Abstract:
Due to the dynamic system, coastal areas are prone to multiple types of hazards.
The location of Bangladesh's coast is more dynamic and considered to be one of
the most vulnerable in the world because every year different natural disaster
causes a large number of casualties and damage. In the context of the sea levels
rise and other coastal hazards, it is important to assess the coast's vulnerability to
erosion hazards to take the required precautions to protect people and property.
A location-specific index for assessing vulnerability has very rarely been
developed by combining socioeconomic variables with physical variables. The
main goal of this thesis is to comprehensively assess Chattogram's coastal erosion
vulnerability, quantifying the extent of erosion and understanding the adaptive
strategies employed by local communities to inform resilient and sustainable
coastal management. In this study, Coastal Erosion Vulnerability Index (CEVI)
was quantified for the Chattogram coast with the extensive use of geospatial
technologies. The CEVI was estimated using fifteen coastal Erosion vulnerability
assessment factors which include seven physical factors- Elevation, Slope,
Geomorphology, Soil texture, Proximity to the coastline, Coastal vegetation, Soil
Permeability and eight socio-economic factors Population Density, Land Use and
Land Cover (LULC), Dependent Population, Tourist spots, Road Network,
Literacy Rate, Proximity to health facilities, Physical Settlement. For the
calculation of the weightage of each factor, the Principle Component Analysis
(PCA) method was used for this study. Physical vulnerability, driven by
proximity to the coastline and soil texture, plays a dominant role, contributing
78.23% to overall vulnerability. Socio-economic vulnerability, influenced by
factors like road buffer and literacy rate, contributes 21.77%. The most vulnerable
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areas encompass Sitakunda, Banshkhali, and Mirsharai upazilas, which require
urgent interventions; in contrast, regions like Khulshi and Bayejid Bostami show
low vulnerability. The model is highly accurate, with an AUC of 0.909, offering
reliable predictions for disaster preparedness and mitigation efforts. The
Weighted Average Index (WAI) from household surveys measured coastal
erosion impacts, while an Adaptation Strategy Index (ASI) and an Entropy-based
method evaluated adaptation strategies to establish overall adaptive capacity.
Findings reveal severe erosion in several unions, with rates as high as -79.87
m/year, largely influenced by sand extraction, mangrove deforestation, and ship
breaking activities. Conversely, some areas exhibit sediment build-up due to
hydrodynamic forces. Results indicate that communities face persistent risks
from erosion, exacerbated by inadequate management, high water velocity,
storm surges, and cyclonic disturbances. This study emphasizes updated coastal
policies, ecosystem-based adaptation, and integrating traditional and scientific
knowledge for erosion control, guiding sustainable management in the
Chattogram coast and similar regions.