The data base has been enriched by including new tsunami entries, as the result of revision of historical sources, and by adding a new category of data, namely graphical data, such as digitised tide-gauge records, photos, relevant maps, etc., that form a special section accessible from the main screen. The catalogue is accessible through a main screen containing a) functional buttons to perform the basic inquiry, and browser actions, and b) parametric, and textual data concerning a specific event that can be selected by the user. The general structure of the previous data base version is preserved.
#Windows 95 submarine simulator pc windows#
Windows 98, Windows 2000, Windows NT, etc.). In the present work, we describe the new version of the database that has been totally rebuilt within the Visual FoxPro 6.0 DBMS environment in order to make it suitable for the operating systems currently on the market (i.e.
#Windows 95 submarine simulator pc Pc#
The catalogue was implemented as a FoxPro 2.5 database, and it can be fully used on PC with Windows 3.1 or with the first versions of Windows 95. The first catalogue of the European tsunamis was built in the frame of the EU Projects called GITEC, and GITEC-TWO. This paper will mostly focus on the main issues that have to be faced by future research projects, and that demand the establishing of stronger link between experts of physical, and social sciences: local tsunamis induced by near-shore earthquakes, tsunamis generated by mass failures, and by flank collapses of volcanoes, implementation of instrumental networks, and early warning systems, tsunami disaster management, incorporation of the tsunami impact factor in policies of sustainable development of coastal communities. This led to remarkable progress in physical understanding, in numerical modelling, and in defining, and applying standards for data catalogues, and allowed also to better define the objectives still to be achieved, and the research to undertake in the next future.
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In the last decade tsunami research in Europe gained strong impulse from mutual collaboration among various groups of several countries chiefly under the sponsorship of the European Union. Tsunamis are a serious threat for all coastal European countries for they attack countries in the north, such as Norway, and Great Britain, as well as countries in the southern belt from Portugal to Greek, and Turkey.
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By contrast, the runup problem earlier believed intractable is now well understood for all but the most extreme breaking wave events. While ten years ago, it was believed that the generation problem was adequately understood for useful predictions, it is now clear that it is not, especially nearfield. Accurately and reliably predicting the initial waveform and the associated coastal effects of tsunamis remains one of the most vexing problems in geophysics, and -with few exceptions- has resisted routine numerical computation or data collection solutions. Understanding tsunami generation and evolution is of paramount importance for protecting coastal population at risk, coastal structures and the natural environment.
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Tsunamis can also effect geomorphologic changes along the coast. Tsunamis can inflict significant damage and casualties both nearfield and after evolving over long propagation distances and impacting distant coastlines. Tsunamis are water waves triggered by impulsive geologic events such as sea floor deformation, landslides, slumps, subsidence, volcanic eruptions and bolide impacts.