Space-based Deformation Monitoring of Coastal Urban Areas: The Case of Limassol’s Coastal Front

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Space-based Deformation Monitoring of Coastal Urban Areas: The Case of Limassol’s Coastal Front

Kakoullis, Dimitris
Brcic, Ramon
Melillos, George
Danezis, Chris
Eineder, Michael
Hadjimitsis, Diofantos G.
Pekri, Marina
Fotiou, Kyriaki

conferenceObject

2023-06-19T13:22:07Z
2021


In the last five years, the urban development of Limassol City has rapidly increased in the sectors of industry, trade, real estate, and many others. This exponentially increased urban development introduces several concerns about the aggravation of the land subsidence in the Limassol coastal front. Fifty Copernicus Sentinel-1 data from 2017-2021 have been processed and analyzed using the Sentinel Application Platform (SNAP) and the Stanford Method for Persistent Scatters (StaMPS). A case study for the identification and analysis of the elements (PS) in pixels in a series of interferograms, and then, the quantity of the land displacements in the Line of Sight, in the Limassol coastal front, is presented in this research, with the subsidence rates up to about (-5 to 4 mm/year). For the validation of the detected deformation, accurate ground-based geodetic measurements along the coastal area were used. Concordantly, taking into account that there are a significant number of skyscrapers planned to be built, this study attempts a preliminary assessment of the impact these structures will pose on the coastal front of the area of Limassol.

Engineering and Technology
Environmental Engineering;Environmental Biotechnology

Engineering and Technology
Cyprus
Deformation monitoring
SAR
Land Subsidence
Coastal Areas
PSI
Environmental Engineering
Environmental Biotechnology

European Remote Sensing-New Solutions for Science and Practice

English

European Remote Sensing-New Solutions for Science and Practice, 2021

none




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