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January 23, 2026Geomatics2 citationsOpen Access

Assessing Historical Shoreline Change and Forecasting Future Trends Along Monrovia’s Coastline, Liberia

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TWTitus Karderic WilliamsTBTarik BelrhabaAAAbdelahq Aangri

Key Points

  • This research aims to analyze historical shoreline changes along Monrovia's coastline and forecast future trends.
  • Analyzed a 20.5 km stretch of Monrovia’s coast using Landsat and Sentinel-2 satellite imagery from 1986 to 2025.
  • Employed remote sensing and GIS techniques for shoreline extraction via band-ratio thresholding.
  • Quantified shoreline changes using Digital Shoreline Analysis System (DSAS 5.0) with end-point rate, linear regression rate, and net shoreline movement.
  • Projected future shoreline trends for 2036 and 2046 using a Kalman Filter model integrated with DSAS.
  • Identified historical erosion rates of up to 3.8 m/yr and accretion rates of up to 5.9 m/yr.
  • Recorded shoreline retreat up to 150 m and advance up to 194 m.
  • Projected erosion hotspots at Hotel Africa, Westpoint, New Kru Town, and JFK-ELWA corridor.
  • Forecasted accretion near the St. Paul and Mesurado estuaries.

Abstract

Coastal settlements worldwide face increasing threats from erosion, and the Monrovia coastline in Liberia is no exception. This study investigates shoreline dynamics along a 20.5 km stretch of Monrovia’s coast, which is characterized by low-lying elevations, gentle slopes, and sandy beaches. Using Landsat satellite imagery (1986–2025), supported by Sentinel-2 MSI and qualitative validation drone data, we analyzed historical shoreline change with remote sensing and GIS techniques. Shorelines were extracted using a band-ratio thresholding method and quantified with the Digital Shoreline Analysis System (DSAS 5.0), applying end-point rate (EPR), linear regression rate (LRR), and net shoreline movement (NSM). Exploratory projections for 2036 and 2046 were generated using a Kalman Filter model integrated into DSAS. Results show maximum historical erosion rates of up to 3.8 m/yr and accretion rates of up to 5.9 m/yr, with shoreline retreat reaching 150 m and advance up to 194 m. Erosion hotspots are projected for Hotel Africa, Westpoint, New Kru Town, and the JFK–ELWA corridor, while areas near the St. Paul and Mesurado estuaries are expected to accrete. These findings confirm historical trends and suggest that Monrovia will continue to face significant shoreline change, with implications for natural habitats, infrastructure, land loss, and population displacement.

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Cite This Study

Williams et al. (2026) studied this question.

synapsesocial.com/papers/6973106cc8125b09b0d20197https://doi.org/10.3390/geomatics6010006
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