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Ditemukan: 4 dokumenPROVISION OF OCEAN WEATHER-INFORMED MARINE TOURISM ACTIVITY IN KEPULAUAN SERIBU TO MAINTAIN SAFETY STANDARDS AND QUALITY OF USER EXPERIENCE
Kepulauan Seribu is a marine tourism destination with high dependence on oceanographic and meteorological conditions, yet no single platform has previously provided integrated tidal, weather, and activity safety information accessible to tourists and tourism operators. This study addresses that gap by developing Searibu, a WebGIS-based marine information system that delivers harmonic tidal predictions using the TPXO10-atlas model, marine weather and ocean condition forecasts from the ECMWF IFS, MFWAM, and SMOC models accessed through the Open-Meteo API, an automated activity safety assessment classifying eleven marine tourism activities as Safe, Caution, or Avoid based on current and forecast metocean conditions, and a water-level data export module producing IHO S-104 Edition 2.0.0-compliant HDF5 files. The system was developed using the Iterative and Incremental Development methodology on a three-tier architecture comprising a PostgreSQL and SQLite data layer, a Flask and Python application logic layer, and a React and TypeScript presentation layer. Quality evaluation against ISO/IEC 25010 assessed seven of eight quality characteristics as Fulfilled. These results confirm that Searibu provides an accessible, interpretable, and standards-compliant approach to supporting safer and better-informed marine tourism activities in Kepulauan Seribu.
PROVISION OF OCEAN WEATHER-INFORMED MARINE TOURISM ACTIVITY IN KEPULAUAN SERIBU TO MAINTAIN SAFETY STANDARDS AND QUALITY OF USER EXPERIENCE
Kepulauan Seribu is a marine tourism destination with high dependence on oceanographic and meteorological conditions, yet no single platform has previously provided integrated tidal, weather, and activity safety information accessible to tourists and tourism operators. This study addresses that gap by developing Searibu, a WebGIS-based marine information system that delivers harmonic tidal predictions using the TPXO10-atlas model, marine weather and ocean condition forecasts from the ECMWF IFS, MFWAM, and SMOC models accessed through the Open-Meteo API, an automated activity safety assessment classifying eleven marine tourism activities as Safe, Caution, or Avoid based on current and forecast metocean conditions, and a water-level data export module producing IHO S-104 Edition 2.0.0-compliant HDF5 files. The system was developed using the Iterative and Incremental Development methodology on a three-tier architecture comprising a PostgreSQL and SQLite data layer, a Flask and Python application logic layer, and a React and TypeScript presentation layer. Quality evaluation against ISO/IEC 25010 assessed seven of eight quality characteristics as Fulfilled. These results confirm that Searibu provides an accessible, interpretable, and standards-compliant approach to supporting safer and better-informed marine tourism activities in Kepulauan Seribu.
PROVISION OF OCEAN WEATHER-INFORMED MARINE TOURISM ACTIVITY IN KEPULAUAN SERIBU TO MAINTAIN SAFETY STANDARDS AND QUALITY OF USER EXPERIENCE
Kepulauan Seribu is a marine tourism destination with high dependence on oceanographic and meteorological conditions, yet no single platform has previously provided integrated tidal, weather, and activity safety information accessible to tourists and tourism operators. This study addresses that gap by developing Searibu, a WebGIS-based marine information system that delivers harmonic tidal predictions using the TPXO10-atlas model, marine weather and ocean condition forecasts from the ECMWF IFS, MFWAM, and SMOC models accessed through the Open-Meteo API, an automated activity safety assessment classifying eleven marine tourism activities as Safe, Caution, or Avoid based on current and forecast metocean conditions, and a water-level data export module producing IHO S-104 Edition 2.0.0-compliant HDF5 files. The system was developed using the Iterative and Incremental Development methodology on a three-tier architecture comprising a PostgreSQL and SQLite data layer, a Flask and Python application logic layer, and a React and TypeScript presentation layer. Quality evaluation against ISO/IEC 25010 assessed seven of eight quality characteristics as Fulfilled. These results confirm that Searibu provides an accessible, interpretable, and standards-compliant approach to supporting safer and better-informed marine tourism activities in Kepulauan Seribu.
PROVISION OF OCEAN WEATHER-INFORMED MARINE TOURISM ACTIVITY IN KEPULAUAN SERIBU TO MAINTAIN SAFETY STANDARDS AND QUALITY OF USER EXPERIENCE
Kepulauan Seribu is a marine tourism destination with high dependence on oceanographic and meteorological conditions, yet no single platform has previously provided integrated tidal, weather, and activity safety information accessible to tourists and tourism operators. This study addresses that gap by developing Searibu, a WebGIS-based marine information system that delivers harmonic tidal predictions using the TPXO10-atlas model, marine weather and ocean condition forecasts from the ECMWF IFS, MFWAM, and SMOC models accessed through the Open-Meteo API, an automated activity safety assessment classifying eleven marine tourism activities as Safe, Caution, or Avoid based on current and forecast metocean conditions, and a water-level data export module producing IHO S-104 Edition 2.0.0-compliant HDF5 files. The system was developed using the Iterative and Incremental Development methodology on a three-tier architecture comprising a PostgreSQL and SQLite data layer, a Flask and Python application logic layer, and a React and TypeScript presentation layer. Quality evaluation against ISO/IEC 25010 assessed seven of eight quality characteristics as Fulfilled. These results confirm that Searibu provides an accessible, interpretable, and standards-compliant approach to supporting safer and better-informed marine tourism activities in Kepulauan Seribu.