VLIZ LIBRARY ACQUISITIONS NO. 944
7 October, 2022


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Open Marine ArchiveJournal articlesBooks & chaptersReportsTheses


https://www.vliz.be/images/imis/icons/graduation_16x16.gifPeer reviewed https://www.vliz.be/images/imis/icons/openaccess.pngOpen Access


 

OPEN MARINE ARCHIVE (OMA): the open repository of publications by Flemish/Belgian scientists.

https://www.vliz.be/images/imis/icons/openaccess.pngBruneel, D. (1979). Bijdrage tot de kennis van de historische geografie van de Moeren. MSc Thesis. RUG: Gent. 159 + bijlagen pp, more

https://www.vliz.be/images/imis/icons/openaccess.pngCartelle, V. et al. (2022). Palaeo-landscapes offshore Belgium: the search for the former Testerep peninsula, in: 3rd International NEPTUNE Workshop. Reconstructing Coastal paleo-landscapes: shelf to shore, data to model, 27 and 28 September, 2022 Naples, Italy. pp. 2 pp, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngColgan, W. et al. (2019). Greenland ice sheet mass balance assessed by PROMICE (1995–2015). Geological Survey of Denmark and Greenland Bulletin 43: e2019430201. https://dx.doi.org/10.34194/geusb-201943-02-01, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngDe Vleeschouwer, D. et al. (2022). Plio-Pleistocene Perth Basin water temperatures and Leeuwin Current dynamics (Indian Ocean) derived from oxygen and clumped-isotope paleothermometry. Clim. Past 18(5): 1231-1253. https://dx.doi.org/10.5194/cp-18-1231-2022, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngDefoirdt, T. (2019). Amino acid–derived quorum sensing molecules controlling the virulence of vibrios (and beyond). PLoS Pathog. 15(7): e1007815. https://dx.doi.org/10.1371/journal.ppat.1007815, more

https://www.vliz.be/images/imis/icons/openaccess.pngHaelters, J. et al. (2022). Strandingen en waarnemingen van zeezoogdieren in België in 2021. Strandingen en waarnemingen van zeezoogdieren en opmerkelijke vissen in België. Koninklijk Belgisch Instituut voor Natuurwetenschappen (KBIN): Brussel. 34 pp, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngKittel, C. et al. (2022). Clouds drive differences in future surface melt over the Antarctic ice shelves. Cryosphere 16(7): 2655-2669. https://dx.doi.org/10.5194/tc-16-2655-2022, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngPercival, L.M.E. et al. (2022). Combined nitrogenisotope and cyclostratigraphy evidence for temporal and spatial variability in FrasnianFamennian environmental change. Geochem. Geophys. Geosyst. 23(5): e2021GC010308. https://dx.doi.org/10.1029/2021gc010308, more

https://www.vliz.be/images/imis/icons/openaccess.pngStroobant, F. (1847). Monuments et vues d’Ostende dessinés d’après nature et lithographiés. J. Buffa et Elleboudt: Bruges. 26 pp, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngThuy, D.T.B. et al. (2020). Optimization of culture conditions for gamma-aminobutyric acid production by newly identified Pediococcus pentosaceus MN12 isolated from ‘mam nem’, a fermented fish sauce. Bioengineered 12(1): 54-62. https://dx.doi.org/10.1080/21655979.2020.1857626, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngvan der Kolk, Henk-Jan et al. (2022). GPS tracking data of Eurasian oystercatchers (Haematopus ostralegus) from the Netherlands and Belgium. ZooKeys 1123: 31-45. https://dx.doi.org/10.3897/zookeys.1123.90623, more

https://www.vliz.be/images/imis/icons/openaccess.pngVanbiervliet, Z. et al. (2022). Introducing the TESTEREP project: the evolution of a former peninsula along the Belgian coast as a case study in the development and sustainable management of the coastal landscape, in: 3rd International NEPTUNE Workshop. Reconstructing Coastal paleo-landscapes: shelf to shore, data to model, 27 and 28 September, 2022 Naples, Italy. pp. 2 pp, more

https://www.vliz.be/images/imis/icons/openaccess.pngVandaele, W. (2020). De Concessie De Haan: 25 Jaar beschermd dorpsgezicht. Gemeente De Haan: De Haan. 15 pp, more

https://www.vliz.be/images/imis/icons/openaccess.pngVerbeiren, M. (2022). Waterkwaliteit en visbestand in de Oude Scheldearmen anno 2022. Hengelsport 31(4): 17-21, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifhttps://www.vliz.be/images/imis/icons/openaccess.pngZhang, S. et al. (2022). Indole decreases the virulence of the bivalve model pathogens Vibrio tasmaniensis LGP32 and Vibrio crassostreae J2-9. NPG Scientific Reports 12(1): 5749. https://dx.doi.org/10.1038/s41598-022-09799-1, more

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JOURNAL ARTICLES

https://www.vliz.be/images/imis/icons/graduation_16x16.gifAnnals of Geophysics

https://www.vliz.be/images/imis/icons/openaccess.pngMaramai, A.; Brizuela, B.; Graziani, L. (2014). The Euro-Mediterranean tsunami catalogue, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifBiogeosciences

https://www.vliz.be/images/imis/icons/openaccess.pngTerhaar, J.; Frölicher, T.L.; Joos, F. (2022). Observation-constrained estimates of the global ocean carbon sink from Earth system models, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifBulletin of Volcanology

Tinti, S.; Pagnoni, G.; Zaniboni, F. (2005). The landslides and tsunamis of the 30th of December 2002 in Stromboli analysed through numerical simulations, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifCoastal Engineering: An International Journal for Coastal, Harbour and Offshore Engineers

Harbitz, C.B. et al. (2014). Rockslide tsunamis in complex fjords: From an unstable rock slope at Åkerneset to tsunami risk in western Norway, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifContemporary Physics

  • Slunyaev, A.; Didenkulova, I.; Pelinovsky, E. (2011). Rogue waters, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifDevelopments in the Built Environment

https://www.vliz.be/images/imis/icons/openaccess.pngBone, J.R. et al. (2022). The intrinsic primary bioreceptivity of concrete in the coastal environment – A review, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifEarth and Planetary Science Letters

González, P.J. et al. (2010). Shallow flank deformation at Cumbre Vieja volcano (Canary Islands): Implications on the stability of steep-sided volcano flanks at oceanic islands, more

Omira, R. et al. (2022). How hazardous are tsunamis triggered by small-scale mass-wasting events on volcanic islands? New insights from Madeira – NE Atlantic, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifEarth Moon and Planets

Nemtchinov, I.V.; Loseva, T.V.; Teterev, A.V. (1996). Impacts into oceans and seas, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifEuropean Journal of Mechanics - B/Fluids

Kharif, Ch.; Pelinovsky, E. (2003). Physical mechanisms of the rogue wave phenomenon, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifFish and Fisheries

Malone, M.A.; Polivka, C.M. (2022). The behavioural ecology toolkit for fish management and conservation, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifFrontiers in Earth Science

https://www.vliz.be/images/imis/icons/openaccess.pngBasili, Roberto et al. (2021). The making of the NEAM Tsunami Hazard Model 2018 (NEAMTHM18), more

https://www.vliz.be/images/imis/icons/openaccess.pngBehrens, Jörn et al. (2021). Probabilistic tsunami hazard and risk analysis: A review of research gaps, more

https://www.vliz.be/images/imis/icons/openaccess.pngGonzalez, M. et al. (2021). Probabilistic tsunami hazard assessment in meso and macro tidal areas. Application to the Cádiz Bay, Spain, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifFrontiers in Marine Science

https://www.vliz.be/images/imis/icons/openaccess.pngAngove, M. et al. (2019). Ocean observations required to minimize uncertainty in global tsunami forecasts, warnings, and emergency response, more

https://www.vliz.be/images/imis/icons/openaccess.pngHowe, Bruce M. et al. (2019). SMART cables for observing the global ocean: Science and implementation, more

https://www.vliz.be/images/imis/icons/openaccess.pngVilibic, I. et al. (2016). Modern approaches in meteotsunami research and early warning, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifGeophysical Research Abstracts

https://www.vliz.be/images/imis/icons/openaccess.pngAssink, J et al. (2018). High-resolution observations of a meteo-tsunami, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifGeophysical Research Letters

https://www.vliz.be/images/imis/icons/openaccess.pngBonaccorso, A. et al. (2003). Dynamics of the December 2002 flank failure and tsunami at Stromboli volcano inferred by volcanological and geophysical observations, more

Carvajal, M. et al. (2022). Worldwide signature of the 2022 Tonga volcanic tsunami, more

Nomanbhoy, N.; Satake, K. (1995). Generation mechanism of tsunamis from the 1883 Krakatau eruption, more

Renault, L. et al. (2011). Toward the predictability of meteotsunamis in the Balearic Sea using regional nested atmosphere and ocean models, more

Sepic, J.; Vilibic, I.; Monserrat, S. (2016). Quantifying the probability of meteotsunami occurrence from synoptic atmospheric patterns, more

Geophysical supplements to the Monthly Notices of the Royal Astronomical Society

Proudman, J. (1929). The effects on the sea of changes in atmospheric pressure, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifGeosciences

https://www.vliz.be/images/imis/icons/openaccess.pngArnaud, G.E. et al. (2021). How would the potential collapse of the Cumbre Vieja Volcano in La Palma Canary Islands impact the Guadeloupe Islands? Insights into the consequences of climate change, more

https://www.vliz.be/images/imis/icons/openaccess.pngPerianez, R. (2021). Numerical simulation of the tsunami generated by a potential submarine landslide in La Palma (Canary Islands) after the September 2021 Cumbre Vieja eruption, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifIcarus

Ward, S.; Asphaug, E. (2000). Asteroid impact tsunami: A probabilistic hazard assessment, more

ISET Journal of Earthquake Technology

Murty, T.S. et al. (2005). Why the Atlantic generally cannot generate trans-oceanic tsunamis, more

Tinti, S. et al. (2005). Assessing the hazard related to tsunamis of tectonic origin: A hybrid statistical-deterministic method applied to southern Italy coasts, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of applied volcanology

https://www.vliz.be/images/imis/icons/openaccess.pngAuker, M.R. et al. (2013). A statistical analysis of the global historical volcanic fatalities record, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Earthquake and Tsunami

https://www.vliz.be/images/imis/icons/openaccess.pngPapadopoulos, G.A. et al. (2010). Tsunami hazard in the Eastern Mediterranean Sea: Strong earthquakes and tsunamis in the West Hellenic Arc and Trench System, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Fluid Mechanics

Greenspan, H.P. (1956). The generation of edge waves by moving pressure distributions, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Geophysical Research

https://www.vliz.be/images/imis/icons/openaccess.pngAbadie, S.M. et al. (2012). Numerical modeling of tsunami waves generated by the flank collapse of the Cumbre Vieja Volcano (La Palma, Canary Islands): Tsunami source and near field effects, more

https://www.vliz.be/images/imis/icons/openaccess.pngLøvholt, F.; Pedersen, G.; Gisler, G. (2008). Oceanic propagation of a potential tsunami from the La Palma Island, more

https://www.vliz.be/images/imis/icons/openaccess.pngMaeno, F.; Imamura, F. (2011). Tsunami generation by a rapid entrance of pyroclastic flow into the sea during the 1883 Krakatau eruption, Indonesia, more

Sørensen, M.B. et al. (2012). Probabilistic tsunami hazard in the Mediterranean Sea, more

Watts, P.; Waythomas, C.F. (2003). Theoretical analysis of tsunami generation by pyroclastic flows, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Geophysical Research-Oceans

https://www.vliz.be/images/imis/icons/openaccess.pngAnderson, E.J. et al. (2015). Reconstruction of a meteotsunami in Lake Erie on 27 May 2012: Roles of atmospheric conditions on hydrodynamic response in enclosed basins, more

Sepic, J.; Vilibic, I.; Fine, I.V. (2015). Northern Adriatic meteorological tsunamis: Assessment of their potential through ocean modeling experiments, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Marine Science and Engineering

https://www.vliz.be/images/imis/icons/openaccess.pngOrzech, M.D.; Wang, D. (2020). Measured rogue waves and their environment, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Marine Systems

Liss, P.S. et al. (1994). Dimethyl sulphide and Phaeocystis: a review, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Natural History

Hanamura, Y.; Kase, T. (2002). Marine cave mysids of the genus Palaumysis (Crustacea: Mysidacea), with a description of a new species from the Philippines, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Physical Oceanography

https://www.vliz.be/images/imis/icons/openaccess.pngChristou, M.; Ewans, K. (2014). Field measurements of rogue water waves, more

Williams, D. et al. (2019). Examination of generation mechanisms for an English Channel meteotsunami: Combining observations and modeling, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of volcanology and geothermal research

Ulvrova, M. et al. (2016). Source of the tsunami generated by the 1650 AD eruption of Kolumbo submarine volcano (Aegean Sea, Greece), more

Yokoyama, I. (1987). A scenario of the 1883 Krakatau tsunami, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifJournal of Waterway, Port, Coastal, and Ocean Engineering

van Gent, M.R.A. (2001). Wave runup on dikes with shallow foreshores, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifLimnology and Oceanography

https://www.vliz.be/images/imis/icons/openaccess.pngEckman, J.E. (1983). Hydrodynamic processes affecting benthic recruitment, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifMarine and Petroleum Geology

Bondevik, S. et al. (2005). The Storegga slide tsunami—comparing field observations with numerical simulations, more

Kvalstad, T.J. et al. (2005). Soil conditions and slope stability in the Ormen Lange area, more

Løvholt, F.; Harbitz, C.B.; Haugen, K.B. (2005). A parametric study of tsunamis generated by submarine slides in the Ormen Lange/Storegga area off western Norway, more

Solheim, A. et al. (2005). The Storegga Slide complex: Repetitive large scale sliding with similar cause and development, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifMarine Geology

Baumann, J. et al. (2017). Importance of infragravity waves for the generation of washover deposits, more

https://www.vliz.be/images/imis/icons/openaccess.pngCollico, S. et al. (2020). Probabilistic mapping of earthquake-induced submarine landslide susceptibility in the South-West Iberian margin, more

Fine, I.V. et al. (2005). The Grand Banks landslide-generated tsunami of November 18, 1929: preliminary analysis and numerical modeling, more

Harbitz, C.B. (1992). Model simulations of tsunamis generated by the Storegga Slides, more

Maramai, A. et al. (2005). Near- and far-field survey report of the 30 December 2002 Stromboli (Southern Italy) tsunami, more

Papadopoulos, G.A. et al. (2014). Historical and pre-historical tsunamis in the Mediterranean and its connected seas: Geological signatures, generation mechanisms and coastal impacts, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifMeteoritics & Planetary Science

https://www.vliz.be/images/imis/icons/openaccess.pngBland, P.A.; Artemieva, N.A. (2006). The rate of small impacts on Earth, more

Rumpf, C.M.; Lewis, H.G.; Atkinson, P.M. (2017). Population vulnerability models for asteroid impact risk assessment, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifMeteorological applications

https://www.vliz.be/images/imis/icons/openaccess.pngHand, W.H.; Fox, N.I.; Collier, C.G. (2004). A study of twentieth-century extreme rainfall events in the United Kingdom with implications for forecasting, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifNatural Hazards

Anita, G. et al. (2012). Probabilistic tsunami hazard assessment for Messina Strait Area (Sicily, Italy), more

Eidsvig, U.M. et al. (2009). Risk assessment of a tsunamigenic rockslide at Åknes, more

Rabinovich, A.B.; Monserrat, S. (1996). Meteorological tsunamis near the Balearic and Kuril Islands: Descriptive and statistical analysis, more

Rabinovich, A.B.; Monserrat, S. (1998). Generation of meteorological tsunamis (Large amplitude seiches) near the Balearic and Kuril Islands, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifNatural Hazards and Earth System Sciences

https://www.vliz.be/images/imis/icons/openaccess.pngAbadie, S. et al. (2020). La Palma landslide tsunami: calibrated wave source and assessment of impact on French territories, more

https://www.vliz.be/images/imis/icons/openaccess.pngÁlvarez-Gómez, J.A. et al. (2011). Tsunami hazard at the Western Mediterranean Spanish coast from seismic sources, more

https://www.vliz.be/images/imis/icons/openaccess.pngChoi, B.H. et al. (2003). Simulation of the trans-oceanic tsunami propagation due to the 1883 Krakatau volcanic eruption, more

https://www.vliz.be/images/imis/icons/openaccess.pngLøvholt, F. et al. (2015). Simulating tsunami propagation in fjords with long-wave models, more

https://www.vliz.be/images/imis/icons/openaccess.pngMatias, L.M. et al. (2013). Tsunamigenic earthquakes in the Gulf of Cadiz: fault model and recurrence, more

https://www.vliz.be/images/imis/icons/openaccess.pngTeutsch, I. et al. (2020). A statistical analysis of rogue waves in the southern North Sea, more

Tonini, R. et al. (2011). Tsunami hazard for the city of Catania, eastern Sicily, Italy, assessed by means of Worst-case Credible Tsunami Scenario Analysis (WCTSA), more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifNature Communications

https://www.vliz.be/images/imis/icons/openaccess.pngHooijer, A.; Vernimmen, R. (2021). Global LiDAR land elevation data reveal greatest sea-level rise vulnerability in the tropics, more

https://www.vliz.be/images/imis/icons/openaccess.pngKulp, S.A.; Strauss, B.H. (2019). New elevation data triple estimates of global vulnerability to sea-level rise and coastal flooding, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifNature Ecology & Evolution

Burns, A. et al. (2022). Footprint beds record Holocene decline in large mammal diversity on the Irish Sea coast of Britain, more

Colton, M.A. et al. (2022). Coral conservation in a warming world must harness evolutionary adaptation, more

Fišer, C. et al. (2022). The European Green Deal misses Europe’s subterranean biodiversity hotspots, more

https://www.vliz.be/images/imis/icons/openaccess.pngHayakawa, E. et al. (2022). Mass spectrometry of short peptides reveals common features of metazoan peptidergic neurons, more

https://www.vliz.be/images/imis/icons/openaccess.pngJamy, M. et al. (2022). Global patterns and rates of habitat transitions across the eukaryotic tree of life, more

Stuart-Fox, D. (2022). Making sense of animal senses, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifNature: International Weekly Journal of Science

Buschman, V.Q.; Hauri, C. (2022). Seasonal peak in Arctic Ocean acidity could shift, more

Orr, J.C.; Kwiatkowski, L.; Pörtner, H.-O. (2022). Arctic Ocean annual high in pCO2 could shift from winter to summer, more

npj Climate and Atmospheric Science

https://www.vliz.be/images/imis/icons/openaccess.pngHorton, B.P. et al. (2020). Estimating global mean sea-level rise and its uncertainties by 2100 and 2300 from an expert survey, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifPhilosophical Transactions - Royal Society. Mathematical, Physical and Engineering Sciences

Masson, D.G. et al. (2006). Submarine landslides: processes, triggers and hazard prediction, more

Pattiaratchi, C.; Wijeratne, E.M.S. (2015). Are meteotsunamis an underrated hazard?, more

Wünnemann, K.; Weiss, R. (2015). The meteorite impact-induced tsunami hazard, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifProceedings of the National Academy of Sciences of the United States of America

https://www.vliz.be/images/imis/icons/openaccess.pngBamber, J.L. et al. (2019). Ice sheet contributions to future sea-level rise from structured expert judgment, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifPure and Applied Geophysics

Baptista, M.A. (2019). Tsunamis along the Azores Gibraltar plate boundary, more

https://www.vliz.be/images/imis/icons/openaccess.pngBerger, M.; Goodman, J. (2018). Airburst-generated tsunamis, more

Tehranirad, B. et al. (2015). Far-field tsunami impact in the North Atlantic basin from large scale flank collapses of the Cumbre Vieja Volcano, La Palma, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifReviews of Geophysics

https://www.vliz.be/images/imis/icons/openaccess.pngGrezio, Anita et al. (2017). Probabilistic tsunami hazard analysis: Multiple sources and global applications, more

https://www.vliz.be/images/imis/icons/openaccess.pngWünnemann, K.; Collins, G.S.; Weiss, R. (2010). Impact of a cosmic body into earth's ocean and the generation of large tsunami waves: Insight from numerical modeling, more

Science of Tsunami hazards

https://www.vliz.be/images/imis/icons/openaccess.pngChacón-Barrantes, S.; Narayanan, R.; Mayerle, R. (2013). Several tsunami scenarios at the North Sea and their consequences at the German Bight, more

https://www.vliz.be/images/imis/icons/openaccess.pngCrawford, D.A.; Mader, C. (1998). Modeling asteroid impact and tsunami, more

https://www.vliz.be/images/imis/icons/openaccess.pngGisler, G.; Weaver, R.; Gittings, M.L. (2006). SAGE calculations of the tsunami threat from La Palma, more

https://www.vliz.be/images/imis/icons/openaccess.pngPararas-Carayannis, G. (2002). Evaluation of the threat of mega tsunami generation from postulated massive slope failures of island stratovolcanoes on La Palma, Canary Islands, and on the island of Hawaii, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifScientific Reports (Nature Publishing Group)

https://www.vliz.be/images/imis/icons/openaccess.pngKatija, K. et al. (2022). FathomNet: A global image database for enabling artificial intelligence in the ocean, more

https://www.vliz.be/images/imis/icons/openaccess.pngZhang, S. et al. (2022). Indole decreases the virulence of the bivalve model pathogens Vibrio tasmaniensis LGP32 and Vibrio crassostreae J2-9, more

Sound Waves Newsletter

Gibbons, H.; Geist, E. (2022). Surprising tsunamis caused by explosive eruption in Tonga, more

University of California Publications in Zoology

https://www.vliz.be/images/imis/icons/openaccess.pngKofoid, C.A. (1911). Dinoflagellata of the San Diego region: IV. The genus Gonyaulax, with notes on its skeletal morphology and a discussion of its generic and specific characters, more

https://www.vliz.be/images/imis/icons/graduation_16x16.gifWeather

Gray, M.E.B.; Marshall, C. (1998). Mesoscale convective systems over the UK, 1981-97, more

Sibley, A.M. et al. (2016). Meteorologically generated tsunami-like waves in the North Sea on 1/2 July 2015 and 28 May 2008, more

Tappin, D.R. et al. (2013). The English Channel ‘tsunami’ of 27 June 2011 - a probable meteorological source, more

https://www.vliz.be/images/imis/icons/openaccess.pngThompson, J. et al. (2020). UK meteotsunamis: A revision and update on events and their frequency, more

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BOOKS & CHAPTERS

(1990). Historische kaarten van de Middenkust: Bredene, Mariakerke, Oostende, Raversijde, Stene, Zandvoorde. Heemkring Ter Cuere: Bredene. 16 pp, more

 (2017). Vrijwillige brandweer Wenduine 1905 tot 2017. Heemkring "Tussen Noordee en Noordzee": De Haan. 36 pp, more

(2018). 20 Jaar Vriendenkring Stadsgidsen Blankenberge: Jubileumuitgave. Vriendenkring Stadsgidsen Blankenberge: Blankenberge. 121 pp.

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REPORTS

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https://www.vliz.be/images/imis/icons/openaccess.pngPalmer M. et. al. (2018). UKCP18 Marine report. Met Office/Environment Agency: Exeter. 133 pp, more

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THESES

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