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Planejamento de Áreas Marinhas Protegidas (AMP) com Marxan×Clorofila-a por Cor do Oceano×
ÁreaOceanografiaOceanografia
FamíliaProcess / pipelineProcess / pipeline
Ano de origem20001978
Autor originalIan BallRemote Sensing Community
Tipooptimization-algorithmbio-optical
Fonte seminalPossingham, H. P., Ball, I., & Andelman, S. (2000). Mathematical methods for identifying representative reserve networks. In S. Ferson & M. Burgman (Eds.), Quantitative Methods for Conservation Biology (pp. 291-306). Springer-Verlag. link ↗Gordon, H. R., & Morel, A. Y. (1983). Remote Assessment of Ocean Color for Interpretation of Satellite Visible Imagery. Springer-Verlag. link ↗
Outros nomesMarxan, Marxan with ZonesChlorophyll-a Retrieval, Ocean Productivity Monitoring
Relacionados33
ResumoMarxan is a decision-support system that uses optimization algorithms to design cost-effective marine protected area (MPA) networks that achieve conservation targets while minimizing socioeconomic costs. Developed by Ian Ball and Hugh Possingham in 2000, Marxan has become the global standard tool for systematic conservation planning in marine environments. The software enables planners to explore trade-offs between conservation effectiveness and economic feasibility.Ocean color remote sensing is the primary global method for retrieving seawater chlorophyll-a concentrations and phytoplankton productivity from satellite sensors. Based on bio-optical principles established in the 1970s, ocean color algorithms convert satellite spectral reflectance measurements into estimates of chlorophyll-a pigment concentration. This method enables global-scale, real-time monitoring of oceanic primary productivity and plankton dynamics.
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ScholarGateComparar métodos: Marxan MPA Planning · Ocean Color Chlorophyll-a. Recuperado em 2026-06-20 de https://scholargate.app/pt/compare