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Updated: Aug 11, 2025

Investigating the Relationship between Sea Surface Chlorophyll and Major Features of the South China Sea with Satellite Information
Published on: June 13, 2020
Confronting turbidity, the major challenge for satellite-derived coastal bathymetry
Isabel Caballero1, Richard P Stumpf2
1Instituto de Ciencias Marinas de Andalucía (ICMAN), Consejo Superior de Investigaciones Científicas (CSIC), Avenida República Saharaui, 11519 Puerto Real, Spain.
Satellite-derived bathymetry (SDB) now maps seafloor depths up to 30m in coastal areas with some turbidity. This new method uses Sentinel-2 satellite data to improve bathymetric mapping for coastal ecosystem assessments.
Area of Science:
- Marine Geoscience
- Remote Sensing
- Coastal Ecology
Background:
- Accurate seafloor morphology mapping is essential for understanding coastal ecosystem function and assessing marine activities.
- Satellite-derived bathymetry (SDB) offers a valuable tool for creating bathymetric maps crucial for coastal hazard and climate change impact assessment.
- Existing SDB methods face limitations in turbid waters, restricting their application in many vulnerable coastal zones.
Purpose of the Study:
- To develop and demonstrate a comprehensive, operational bathymetric mapping method using satellite data adaptable to various environmental conditions.
- To overcome the limitations of SDB in turbid waters by integrating water quality information and multi-temporal compositing.
- To assess the accuracy and applicability of the developed method across diverse geographic regions and optical water types.
Main Methods:
- Utilized twin Sentinel-2A/B satellites for data acquisition.
- Integrated satellite-derived water quality information with a multi-temporal compositing technique.
- Developed an automated compositing method to mitigate turbidity impacts, infer maximum detectable depth, and exclude optically deep waters.
Main Results:
- Successfully mapped detailed bathymetry down to 30 meters with a 10-meter spatial resolution.
- Achieved median errors of less than 1 meter when compared against high-resolution lidar surveys.
- Demonstrated effectiveness across a wide range of conditions along the Caribbean and eastern U.S. coast.
Conclusions:
- The adopted model provides reliable bathymetry even in areas with non-ideal water clarity, expanding SDB applicability.
- The method is scalable and can be extended for bathymetric mapping at local, regional, and national levels.
- This advancement supports more comprehensive monitoring of coastal ecosystems and assessment of marine activities.
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