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Integration and Analysis of Multi-Modal Geospatial Secondary Data to Inform Management of At-Risk Archaeological Sites

Guiney, Rebecca; Santucci, Elettra; Valman, Samuel; Booth, Adam; Birley, Andrew; Haynes, Ian; Marsh, Stuart; Mills, Jon

Integration and Analysis of Multi-Modal Geospatial Secondary Data to Inform Management of At-Risk Archaeological Sites Thumbnail


Authors

Rebecca Guiney

Elettra Santucci

Samuel Valman

Adam Booth

Andrew Birley

Ian Haynes

STUART MARSH Stuart.Marsh@nottingham.ac.uk
Professor of Geospatial Engineering

Jon Mills



Abstract

Climate change poses an imminent physical risk to cultural heritage sites and their surrounding landscape through intensifying environmental processes such as damaging wetting and drying cycles that disrupt archaeological preservation conditions, and soil erosion which threatens to expose deposits and alter the archaeological context of sites. In the face of such threats, geospatial techniques such as GIS, remote sensing, and spatial modelling have proved invaluable tools for archaeological research and cultural heritage monitoring. This paper presents the application of secondary multi-source and multi-temporal geospatial data within a processing framework to provide a comprehensive assessment of geophysical risk to the Roman fort of Magna, Carvoran, UK. An investigation into the ancient hydraulic system at Magna was carried out with analysis of vegetation change over time, and spatio-temporal analysis of soil erosion risk at the site. Due to COVID-19 restrictions in place at the time of this study, these analyses were conducted using only secondary data with the aim to guide further archaeological research, and management and monitoring strategies for the stakeholders involved. Results guided inferences about the ancient hydraulic system, providing insights regarding how to better manage the site at Magna in the future. Analysis of soil erosion allowed the identification of hot spot areas, indicating a future increase in rates of erosion at Magna and suggesting a seasonal period of higher risk of degradation to the site. Results have proven that freely available multi-purpose national-scale datasets are sufficient to create meaningful insights into archaeological sites where physical access to the site is inhibited. This infers the potential to carry out preliminary risk assessment to inform future site management practices.

Journal Article Type Article
Acceptance Date Aug 5, 2021
Online Publication Date Aug 24, 2021
Publication Date Sep 1, 2021
Deposit Date Aug 25, 2021
Publicly Available Date Aug 25, 2021
Journal ISPRS International Journal of Geo-Information
Electronic ISSN 2220-9964
Publisher MDPI AG
Peer Reviewed Peer Reviewed
Volume 10
Issue 9
Article Number 575
DOI https://doi.org/10.3390/ijgi10090575
Keywords Earth and Planetary Sciences (miscellaneous); Computers in Earth Sciences; Geography, Planning and Development
Public URL https://nottingham-repository.worktribe.com/output/6092290
Publisher URL https://www.mdpi.com/2220-9964/10/9/575

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