A detachable central balancing fin adds lateral resistance to cut drift, steady the board, and reduce course corrections in choppy water.
A floatable sensor buoy tracks target product buildup on ocean carbon removal devices while protecting power and sensing components from seawater.
An adjustable buoyant work platform enables top-down megastructure construction on water, avoiding large cranes and high-altitude work.
A floatable polymer skid board uses internal buoyancy, tie-down apertures, and energy-absorbing layers to secure airdrop cargo and limit impact damage.
Modular elastomer grid layers use slots, bosses, and apertures to absorb airdrop impact while resisting moisture and enabling reuse.
Microbead vacuum retention conforms around equipment inside a welded-wall case to improve impact protection during transport.
Purging gas displaces stored cryogenic liquid and buffers tank temperature, speeding liquid changeover while limiting thermal deformation.
Class-based ML estimates missing vessel parameters, while hydrophone anomaly detection flags mechanical issues for earlier maintenance alerts.
Floating solar- and wind-powered aeration cuts grid and diesel dependence while delivering flexible, scalable pond oxygenation.
A vacuum-fit surfboard case uses microbeads, Faraday shielding, insulation, and dehumidification to prevent damage, moisture exposure, and loss.
Outward hull curves and adjustable rear plates help a watersports boat maintain consistent wake shape and size across varying surfing speeds.
A compliant layer and stiffness-matched dome support ring help a deep-water optical enclosure resist stress, fractures, and implosion.
A floating platform with trolley tracks, crane lifting, and stowage cradles moves payloads out of the hull for faster protected towing.
Two interlocking insert segments combine padding and a hard shell to protect surfboards from impact, scratches, and environmental wear.
A geared fin box insert lets surfers adjust toe and camber angles separately or together, improving fin stability and wave-specific control.
Computes current-corrected vessel turns to keep towed seismic elements aligned, avoid cable stress, and shorten survey travel time.
A locking foldable fin stays attached to the board, cutting storage space, avoiding fin loss, and speeding setup for watersport transport.
Stored format templates let AIS receivers analyze changed binary navigation messages without software or equipment updates.
A concave or convex bottom straight part improves inflatable surfboard tracking, balance, rigidity, and water resistance.
A glue attaching layer between the EVA pad and inflatable body reduces bulging and glue peeling from water and sunlight exposure.
A floating vessel with active motion-compensated crane assembly installs offshore wind turbines in situ, cutting towing delays and weather exposure.
Multi-source AIS, satellite, and RF trajectory analysis predicts vessel rendezvous early, enabling timely alerts against illegal activity at sea.
Asymmetrical foil-shaped pontoons and a parallel channel cut wetted area to improve SUP stability, speed, tracking, and energy use.
A buoyant hydrofoil wing combines motor, solar, and human power to lift a diver above water and tow below with low drag and stability.
Acoustic interrogation and reply signals locate, identify, and recover submerged fishing gear without ropes, reducing loss and marine animal entanglement.
A hydrogel diffusion buoy sustains localized algaecide release for months, reducing reapplication, operator exposure, and drift in water bodies.
An offset support buoy and brace let a spar-type floating wind turbine be assembled in shallow water, towed inclined, and upended with simpler equipment.
Two snap-fit float halves capture a line, stop longitudinal slip without knots, and use a foam core to resist waterlogging.
A two-fluid cascade ORC uses condensation heat to vaporize LNG, cutting regasification energy loss while balancing thermal and electrical loads.
Multiple chart scales and live sensor data are fused into quadtree grids to improve route accuracy while reducing navigation computing load.
A translucent buoyant nursery platform grows and plants wet soil species in hydric environments while supporting drone use without an industrial footprint.