121 lines
3.9 KiB
BibTeX
121 lines
3.9 KiB
BibTeX
@misc{olaFlow,
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author={Higuera, P.},
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title={olaFlow: {CFD} for waves [{S}oftware].},
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year=2017,
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doi={10.5281/zenodo.1297013},
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url={https://doi.org/10.5281/zenodo.1297013}
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}
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@report{parvin2020,
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author={Amir Parvin},
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title={Processes allowing large block displacement under wave action},
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year={2020},
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}
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@article{cox2018,
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title={Extraordinary boulder transport by storm waves (west of Ireland, winter 2013--2014), and criteria for analysing coastal boulder deposits},
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author={Cox, R{\'o}nadh and Jahn, Kalle L and Watkins, Oona G and Cox, Peter},
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journal={Earth-Science Reviews},
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volume={177},
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pages={623--636},
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year={2018},
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publisher={Elsevier}
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}
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@article{shah2013,
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title={Coastal boulders in Martigues, French Mediterranean: evidence for extreme storm waves during the Little Ice Age},
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author={Shah-Hosseini, M and Morhange, C and De Marco, A and Wante, J and Anthony, EJ and Sabatier, F and Mastronuzzi, G and Pignatelli, C and Piscitelli, A},
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journal={Zeitschrift f{\"u}r Geomorphologie},
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volume={57},
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number={Suppl 4},
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pages={181--199},
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year={2013}
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}
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@article{nott1997,
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title={Extremely high-energy wave deposits inside the Great Barrier Reef, Australia: determining the cause—tsunami or tropical cyclone},
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author={Nott, Jonathan},
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journal={Marine Geology},
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volume={141},
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number={1-4},
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pages={193--207},
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year={1997},
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publisher={Elsevier}
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}
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@article{nott2003,
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title={Waves, coastal boulder deposits and the importance of the pre-transport setting},
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author={Nott, Jonathan},
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journal={Earth and Planetary Science Letters},
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volume={210},
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number={1-2},
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pages={269--276},
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year={2003},
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publisher={Elsevier}
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}
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@article{nandasena2011,
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title={Reassessment of hydrodynamic equations: Minimum flow velocity to initiate boulder transport by high energy events (storms, tsunamis)},
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author={Nandasena, NAK and Paris, Rapha{\"e}l and Tanaka, Norio},
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journal={Marine Geology},
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volume={281},
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number={1-4},
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pages={70--84},
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year={2011},
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publisher={Elsevier}
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}
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@article{weiss2015,
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title={Untangling boulder dislodgement in storms and tsunamis: Is it possible with simple theories?},
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author={Weiss, R and Diplas, P},
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journal={Geochemistry, Geophysics, Geosystems},
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volume={16},
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number={3},
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pages={890--898},
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year={2015},
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publisher={Wiley Online Library}
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}
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@article{zijlema2011,
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title={SWASH: An operational public domain code for simulating wave fields and rapidly varied flows in coastal waters},
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author={Zijlema, Marcel and Stelling, Guus and Smit, Pieter},
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journal={Coastal Engineering},
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volume={58},
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number={10},
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pages={992--1012},
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year={2011},
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publisher={Elsevier}
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}
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@article{higuera2015,
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title={Application of computational fluid dynamics to wave action on structures},
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author={Higuera, P},
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journal={PhD. Universidade de Cantabria},
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year={2015}
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}
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@phdthesis{poncet2021,
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title={Characterization of wave impact loading on structures at full scale: field experiment, statistical analysis and 3D advanced numerical modeling},
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author={Poncet, Pierre-Antoine},
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year={2021},
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school={Université de Pau et des Pays de l'Adour},
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chapter={4},
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}
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@article{torrence1998,
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title={A practical guide to wavelet analysis},
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author={Torrence, Christopher and Compo, Gilbert P},
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journal={Bulletin of the American Meteorological society},
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volume={79},
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number={1},
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pages={61--78},
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year={1998},
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publisher={American Meteorological Society}
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}
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@article{dysthe2008,
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title={Oceanic rogue waves},
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author={Dysthe, Kristian and Krogstad, Harald E and M{\"u}ller, Peter},
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journal={Annu. Rev. Fluid Mech.},
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volume={40},
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pages={287--310},
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year={2008},
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publisher={Annual Reviews}
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}
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@article{lodhi2020,
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title={The role of hydrodynamic impact force in subaerial boulder transport by tsunami—Experimental evidence and revision of boulder transport equation},
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author={Lodhi, Hira A and Hasan, Haider and Nandasena, NAK},
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journal={Sedimentary Geology},
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volume={408},
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pages={105745},
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year={2020},
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publisher={Elsevier}
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}
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