Deployment of a Slocum glider with a thermal-recharging engine. Low-cost, high energy density, safe, long-duration easily recharged power supplies have been identified as a high priority technology in themost recent Unmanned Underwater Vehicle Master Plan. This project is designed to address the underwater energy issue by using phase change materials to harvest the ocean's thermal engery for battery recharging. The Slocum thermal glider clark represents the culmination of these efforts. This dataset contains CTD profiles to demonstrate the impact of the thermal glider data in the Caribbean on hurricane intensity forecasting as well as investigate water mass transport through the Anegada Passage.
About this Dataset
| Title | clark-20160624T1800 |
|---|---|
| Description | Deployment of a Slocum glider with a thermal-recharging engine. Low-cost, high energy density, safe, long-duration easily recharged power supplies have been identified as a high priority technology in themost recent Unmanned Underwater Vehicle Master Plan. This project is designed to address the underwater energy issue by using phase change materials to harvest the ocean's thermal engery for battery recharging. The Slocum thermal glider clark represents the culmination of these efforts. This dataset contains CTD profiles to demonstrate the impact of the thermal glider data in the Caribbean on hurricane intensity forecasting as well as investigate water mass transport through the Anegada Passage. |
| Modified | 2025-11-19T17:48:32.849Z |
| Publisher Name | N/A |
| Contact | N/A |
| Keywords | glider , Slocum , Spray , trajectory , underwater glider , water , wmo , In Situ Ocean-based platforms > Seaglider , Earth Science > Oceans > Salinity/Density > Salinity , Earth Science > Oceans > Salinity/Density > Density , Earth Science > Oceans > Salinity/Density > Conductivity , Earth Science > Oceans > Ocean Temperature > Water Temperature , Earth Science > Oceans > Ocean Pressure > Water Pressure , AUVS > Autonomous Underwater Vehicles , Extended endurance with the Thermal E Twin glider and data impact study in the Caribbean Sea , time , latitude , longitude , depth , sea_water_electrical_conductivity , sea_water_electrical_conductivity status_flag , sea_water_density , sea_water_density status_flag , depth status_flag , latitude status_flag , latitude , latitude status_flag , longitude status_flag , longitude , longitude status_flag , latitude , longitude , time , sea_water_pressure , sea_water_pressure status_flag , latitude status_flag , longitude status_flag , time status_flag , sea_water_electrical_conductivity status_flag , sea_water_electrical_conductivity status_flag , sea_water_electrical_conductivity status_flag , aggregate_quality_flag , sea_water_electrical_conductivity status_flag , sea_water_electrical_conductivity status_flag , sea_water_density status_flag , sea_water_density status_flag , gross_range_test_quality_flag , aggregate_quality_flag , sea_water_density status_flag , sea_water_density status_flag , location_test_quality_flag , sea_water_pressure status_flag , sea_water_pressure status_flag , sea_water_pressure status_flag , aggregate_quality_flag , sea_water_pressure status_flag , sea_water_pressure status_flag , sea_water_salinity status_flag , sea_water_salinity status_flag , gross_range_test_quality_flag , aggregate_quality_flag , sea_water_salinity status_flag , sea_water_salinity status_flag , sea_water_temperature status_flag , sea_water_temperature status_flag , sea_water_temperature status_flag , aggregate_quality_flag , sea_water_temperature status_flag , sea_water_temperature status_flag , sea_water_practical_salinity , sea_water_practical_salinity status_flag , sea_water_temperature , sea_water_temperature status_flag , time status_flag , time , time status_flag , eastward_sea_water_velocity , eastward_sea_water_velocity status_flag , northward_sea_water_velocity , northward_sea_water_velocity status_flag , geoscientificInformation |
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