
Wind, wave and sun in. Green hydrogen out.
One floating ring. Three energy sources. Hydrogen made on the spot. Here is the mechanism, step by step.
Seven steps from the sea to the tank.
Scroll, or tap a step.
Harvest the wind
Vertical-axis turbines on the deck. Any wind direction, low profile, quiet.
Harvest the sun
The deck crown is a solar skin. The one source with a predictable curve.
Harvest the waves
Wave converters on the floaters turn constant motion into power.
Seawater becomes hydrogen
Desalinate, then split by electrolysis. The sea supplies the cooling water.
Store it as hydrogen
Three sources stack into one steady curve. Hydrogen holds the surplus and powers the ring all night.
Refuel yachts at sea
Hydrogen yachts dock and pay at the pump, ten minutes from the coast.
The rest is a by-product
A fish cage below. Nine suites and a beach club on deck. Rings join, and a tug can move one.
Nine systems. One structure.
Every system has years at sea. Integration is solved at design stage.
Vertical-axis wind turbines
Any wind direction. Low, quiet, and safe next to guests.
Solar skin
PV on the deck crown and on the tender's mast.
Wave energy system
Converters on the floaters. The structure is already there.
Desalination and electrolysis
Seawater in, green hydrogen out. The sea cools the process.
Hydrogen storage
Buffers the surplus, powers the ring at night, feeds the dock.
Refuelling dock
Yachts pay at the pump. Pricing follows the market.
Fish cage
The submerged truss doubles as aquaculture, run with a local specialist.
Superstructure
Nine suites, two private decks, kitchen, bar and crew space.
Floaters and anchoring
Built in-house on class-approved technology. Anchored under a maritime permit, or held by a tug.
Hydrogen, not batteries.
Three sources level each other out. Hydrogen stores what is left. On a boat it also weighs 3 to 5 times less than batteries.
One ring, or a hundred.
Rings join to add power on demand. Joined rings become a farm, or a village at sea. Scale lowers the cost of hydrogen.
Proven hardware on a class-approved floating island.
Floating island technology
Developed by Dr. Abdullah Daou at Beirut International Marine Industry. Approved by marine classification societies.
Our own shipyard
350 trained technicians on call. Steel, floaters and architecture built in-house.
Years at sea
Every system on board has a long sea track record. Integration is solved at design stage.
Modular
Rings join to add power on demand. Marinas scale hydrogen ring by ring.
Movable
A tug moves a ring where demand is. It is not a sunk coastal structure.
Designed to be lived on
Nine suites, private decks, kitchen, bar and cold rooms, by AUB Architects.

A shipyard, not a rendering.
Steel, floaters and architecture built in-house. 350 technicians on call. The design is paid once and repeats on every ring.
One platform. Three coastal problems.
The Mediterranean coast is short of power, imports its fish and wants new experiences. A Sea Ring answers all three on one deck.
Green hydrogen, made at sea
Wind, wave and solar only. No fossil backup, no grid.
No seabed damage
No cables, no breakwaters. The ring floats, anchors and can leave.
Open-water aquaculture
Fish farming that normally needs a bay, sharing the ring's structure.
Zero-fuel logistics
The tender boat runs on the ring's own hydrogen.
One footprint, three uses
Energy, food and tourism stacked on one spot, as EU multi-use research asks.
SDG aligned
Clean energy (7), innovation (9), climate (13), life below water (14), zero hunger (2).

