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Coastal construction site with excavators and Secutex® Soft Rock sand containers.

Coastal protection

Geosynthetics for shorelines, revetments and dunes

Coastal protection in hydraulic engineering describes the construction of structures that defend shorelines, dunes, beaches and coastal infrastructure against wave attack, erosion and sea level rise. Without effective protection, sandy coasts can lose several metres of shoreline per year under storm conditions. Secutex® H, Secutex® HB and Secutex® Soft Rock deliver proven filter, separation and structural solutions for revetments, dune reinforcement and breakwaters.

At a glance

  • Construction of geosynthetic revetment and dune protection systems against coastal erosion, wave attack and sea level rise.
  • Secutex® H (geotextile), Secutex® HB (sand mat), Secutex® Soft Rock (sand containers)
  • Reduced armourstone requirements compared with armourstone-only revetment, and transport savings as local sand fill is used in Soft Rock containers
  • EAK (DE), EAG-GTD (DE), BAW TLG 2018, BS 6349 (UK), EN 13253, EN ISO 10318
  • Dune reinforcement, coastal revetments, beach restoration, breakwaters, groynes, sea dyke protection, harbour construction

Coastal protection: challenges, solutions and measurable results

Challenges

  • Coastal erosion removes metres of shoreline per year under storm conditions
  • Wave attack undermines revetment and dyke slope stability
  • Scour washes fine particles from beneath armourstone layers
  • High procurement and transport costs of quarried rock at remote locations
  • Difficult precise filter layer placement on soft seabed in tidal currents

Solution

  • Secutex® H nonwoven geotextile as a filter and separation layer in revetments
  • Secutex® HB sand mat for rapid underwater filter layer installation from a vessel
  • Secutex® Soft Rock sand containers replace armourstone at lower cost
  • Locally sourced sand used as fill material

Result

  • Flexible, adaptable systems conform to irregular seabed topography
  • Shoreline stabilised against ongoing erosion and storm-wave attack
  • Reliable filter stability: soil retention without hydraulic pressure build-up
  • Cost reduction compared with armourstone-only where local sand is available as fill

Coastal protection: typical applications of geosynthetic systems

Naue geosynthetic products are used wherever shoreline stability, long-term filter performance and economic efficiency are required.

  • Revetment system with sand mats

    Coastal revetments

    Filter and separation layer below armour stone to prevent scour and soil particle loss

  • Coastal and dune protection

    Dune reinforcement

    Engineered dunes with sand container core resistant to storm surge overtopping

  • Durability water sand

    Sea dyke protection

    Dyke core protection against wave erosion and overtopping damage

  • Revetment system with sand mats

    Breakwaters and groynes

    Filter layer beneath the underwater rock fill installed from a vessel

  • Scour protection

    Harbour and marina

    Jetty foundations, pier connections and scour protection

Installation of an underwater coastal protection system with Naue Secutex® HB sand mat from a vessel on the sea.
Installation of an underwater coastal protection system with Naue Secutex® HB sand mat from a vessel on the sea.

Robust under wave forces, reliable in the field

Coastal protection structures face demanding conditions from the first day of installation. Products must withstand heavy stone fill, tidal currents and wave impact during and after placement. Secutex® H nonwoven geotextiles and Secutex® HB sand mats are engineered for high mechanical resistance during installation and long-term service in saline, dynamic environments.

Practical advantages:

  • High puncture and tensile resistance withstands coarse rock fill and fender pile installation without filter impairment
  • Secutex® HB rolls can be laid underwater from a workboat using a long-arm excavator, to depths of over 6 metres
  • Positional stability on soft seabed: no gradual incremental layer build-up required on the water
  • Fender piles can be rammed through the sand mat after installation without damaging the filter function
  • Products are proven in saline, tidal and dynamic hydraulic

Coastal protection hydraulic engineering: frequently asked questions

Coastal protection in hydraulic engineering refers to the design and construction of structures that defend shorelines, beaches, dunes and coastal infrastructure against wave erosion, storm surge and sea level rise. Geosynthetics such as Secutex® H act as filter, separation and structural elements within revetments, dune systems and breakwaters. They replace or supplement natural armourstone where availability or cost is prohibitive.

Product selection depends on the application. For standard revetments and dike slopes, Secutex® H nonwoven geotextile provides filter and separation below armourstones. For underwater installation, Secutex® HB sand mat sinks reliably and provides stable filtration. Where armourstone is unavailable or costly, Secutex® Soft Rock containers filled with local sand form a robust structural and filter layer. You can get digital product selection support in the Naue SolutionFinder.

Naue products comply with EAK (Empfehlungen fuer die Ausfuehrung von Kuestenschutzbauwerken), EAG-GTD (Empfehlungen fuer den Einsatz von Geokunststoffen im Damm- und Deichbau), BAW TLG 2018, EN 13253 (geotextiles for erosion control) and EN ISO 10318. Secutex® HB fulfils BAW TLG 2018 Type A and B2 sand mat requirements. For UK projects, BS 6349 applies.

Where Secutex® Soft Rock containers are filled with locally sourced sand, the need for quarried armourstone is reduced or eliminated. Armourstone is often the largest cost item in remote or island locations. Faster installation also reduces the required weather window and plant hire costs.

Secutex® HB sand mats are supplied in roll format and deployed from a work vessel using a long-arm excavator and crossbeam. The quartz sand ballast allows the mat to sink to the seabed rapidly, even in current conditions. Installation is feasible at depths exceeding 6 m. Fender piles can be rammed through the mat after installation. Rock fill can be placed directly onto the mat without impairing the filter function.

Secutex® H and Secutex® HB are tested for filter efficiency, positional stability, erosion stability, robustness and flexibility in line with BAW TLG 2018 requirements. Pore water pressure and tensile strain under wave loading are analysed in stability calculations. The Federal Institute for Hydraulic Engineering (BAW, Karlsruhe) has provided specialist input on stability calculations for Naue-based coastal structures.

Yes. Reference projects include the Medmerry managed realignment in West Sussex, UK (24,300 m² of Secutex® HB), North Berwick West Links dune restoration in Scotland (850 Secutex® Soft Rock containers), Blyth South Beach dune reinforcement in Northumberland, and the Prerow Replacement Harbour on the Baltic Sea coast, Germany. Case studies are available on this page.

Filter stability is verified using grain size distribution data from the subsoil. The characteristic opening size (O90) of the geotextile must be compatible with the d90 and d50 values of the subsoil according to EAG-GTD and BAW TLG 2018 criteria. Naue’s engineering team can assist with filter stability calculations and product selection based on project-specific soil data.

Naue Secutex® products are manufactured from polypropylene or polyester fibres, which are chemically resistant to salt water, UV exposure and biological degradation. Field performance data and accelerated ageing studies indicate service lives exceeding 25 years in saline, tidal and wave-exposed environments. Specific durability data and material certificates are available on request via this contact form.

Coastal protection design: standards, methods and engineering support

The dimensioning of geosynthetic coastal protection systems is based on recognised standards. Key design parameters include wave height, wave period, water depth, slope angle, subsoil grain size distribution and required filter stability coefficients. Our software tools as well as our engineering team support specifiers in selecting the correct product type and verifying compliance.

  • EAK (DE): Qverarching design framework with recommendations for coastal protection structures
  • EAG-GTD (DE): Recommendations for the use of geosynthetics in dam and dyke construction
  • BAW TLG 2018: Federal Waterway Engineering guidelines for filter geotextile and sand mat requirements
  • EN 13253: Geotextiles for erosion control applications; testing and classification
  • BS 6349 (UK): Maritime structures design code; applicable for UK coastal projects
  • EN ISO 10318: Geosynthetics terminology (key definitions and classifications for geosynthetic products)
Construction of a coastal protection revetment in Bremerhaven, Germany, where Naue Secutex® H geotextile is installed beneath the riprap as a filtration and separation layer.
Construction of a coastal protection revetment in Bremerhaven, Germany, where Naue Secutex® H geotextile is installed beneath the riprap as a filtration and separation layer.
Naue Secutex® H geotextile is installed beneath the riprap during a coastal protection project in Bremerhaven, Germany. The nonwoven filtration layer prevents the migration of fine soil particles while allowing water to pass, ensuring the long-term stability of the revetment.
Naue Secutex® H geotextile is installed beneath the riprap during a coastal protection project in Bremerhaven, Germany. The nonwoven filtration layer prevents the migration of fine soil particles while allowing water to pass, ensuring the long-term stability of the revetment.

How geosynthetics work in coastal revetments

  1. Secutex® filter layer retains fine soil particles under wave loading and tidal currents
  2. Secutex® HB sand mat: sand-ballasted sinking for precise placement at depth
  3. Secutex® Soft Rock containers replace armourstone as structural and filter elements
  4. Permeable structure: hydraulic pressure dissipated through filter layers without build-up
  5. Adaptable to irregular seabed topography, fits natural coastal morphology

Downloads and services

  • The safe coast - coastal protectionYouTubeWatch
  • Coastal protection with Secutex® Soft Rock - Lubmin GermanyYouTubeWatch
  • Safely sealed clean sandy beach sedimentation barrier at the Lausitz beachesYouTubeWatch

Geotechnical software

Naue Portal - the free digital platform for geotechnical engineers.

Naue Portal: your all-in-one free geotechnical software solution for planning and cost estimation

  • One platform – multiple solutions: access a wide range of geotechnical design tools in a single portal.
  • User-friendly and accessible: available anytime, anywhere via desktop or mobile.
  • Optimised cost and material usage: reduce construction costs while ensuring long-term project stability.
  • Compliant with industry standards: aligns with AASHTO, and other engineering guidelines.