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Power At Sea DEVELOP Phase

Jake Lauer, Isabella Lencastre Heinemann, Bailey Gargasz, Zachery Boyer
May 10, 2026
Published Date

Research Abstract & Technology Focus

This project develops a renewable, wave-powered charging system designed to extend the mission duration of Autonomous Underwater Vehicles by eliminating the need for frequent manual battery replacement. Building upon a prior oscillating water column prototype from the CONCEPT phase, the team redesigned and tested an improved system capable of converting wave-induced air motion into electrical power using a Wells turbine. Key enhancements include doubling the column diameter to increase displaced air volume, integrating a flared inlet and bi-directional nozzle to improve airflow, and selecting corrosion-resistant materials suitable for long-term deployment in marine environments. Multiple prototypes were constructed and evaluated through controlled pool tests and field tests at local lakes, demonstrating measurable power generation of 0.47 Wh per cycle with a PC-fan turbine substitute and confirming the potential for substantial performance gains using a purpose-built turbine. The system is designed to be modular, serviceable, and scalable from watts to kilowatts, enabling flexible deployment for various AUV power demands.

Correlated Market Trend: Aerospace Engineering

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Power At Sea DEVELOP Phase

This project develops a renewable, wave-powered charging system designed to extend the mission duration of Autonomous Underwater Vehicles by eliminating the need for frequent manual battery replace...

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Review of the Feasibility and Implications of the Framework for Subsea Power Generation in the Niger Delta

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Undersea Defence Infrastructure & Security Market to Reach US$56.75 Billion by 2036, Growing at 6.8% CAGR

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Exploiting Phase Memory in Multicarrier Waveforms for Robust Underwater Acoustic Communication

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Hydrodynamic Velocity Performance of Turbine-Type and Thruster-Type Conduction-Mode MHD Drives under Electrical Voltage Variation in Seawater

Background: Indonesia's maritime transportation sector is heavily dependent on fossil fuels, driving interest in clean propulsion alternatives. The magnetohydrodynamic (MHD) drive, which generates ...

Frequently Asked Questions (FAQ)

Curated market intelligence mapped to this research.

What is the core focus of the research titled 'Power At Sea DEVELOP Phase'?

This literature focuses on: This project develops a renewable, wave-powered charging system designed to extend the mission duration of Autonomous Underwater Vehicles by eliminating the need for frequent manual battery replacement. Building upon a prior oscillating water colu...

What other academic literature is closely related to 'Power At Sea DEVELOP Phase'?

Yes, highly correlated activity was mapped. An entry titled 'Power At Sea DEVELOP Phase' discusses this: This project develops a renewable, wave-powered charging system designed to extend the mission duration of Autonomous Underwater Vehicles by elimin...

Are there commercial applications of 'Power At Sea DEVELOP Phase' in market news publications?

Yes, highly correlated activity was mapped. An entry titled 'Undersea Defence Infrastructure & Security Market to Reach US$56.75 Billion by 2036, Growing at 6.8% CAGR' discusses this: Rising geopolitical tensions and threats to subsea infrastructure are driving investment in undersea defence, with the market set to reach $56.75bn...

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