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Analysis of Multi-Temporal Shoreline Changes Due to a Harbor Using Remote Sensing Data and GIS Techniques

  • Sanjana Zoysa
  • , Vindhya Basnayake
  • , Jayanga T. Samarasinghe
  • , Miyuru B. Gunathilake
  • , Komali Kantamaneni
  • , Nitin Muttil
  • , Uttam Pawar
  • , Upaka Rathnayake
    • Sri Lanka Institute of Information Technology
    • University of Twente
    • University of Texas at El Paso
    • Norwegian Institute of Bioeconomy Research
    • University of Oulu
    • University of Central Lancashire
    • Victoria University
    • HPT Arts and RYK Science College

    Research output: Contribution to journalArticlepeer-review

    27 Citations (Scopus)

    Abstract

    Coastal landforms are continuously shaped by natural and human-induced forces, exacerbating the associated coastal hazards and risks. Changes in the shoreline are a critical concern for sustainable coastal zone management. However, a limited amount of research has been carried out on the coastal belt of Sri Lanka. Thus, this study investigates the spatiotemporal evolution of the shoreline dynamics on the Oluvil coastline in the Ampara district in Sri Lanka for a two-decade period from 1991 to 2021, where the economically significant Oluvil Harbor exists by utilizing remote sensing and geographic information system (GIS) techniques. Shorelines for each year were delineated using Landsat 5 Thematic Mapper (TM), Landsat 7 Enhanced Thematic Mapper Plus (ETM+), and Landsat 8 Operational Land Imager images. The Normalized Difference Water Index (NDWI) was applied as a spectral value index approach to differentiate land masses from water bodies. Subsequently, the Digital Shoreline Analysis System (DSAS) tool was used to assess shoreline changes, including Shoreline Change Envelope (SCE), Net Shoreline Movement (NSM), End Point Rate (EPR), and Linear Regression Rate (LRR). The results reveal that the Oluvil coast has undergone both accretion and erosion over the years, primarily due to harbor construction. The highest SCE values were calculated within the Oluvil harbor region, reaching 523.8 m. The highest NSM ranges were recorded as −317.1 to −81.3 m in the Oluvil area and 156.3–317.5 m in the harbor and its closest point in the southern direction. The maximum rate of EPR was observed to range from 3 m/year to 10.7 m/year towards the south of the harbor, and from −10.7 m/year to −3.0 m/year towards the north of the harbor. The results of the LRR analysis revealed that the rates of erosion anomaly range from −3 m/year to −10 m/year towards the north of the harbor, while the beach advances at a rate of 3 m/year to 14.3 m/year towards the south of the harbor. The study area has undergone erosion of 40 ha and accretion of 84.44 ha. These findings can serve as valuable input data for sustainable coastal zone management along the Oluvil coast in Sri Lanka, safeguarding the coastal habitats by mitigating further anthropogenic vulnerabilities.

    Original languageEnglish
    Article number7651
    JournalSustainability (Switzerland)
    Volume15
    Issue number9
    DOIs
    Publication statusPublished - May 2023

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 7 - Affordable and Clean Energy
      SDG 7 Affordable and Clean Energy
    2. SDG 14 - Life Below Water
      SDG 14 Life Below Water

    Keywords

    • Landsat
    • Oluvil harbor
    • digital shoreline analysis system (DSAS)
    • net shoreline movement (NSM)
    • normalized difference water index (NDWI)
    • shoreline change envelope (SCE)

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