The subject of the present description is a device designed to be attached to vertical dikes for maritime or port protection, allowing the production of energy, and more precisely to the field of electrical energy production from wave energy.
The field of the invention is the exploitation of wave energy, contained in the movement of the swell, i.e. from successive waves born from the effect of the wind on the surface of the sea and sometimes propagated over very long distances. There are different devices to exploit this energy. Many systems are currently being studied, some of which are already commercialized.
Exploiting wave energy to create green electric power is a field undergoing extensive research worldwide.
For the technologies based on a floating elementing element, the nearest to the present invention vary between:
The problems that will be solved by our invention are:
The objectives of the present invention are:
The device subject of the invention has the particularity to directly capture, through a free floating elementing element, the variation of the vertical sea level due to the swell, that is to say, it directly exploits the translation movements. By equipping the vertical dikes of maritime or harbour protection with this device, we benefit from the advantages of on-shore (accessibility, connection, shelters, low investment and maintenance costs) while being offshore (undamped swell—full energy in the vicinity of the vertical protection dikes). By controlling the interactions with the fixation elements, thanks to a triple rail system installed on the seawall wall, the device allows to enlarge the field of exploitation of the wave energy by going towards more important wave amplitudes.
The device is equipped with an amplification system allowing to channel the incident swells and to amplify the incident energy to the device which will optimize its performance and widen the operation periods.
The device is equipped with a self-balancing system based on the density distribution of the floating elementing element to limit the parasitic movements, as well as a ballasting system for total immersion in case of strong storm.
The device is composed of a free floating elementing element (1) allowing to directly exploit the sea variation capturing the swell energy as potential energy. The floating elementing element has a minimum average density of 0.8 with a density after ballasting up to 1.05. This floating elementing element includes:
The floating elementing element (1) is guided by a lateral movement channeling system (2), with 3 rails taking advantage of the support and verticality of the caisson walls, to ensure horizontality and tracking of the upward/downward movement. The travel of the movement channelling system is designed to sweep all cases with exploitable swell energy. The exploitation of the walls allows to extend the operating range of the device to the important amplitudes of the swell. No contact between the wall of the vertical dikes and the floating elementing element (1) is allowed thanks to the movement channeling system (2).
A rigid support (3) connecting the floating elementing element to a hydraulic system of cylinders (5) allows to convert mechanical energy into hydraulic energy in both directions of movement, up and down, the support allows to convert a vertical translation into a horizontal translation of the pistons of the cylinders (5).
An energy amplification system (4) to optimize the efficiency of the device allowing to channel the energy of the swell thanks to inflatable structures supported on vertical flat wall caissons, the floating elementing element is placed in the middle zone of energy convergence, for the vertical dikes which presents this form of amplification, whether it is oblique or triangular, the device will benefit directly from this amplification without needing the amplification system (4).
Cylinders (5) that transform the mechanical energy into hydraulic energy, exploiting the two directions of movement, upward and downward.
A hydraulic unit (6) to manage the junctions and flows between the different cylinders.
Pressure accumulators (7) with controlled flow that receive variable hydraulic energy and transmit a continuous and uniform flow at the output with a capacity of up to 20 cycles of up and down movement (10 min maximum).
An oil tank (8) to ensure the continuity of the fluid chain, high pressure oil—low pressure oil that exits the turbine (9).
A hydro-electric turbine (9) to transform the flow of hydraulic energy into electrical energy.
A management interface (10) of output current and injection in the electrical network allowing a harmonization of voltage and frequency.
The sensitive components are housed in conditions of optimal durability.
This invention is exploitable in:
Note that the shape of the vertical wall can be flat or other.
The objective is to revolutionize the role of port or maritime protection facilities, moving from hunting the swell to its exploitation to produce green energy.
Number | Date | Country | Kind |
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48240 | Feb 2020 | MA | national |
Filing Document | Filing Date | Country | Kind |
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PCT/MA2021/000001 | 1/13/2021 | WO |