Dense snow avalanche modeling: flow, erosion, deposition and obstacle effects M Naaim, F Naaim-Bouvet, T Faug, A Bouchet Cold regions science and technology 39 (2), 193-204, 2004 | 125 | 2004 |
The design of avalanche protection dams. Recent practical and theoretical developments T Jóhannesson, P Gauer, K Lied, M Barbolini, U Domaas, T Faug, ... Mitigative Measures against, 200, 2009 | 112* | 2009 |
Mean steady granular force on a wall overflowed by free-surface gravity-driven dense flows T Faug, R Beguin, B Chanut Physical Review E 80 (2), 021305, 2009 | 93 | 2009 |
Depth-averaged analytic solutions for free-surface granular flows impacting rigid walls down inclines T Faug Physical Review E 92 (6), 062310, 2015 | 85 | 2015 |
Dry granular flow modelling including erosion and deposition M Naaim, T Faug, F Naaim-Bouvet Surveys in geophysics 24 (5), 569-585, 2003 | 78 | 2003 |
Standing jumps in shallow granular flows down smooth inclines T Faug, P Childs, E Wyburn, I Einav Physics of Fluids (1994-present) 27 (7), 073304, 2015 | 74 | 2015 |
Dry granular avalanche impact force on a rigid wall: Analytic shock solution versus discrete element simulations A Albaba, S Lambert, T Faug Physical Review E 97, 052903, 2018 | 72 | 2018 |
Macroscopic force experienced by extended objects in granular flows over a very broad Froude-number range T Faug The European Physical Journal E 38 (5), 1-10, 2015 | 72 | 2015 |
Overrun length of avalanches overtopping catching dams: Cross-comparison of small-scale laboratory experiments and observations from full-scale avalanches T Faug, P Gauer, K Lied, M Naaim Journal of Geophysical Research 113 (F3), F03009, 2008 | 68 | 2008 |
Experimental investigation on steady granular flows interacting with an obstacle down an inclined channel: study of the dead zone upstream from the obstacle. Application to … T Faug, P Lachamp, M Naaim Natural Hazards and Earth System Science 2 (3/4), 187-191, 2002 | 63 | 2002 |
Return period calculation and passive structure design at the Taconnaz avalanche path, France M Naaim, T Faug, F Naaim, N Eckert Annals of Glaciology 51 (54), 89-97, 2010 | 61 | 2010 |
Quantitative risk and optimal design approaches in the snow avalanche field: Review and extensions N Eckert, CJ Keylock, D Bertrand, E Parent, T Faug, P Favier, M Naaim Cold Regions Science and Technology, 2012 | 55 | 2012 |
Bayesian optimal design of an avalanche dam using a multivariate numerical avalanche model N Eckert, E Parent, T Faug, M Naaim Stochastic Environmental Research and Risk Assessment 23 (8), 1123-1141, 2009 | 53 | 2009 |
Optimal design under uncertainty of a passive defense structure against snow avalanches: from a general Bayesian framework to a simple analytical model N Eckert, E Parent, T Faug, M Naaim Nat Hazards Earth Syst Sci 8, 1067-1081, 2008 | 49 | 2008 |
Varying dam height to shorten the run-out of dense avalanche flows: developing a scaling law from laboratory experiments T Faug, M Naaim, D Bertrand, P Lachamp, F Naaim-Bouvet Surveys in geophysics 24 (5), 555-568, 2003 | 45 | 2003 |
Equation for the force experienced by a wall overflowed by a granular avalanche: experimental verification T Faug, P Caccamo, B Chanut Physical Review E 84 (5), 051301, 2011 | 39 | 2011 |
Time-varying force from dense granular avalanches on a wall B Chanut, T Faug, M Naaim Physical Review E 82 (4), 041302, 2010 | 38 | 2010 |
A scaling law for impact force of a granular avalanche flowing past a wall T Faug, P Caccamo, B Chanut Geophysical Research Letters 39 (23), 2012 | 37 | 2012 |
The full-scale avalanche test-site at Lautaret Pass (French Alps) E Thibert, H Bellot, X Ravanat, F Ousset, G Pulfer, M Naaim, ... Cold Regions Science and Technology, 2015 | 36 | 2015 |
Impact force of granular flows on walls normal to the bottom: slow versus fast impact dynamics T Faug Canadian Geotechnical Journal, 2020 | 35 | 2020 |