Azure Nodes strengthen bank protection while simultaneously enhancing biodiversity. They can be incorporated into the toe construction of shoreline protection systems alongside armour rock. Their integration is fully customizable, with a flexible ratio of armour rock to Azure Nodes to suit specific project requirements, and module weights adjustable to match local storm conditions… Learn more.

Product specifications
Dimensions value
Mass impact value
Estimated product lifetime 30+ years

 

Suitable for the following conditions
Optimal water depth 0-10m (interdidal)
Substrate types Sandy, shale, muddy, coarse, mixed, rock
Infrastructure types Embedded in the riprap
Applicable sectors Dyke, shore and bank protection
Ecological aspects
Target fish species xxx
Target shellfish species xxx
Impact zones xxx

More information

Azure Nodes are scour protection modules that increase biodiversity. Complex shapes and calcareous material provide habitat for species such as Atlantic cod, European lobster, and European flat oysters. As [name] comply with the technical specifications of armour rock, they are easily integrated into rock scour protection systems.

Nodes are made of natural chemical components with a controlled shape and surface complexity to provide shelter and habitat for marine life of various types and sizes, promoting biodiversity. The surface complexity also results in increased organism growth compared to standard rocks allowing for more CO2 sequestration, furthering nature enhancement and offsetting CO2 emissions from infrastructure installations.

Moreover, the Nodes’ stability have been tested to be safe in severe hydrodynamic conditions. Finally, engineered to suit conventional installation methods, Nodes make nature-enhancement incorporation into wind parks a more attractive choice.

Technology & Ecology

Mecal Nodes create synergy between ecological and technical expertise, delivering the nature restoration we are committed to. Building on our long-standing expertise, Mecal is excited to support clients in designing integrated solutions that address today’s growing need for ecological enhancement in offshore wind parks.