26 results on '"Smyth, Thomas A.G."'
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2. Impact of temporal beach grain size variability on aeolian sediment transport and topographic evolution in a microtidal environment
3. Dune slope, not wind speed, best predicts bare sand in vegetated coastal dunes
4. Extent, accuracy and repeatability of bare sand and vegetation cover in dunes mapped from aerial imagery is highly variable
5. Airflow Dynamics Over Unvegetated and Vegetated Dunes
6. Scale-dependent perspectives on the geomorphology and evolution of beach-dune systems
7. Nebkha flow dynamics and shadow dune formation
8. Anchored Dunes
9. Aeolian sand transport and beach morphology influenced by temporal beach grain size variability in a microtidal environment
10. A review of Computational Fluid Dynamics (CFD) airflow modelling over aeolian landforms
11. Flow within a Trough Blowout at Cape Cod
12. Numerical Modelling of Turbulent Flow Structures in a Trough Blowout
13. Surfzone-Beach-Dune interactions: Flow and Sediment Transport across the Intertidal Beach and Backshore
14. Aeolian dynamics of beach scraped ridge and dyke structures
15. Three dimensional airflow patterns within a coastal trough–bowl blowout during fresh breeze to hurricane force winds
16. CFD flow dynamics over model scarps and slopes
17. Topographic change and numerically modelled near surface wind flow in a bowl blowout
18. Flow dynamics over a foredune scarp
19. CFD flow dynamics over model scarps and slopes.
20. Event‐scale dynamics of a parabolic dune and its relevance for mesoscale evolution
21. Scale-dependent perspectives on the geomorphology and evolution of beachdune systems
22. Flow deflection over a foredune
23. Briefing: Young Coastal Scientists and Engineers Conference 2011
24. Corrigendum to “Three dimensional airflow patterns within a coastal trough–bowl blowout during fresh breeze to hurricane force winds” [Aeolia 9 (147) 111–123]
25. High resolution measured and modelled three-dimensional airflow over a coastal bowl blowout
26. Multi-scale evolution of a large-scale coastal blowout using aerial photography and DoDs.
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