Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets

The advantages derived from the use of Uncrewed Aerial Vehicles (UAVs) are well-established: they are cost-effective and easy to use. There are numerous environmental applications, particularly when monitoring contexts characterized by rapid morphological changes and high rates of sediment transport...

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出版年:Journal of Marine Science and Engineering
主要な著者: Giulia Casagrande, Annelore Bezzi, Saverio Fracaros, Davide Martinucci, Simone Pillon, Paolo Salvador, Stefano Sponza, Giorgio Fontolan
フォーマット: 論文
言語:英語
出版事項: MDPI AG 2023-05-01
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オンライン・アクセス:https://www.mdpi.com/2077-1312/11/5/1044
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author Giulia Casagrande
Annelore Bezzi
Saverio Fracaros
Davide Martinucci
Simone Pillon
Paolo Salvador
Stefano Sponza
Giorgio Fontolan
author_facet Giulia Casagrande
Annelore Bezzi
Saverio Fracaros
Davide Martinucci
Simone Pillon
Paolo Salvador
Stefano Sponza
Giorgio Fontolan
author_sort Giulia Casagrande
collection DOAJ
container_title Journal of Marine Science and Engineering
description The advantages derived from the use of Uncrewed Aerial Vehicles (UAVs) are well-established: they are cost-effective and easy to use. There are numerous environmental applications, particularly when monitoring contexts characterized by rapid morphological changes and high rates of sediment transport, such as coastal areas. In this paper, three different case studies of survey and monitoring with high resolution and accuracy obtained through the use of UAVs are presented; these concern transgressive coastal sites. Results allow for the definition and quantification of coastal landforms and processes, including: (i) The anatomy of a parabolic dune and the rate of landward migration that could interfere with a tourist settlement; (ii) The mode and timing of morphological recovery and realignment of a barrier island overwashed by storm surge episodes; and (iii) The potential flood risk of a progradational spit that is a nesting site of a species of migratory breeding birds of conservation concern. The results demonstrate and confirm that, through a good coupling of drone-sensed quality data and accurate topographic control, quantitative estimates that are useful in assessing the impacts of natural processes involving both human and natural assets can be obtained.
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spelling doaj-art-e3a401c48cf042caab4a24450f05fed92025-08-19T22:44:14ZengMDPI AGJournal of Marine Science and Engineering2077-13122023-05-01115104410.3390/jmse11051044Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural AssetsGiulia Casagrande0Annelore Bezzi1Saverio Fracaros2Davide Martinucci3Simone Pillon4Paolo Salvador5Stefano Sponza6Giorgio Fontolan7Coastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyDepartment of Life Sciences, University of Trieste, Via L. Giorgieri 10, 34127 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyCoastal Group, Department of Mathematics and Geosciences, University of Trieste, Via E. Weiss 1, 34128 Trieste, ItalyThe advantages derived from the use of Uncrewed Aerial Vehicles (UAVs) are well-established: they are cost-effective and easy to use. There are numerous environmental applications, particularly when monitoring contexts characterized by rapid morphological changes and high rates of sediment transport, such as coastal areas. In this paper, three different case studies of survey and monitoring with high resolution and accuracy obtained through the use of UAVs are presented; these concern transgressive coastal sites. Results allow for the definition and quantification of coastal landforms and processes, including: (i) The anatomy of a parabolic dune and the rate of landward migration that could interfere with a tourist settlement; (ii) The mode and timing of morphological recovery and realignment of a barrier island overwashed by storm surge episodes; and (iii) The potential flood risk of a progradational spit that is a nesting site of a species of migratory breeding birds of conservation concern. The results demonstrate and confirm that, through a good coupling of drone-sensed quality data and accurate topographic control, quantitative estimates that are useful in assessing the impacts of natural processes involving both human and natural assets can be obtained.https://www.mdpi.com/2077-1312/11/5/1044coastal monitoringdune migrationwashoverflood riskbarrier islandPiscinas dunefield
spellingShingle Giulia Casagrande
Annelore Bezzi
Saverio Fracaros
Davide Martinucci
Simone Pillon
Paolo Salvador
Stefano Sponza
Giorgio Fontolan
Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
coastal monitoring
dune migration
washover
flood risk
barrier island
Piscinas dunefield
title Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
title_full Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
title_fullStr Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
title_full_unstemmed Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
title_short Quantifying Transgressive Coastal Changes Using UAVs: Dune Migration, Overwash Recovery, and Barrier Flooding Assessment and Interferences with Human and Natural Assets
title_sort quantifying transgressive coastal changes using uavs dune migration overwash recovery and barrier flooding assessment and interferences with human and natural assets
topic coastal monitoring
dune migration
washover
flood risk
barrier island
Piscinas dunefield
url https://www.mdpi.com/2077-1312/11/5/1044
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