Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/94728
Title: WebGIS implementation for dynamic mapping and visualization of coastal geospatial data : a case study of BESS project
Authors: Randazzo, Giovanni
Italiano, Franco
Micallef, Anton
Tomasello, Agostino
Cassetti, Federica Paola
Zammit, Anthony
D'Amico, Sebastiano
Saliba, Oliver
Cascio, Maria
Cavallaro, Franco
Crupi, Antonio
Fontana, Marco
Gregorio, Francesco
Lanza, Stefania
Colica, Emanuele
Muzirafuti, Anselme
Keywords: Coastal mapping -- Malta
Geographic information systems -- Malta
Coastal zone management -- Malta
Remote sensing -- Malta
Environmental monitoring -- Malta
Multibeam mapping
Issue Date: 2021
Publisher: MDPI
Citation: Randazzo, G., Italiano, F., Micallef, A., Tomasello, A., Cassetti, F., Zammit, A., ... Muzirafuti, A. (2021). WebGIS implementation for dynamic mapping and visualization of coastal geospatial data: A case study of BESS project. Applied Sciences, 11(17), 8233.
Abstract: Within an E.U.-funded project, BESS (Pocket Beach Management and Remote Surveillance System), the notion of a geographic information system is an indispensable tool for managing the dynamics of georeferenced data and information for any form of territorial planning. This notion was further explored with the creation of a WebGIS portal that will allow local and regional stakeholders/authorities obtain an easy remote access tool to monitor the status of pocket beaches (PB) in the Maltese Archipelago and Sicily. In this paper, we provide a methodological approach for the implementation of a WebGIS necessary for very detailed dynamic mapping and visualization of geospatial coastal data; the description of the dataset necessary for the monitoring of coastal areas, especially the PBs; and a demonstration of a case study for the PBs of Sicily and Malta by using the methodology and the dataset used during the BESS project. Detailed steps involved in the creation of the WebGIS are presented. These include data preparation, data storage, and data publication and transformation into geo-services. With the help of different Open Geospatial Consortium protocols, the WebGIS displays different layers of information for 134 PBs including orthophotos, sedimentological/geomorphological beach characteristics, shoreline evolution, geometric and morphological parameters, shallow water bathymetry, and photographs of pocket beaches. The WebGIS allows not only for identifying, evaluating, and directing potential solutions to present and arising issues, but also enables public access and involvement. It reflects a platform for future local and regional coastal zone monitoring and management, by promoting public/private involvement in addressing coastal issues and providing local public administrations with an improved technology to monitor coastal changes and help better plan suitable interventions.
URI: https://www.um.edu.mt/library/oar/handle/123456789/94728
Appears in Collections:Scholarly Works - FacSciGeo

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