prof. dr. Andersen, Thomas Lykke |
Main research field is coastal engineering with focus on waves and structures, in particular physical modeling of hydraulic response of structures exposed to waves, wave generation and wave analysis. | |
Aalborg University; The Faculty of Engineering, Science and Medicine; Department of Civil Engineering; Hydraulics and Coastal Engineering Laboratory, meer
Functie: Assistent Leraar
Contact op het instituut:
Tel.: +45-(0)96-35 84 86
E-mail: 
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- Innovative coastal technologies for safer European coasts in a changing climate, meer
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A1 publicaties (6) [show] |
Eldrup, M.R.; Andersen, T.L.; Van Doorslaer, K.; Van der Meer, J. (2022). Improved guidance on roughness and crest width in overtopping of rubble mound structures along EurOtop. Coast. Eng. 176: 104152. https://dx.doi.org/10.1016/j.coastaleng.2022.104152, meer
- Burcharth, H.F.; Andersen, T.L.; Lara, J.L. (2014). Upgrade of coastal defence structures against increased loadings caused by climate change: A first methodological approach. Coast. Eng. 87: 112-121. http://dx.doi.org/10.1016/j.coastaleng.2013.12.006, meer
- Mendoza, E.; Silva, R.; Zanuttigh, B.; Angelelli, E.; Andersen, T.L.; Martinelli, L.; Nørgaard, J.Q.H.; Ruol, P. (2014). Beach response to wave energy converter farms acting as coastal defence. Coast. Eng. 87: 97-111. http://dx.doi.org/10.1016/j.coastaleng.2013.10.018, meer
- Nørgaard, J.Q.H.; Andersen, T.L.; Burcharth, H.F. (2014). Distribution of individual wave overtopping volumes in shallow water wave conditions. Coast. Eng. 83: 15–23. http://dx.doi.org/10.1016/j.coastaleng.2013.09.003, meer
- Nørgaard, J.Q.H.; Andersen, T.L.; Burcharth, H.F.; Steendam, G.J. (2013). Analysis of overtopping flow on sea dikes in oblique and short-crested waves. Coast. Eng. 76: 43-54. http://dx.doi.org/10.1016/j.coastaleng.2013.01.012, meer
Vicinanza, D.; Nørgaard, J.H.; Contestabile, P.; Andersen, T.L. (2013). Wave loadings acting on overtopping breakwater for energy conversion. J. Coast. Res. 65(Spec. Issue): 1669-1674. https://dx.doi.org/10.2112/SI65-282.1, meer
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Boekhoofdstukken (3) [show] |
Nørgaard, J.Q.H.; Andersen, L.V.; Andersen, T.L.; Burcharth, H.F. (2012). Displacement of monolithic rubble-mound breakwater crown-walls, in: Lynett, P. et al. (Ed.) Proceedings of the 33rd International Conference Coastal Engineering (ICCE), 1-6 July 2012, Santander, Spain. Coastal Engineering Proceedings, 33: pp. 1-15, meer
- Nørgaard, J.Q.H.; Andersen, T.L. (2012). Investigation of wave transmission from a floating wave dragon wave energy converter, in: ISOPE (Ed.) The Proceedings of the Twenty-second (2012) International Offshore and Polar Engineering Conference, Rhodes, Greece, June 17-22, 2012. The Proceedings of the ... International Offshore and Polar Engineering Conference, 22: pp. 509-516, meer
- Frigaard, P.; Andersen, T.L.; Ramirez, J.R.R.; Sørensen, S.P.H.; Martinelli, L.; Lamberti, A.; Troch, P.; De Vos, L.; Kisacik, D.; Stratigaki, V.; Zou, S.; Monk, K.; Vandamme, J.; Damsgaard, M.L.; Gravesen, H. (2010). Loads on entrance platforms for offshore wind turbines, in: Grüne, J. et al. Proceedings of the HYDRALAB III JOINT TRANSNATIONAL ACCESS USER MEETING. pp. 25-28, meer
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