Tourists Carrying Capacity Tool

Explore the sustainable visitor capacity of any coastal stretch in Greece, considering both organised beach use (e.g., beach bars) and independent beachgoers.

How to use it

Step 1
Select Your Area

Draw a polygon or choose a predefined beach area to begin your assessment.

Step 2
Review Environmental Parameters

The tool automatically retrieves ecological and spatial data including Natura 2000 status, habitat sensitivity, and coastal characteristics.

Step 3
Explore Carrying Capacity Results

The system calculates Physical, Real, and Effective Carrying Capacity and presents results through a simplified scoring framework.

Understanding the pressure that beach tourism puts on coastal nature is essential for sustainable management.

The Carrying Capacity Tool helps decision-makers, communities and researchers visualize the interaction between ecological sensitivity, legal constraints, and visitor use patterns so that beach management can be evidence-based and transparent.

Maximum number of visitors an area can physically accommodate based on beach size.

Physical capacity adjusted for biodiversity constraints (e.g. buffers, protected species zones).

Real capacity further adjusted for management limits (facilities, access, infrastructure).

Satellite & Land Cover Data: helps define vegetation and built zones

Natura 2000 Boundaries & Habitats: ecological sensitivity layers

Ecological & Regulatory Layers: Natura 2000 areas, protected species and habitats, Untouched Beaches, and other relevant management designations.

User Inputs: beach boundary, average stay, service hours

BlueCoast combines open-access European and national geospatial datasets with ecological, regulatory and infrastructure information to support its three analytical components: Tourism Carrying Capacity (TCC), Coastal Vulnerability Index (CVI), and Socioeconomic Vulnerability Index (SocCVI).

Data sources

Data / parameterMain sourceUse in BlueCoast
Coastal elevation and slopeCopernicus DEM (27 m)CVI / SocCVI
Shoreline migration / erosionEMODnet Geology (2007–2017)CVI / SocCVI
Coastal landform and geologyEMODnet GeologyCVI / SocCVI
Tidal range / shoreline informationEMODnetCVI / SocCVI
Wave climateERA5 reanalysis (2016–2023)CVI / SocCVI
Sea-level rise projectionsIPCC AR6CVI / SocCVI
Population densityEurostat Census Grid 2021 (1 km²)SocCVI
Land useCORINE Land Cover 2020TCC / SocCVI
Roads and transport infrastructureOpenStreetMapTCC / SocCVI
Cultural heritageUNESCO / OpenStreetMapSocCVI
Natura 2000 sites and habitatsNatura 2000 / European Environment AgencyTCC
Caretta caretta nesting areasARCHELON and other available georeferenced recordsTCC
Pancratium maritimum occurrencesGBIF and available habitat recordsTCC
Blue Flag beachesBlue Flag registryTCC
Untouched beach designationsGreek national designationTCC
Beach geometry and temporal parametersUser inputTCC

Data processing

For integration within the analytical framework, spatial datasets were preprocessed, rasterized where required, and harmonized to a common 30 × 30 m working grid. Raster-based analyses were performed within a consistent 300 m coastal buffer, while individual model parameters were reclassified or normalized according to the requirements of each analytical module. Quality-control procedures were also applied to identify null values and edge anomalies before integration.

Important note on spatial scale and interpretation

The harmonization of datasets to a common 30 × 30 m working grid enables different spatial layers to be integrated and compared consistently. However, resampling or rasterization does not increase the original spatial resolution, accuracy, or information content of the source data.

The datasets used by BlueCoast originate from different sources and therefore vary in spatial resolution, temporal coverage, completeness, and update frequency. For example, some physical datasets provide information at relatively fine spatial scales, whereas socioeconomic information such as population density is available at a coarser 1 km² resolution. Similarly, some ecological, land-use, and regulatory layers represent conditions at a specific point or period in time and may change as new surveys, inventories, or legal designations become available.

BlueCoast outputs should therefore be interpreted as screening and decision-support information rather than as a substitute for detailed site-specific surveys or assessments. Results are most appropriate for identifying relative patterns, potential constraints, and areas where further investigation may be required. Where higher-resolution or more recent local data are available, these should be considered for site-specific management and planning decisions.

The platform is designed to allow its underlying datasets and analytical components to be progressively updated as improved information becomes available.