain, Claire L.; Lewarn, Barrie; Rigby, Edward H.; Mazengarb, Colin; 2020. Tsunami Inundation and Maritime Hazard Modelling for a Maximum Credible Tsunami Scenario in Southeast Tasmania, Australia. Pure and Applied Geophysics, 177, 1549–1568. 10.1007/s00024-019-02384-0
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2020Model application 2
Chien, Nguyen Quang; Keat Tan, Soon; 2011. Google Earth as a tool in 2-D hydrodynamic modeling. Computers & Geosciences, 37, 38–46. 10.1016/j.cageo.2010.03.006
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2011Model application 18
Mungkasi, Sudi; Roberts, Stephen G.; 2010. On the best quantity reconstructions for a well balanced finite volume method used to solve the shallow water wave equations with a wet/dry interface. ANZIAM Journal, 51, 48. 10.21914/anziamj.v51i0.2576
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2010Model application 13
Weng, Zhe; Strazdins, Peter E.; 2014. Acceleration of a Python-Based Tsunami Modelling Application via CUDA and OpenHMPP. . Volume .
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2014Model application 2
Poliyapram, Vinayaraj; Raghavan, Venkatesh; Metz, Markus; Delucchi, Luca; Masumoto, Shinji; 2017. Implementation of Algorithm for Satellite-Derived Bathymetry using Open Source GIS and Evaluation for Tsunami Simulation. ISPRS International Journal of Geo-Information, 6, 89. 10.3390/ijgi6030089
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2017Model application 7
Issermann, Maikel; Chang, Fi-John; 2020. Uncertainty Analysis of Spatiotemporal Models with Point Estimate Methods (PEMs)—The Case of the ANUGA Hydrodynamic Model. Water, 12, 229. 10.3390/w12010229
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2020Model application 3
Mungkasi, Sudi; Roberts, Stephen Gwyn; 2012. [No title found]. Jurnal Ilmu Komputer dan Informasi, 5, 1. 10.21609/jiki.v5i1.180
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2012Model application 0
Githui, F.; Hussain, A.; Morris, M.; 2020. Incorporating infiltration in the two-dimensional ANUGA model for surface irrigation simulation. Irrigation Science, , . 10.1007/s00271-020-00679-y
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2020Model application 0
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Nr. of publications: 22
Total citations: 173
h-index: 9

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