Seaglider: a long-range autonomous underwater vehicle for oceanographic research
Charles C. Eriksen, T. James Osse, R.D. Light, Tsrong-Yi Wen, T.W. Lehman, P.L. Sabin, J. William O. Ballard, A. M. Chiodi
Abstract
Charles C. Eriksen, T. James Osse, R.D. Light, Tsrong-Yi Wen, T.W. Lehman, P.L. Sabin, J. William O. Ballard, A. M. Chiodi
Abstract
Seagliders are small, reusable autonomous underwater vehicles designed to glide from the ocean surface to a programmed depth and back while measuring temperature, salinity, depth-averaged current, and other quantities along a sawtooth trajectory through the water. Their low hydrodynamic drag and wide pitch control range allow glide slopes in the range 0.2 to 3. They are designed for missions in a range of several thousand kilometers and durations of many months. Seagliders are commanded remotely and report their measurements in near real time via wireless telemetry. The development and operation of Seagliders and the results of field trials in Puget Sound are reported.
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Seagliders are small, reusable autonomous underwater vehicles designed to glide from the ocean surface to a programmed depth and back while measuring temperature, salinity, depth-averaged current, and other quantities along a sawtooth trajectory through the water. Their low hydrodynamic drag and wide pitch control range allow glide slopes in the range 0.2 to 3. They are designed for missions in a range of several thousand kilometers and durations of many months. Seagliders are commanded remotely and report their measurements in near real time via wireless telemetry. The development and operation of Seagliders and the results of field trials in Puget Sound are reported.
Key concepts: Underwater, Sawtooth wave, Range (aeronautics), Drag, Telemetry, Remotely operated underwater vehicle, Trajectory, Marine engineering