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Construction site with pillars fitted with a Secudrain® drainage mat and heavy machinery amid piles of dirt.

Structural drainage with geosynthetics

Drain structures reliably: geocomposites for walls, tunnels, basements

Structural drainage with geosynthetics describes the controlled collection and discharge of groundwater, gas and seepage water from civil engineering structures. Hydrostatic pressure and water ingress damage retaining walls, tunnel linings and basement slabs. Secudrain® geocomposites resolve this by replacing conventional granular drainage aggregate with a slim, high-performance system that maintains reliable flow for the full-service life of the structure.

At a glance

  • Application: Controlled collection and discharge of groundwater, gas and seepage water from civil engineering structures to relieve hydrostatic pressure on waterproofing systems and structure faces.
  • Products: The primary Naue products are Secudrain® (WD series and standard series).
  • Standards: Design follows EN ISO 12958, EN ISO 9863-1, EN ISO 10319, EBGEO, DIN 4095.
  • Typical projects: Typical projects include motorway retaining walls, railway abutments, basement waterproofing.

Structural drainage with geosynthetics: from challenge to solution

Challenges

  • Hydrostatic pressure builds up behind retaining walls and tunnel linings
  • Conventional granular drainage layers require 300–600 mm thickness and large aggregate volumes
  • Groundwater carries fine soil particles into the drainage layer, causing clogging
  • Constrained access and limited space in underground construction
  • Drainage core creep under sustained compressive stress over 100-year design life
  • Alkali attack from concrete pore water on filter nonwoven in structure backfill

Solution

  • Secudrain® geocomposites installed directly against the structure face relieve water pressure
  • Secudrain® geocomposite (6–25 mm thick) replaces the full granular drainage layer
  • Filter-stable Secutex® nonwoven (AOS 0.07–0.20 mm) bonded to Secudrain® core prevents fine migration
  • Secudrain® in rolls (3.80 m x 50 m): unrolled against structure face in one step, no aggregate placement
  • Secutex® polypropylene nonwoven: chemically resistant across a pH range of approximately 2 to 13 (resistant to acids and alkalis); EBA-qualified types available.

Result

  • Hydrostatic pressure on structure face reduced to near zero
  • Up to 90 % reduction in drainage layer material volume
  • Long-term drainage performance maintained per EN ISO 12958 - clogging risk minimised
  • Faster installation cycle - reduced labour cost; less construction waste on site
  • Drainage capacity maintained over full 100-year service life per design assessment
  • EBA railway qualification achieved - suitable for direct contact with concrete structures

Structural drainage with geosynthetics: typical applications

Secudrain® geocomposites are used wherever groundwater and seepage water must be reliably managed behind civil engineering structures, without the bulk and complexity of conventional granular drainage.

  • Wall and slopes

    Retaining wall drainage

    Secudrain® geocomposites relieve hydrostatic pressure behind concrete, masonry and reinforced earth retaining walls throughout their service life.

  • Tunnelling

    Tunnel lining drainage

    Secudrain® manages groundwater ingress in cut-and-cover tunnels and underground structures without granular fill.

  • Waterproofing

    Basement waterproofing drainage

    A slim drainage layer behind basement slabs and walls keeps structures dry and reduces upward water pressure.

  • Technical structures drainage

    Bridge abutment drainage

    Vertical geocomposites collect seepage water from bridge abutment backfill, protecting structural integrity over the design life.

  • Landfill drainage

    Landfill capping drainage

    Secudrain® beneath capping geomembranes manages leachate and gas pressure on steep landfill closure slopes.

Worker using a heat welding tool to fix the Naue Secudrain® drainage layer.
Worker using a heat welding tool to fix the Naue Secudrain® drainage layer.

Install with confidence: robust performance from day one

Geocomposite drainage systems must perform reliably during installation and under long-term service loads. Secudrain® products are engineered for robustness during placement and maintain drainage performance under the compressive stresses found in deep retaining wall and tunnel applications.

Practical site advantages:

  • Drainage core maintains flow capacity at compressive stresses up to 500 kPa (EN ISO 12958 tested)
  • Roll format (3.80 m x 50 m) allows rapid unrolling against the structure face - no aggregate handling required
  • Secutex® filter nonwoven is needle-punched polypropylene: resistant to UV, alkali (pH 4-9) and biological degradation
  • System solution available for drainage only (Secudrain® WD series) or combined drainage and protection applications
  • Where additional filtration of backfill fines is required, a separate Secutex® layer can be installed in front of the Secudrain® geocomposite.

Structural drainage with geosynthetics: frequently asked questions

Structural drainage with geosynthetics describes the use of factory-manufactured geocomposite products to collect and discharge groundwater and seepage water from civil engineering structures. A geocomposite drainage system consists of a three-dimensional drainage core encapsulated within filter-stable geotextile nonwoven layers. It replaces conventional granular drainage aggregate behind retaining walls, tunnel linings and basement structures, delivering the same drainage function in a fraction of the material thickness.

Selection depends on three factors: the compressive stress at the drainage layer (related to structure depth), the grading of the backfill material (filtration requirement) and the chemical environment (alkali resistance). For shallow structures with clean granular backfill, the WD series is appropriate. Use the digital SolutionFinder or contact Naue’s sales team with your project depth, ground conditions and loading to receive a specific product recommendation.

In Germany, design follows EBGEO and DIN 4095. In the United Kingdom, BS 8102 covers waterproofing of below-ground structures and references geosynthetic drainage layers. In-plane flow capacity is measured to EN ISO 12958. Thickness under load is measured to EN ISO 9863-1. Tensile properties of the filter nonwoven are tested to EN ISO 10319. Naue provides product-specific long-term design values derived from laboratory creep tests to these standards.

Conventional granular drainage layers behind retaining walls typically require 300–600 mm of graded aggregate plus a separate filter geotextile. Replacing this with Secudrain® (6–25 mm thick) eliminates up to 90 % of drainage layer material volume. Savings include reduced aggregate purchase, reduced haulage, lower crane time and a shorter construction programme. Contact Naue’s Technical Sales for a project-specific cost comparison.

The Secudrain® roll is positioned at the base of the wall face with the filter nonwoven facing the backfill soil. The geocomposite is unrolled upward against the wall and pinned or bonded at overlaps. At the base, the drainage geocomposite connects to a perforated collection pipe at formation level. Backfilling proceeds directly over the Secudrain® using standard compaction equipment. No aggregate batching or separate filter layer placement is required.

Yes. Secudrain® WAS 7 is qualified to the Testing Conditions for Geosynthetics of the German Federal Railway Authority (EBA) dated 2026. The qualification covers alkali resistance, hydraulic performance and filter stability requirements for railway drainage applications. For other national railway authorities, contact Naue’s Technical Sales for the applicable product qualification documentation

Long-term drainage capacity is determined through EN ISO 12958 creep testing, in which the geocomposite is held under sustained compressive load for extended test periods. The resulting reduction in in-plane flow capacity over time is quantified and applied as a reduction factor to derive long-term design values. Naue provides product-specific long-term design values for Secudrain® based on these laboratory tests, enabling designers to verify compliance with required drainage capacity over a 100-year design life.

Yes. Secudrain® is used beneath geomembrane capping systems on landfill closure slopes to manage leachate and gas pressure in the capping layer. On steep slopes, the Secudrain® acts as both drainage and protection layer, shielding the geomembrane from puncture damage caused by overlying cover soil. Carbofol® geomembranes are typically specified below the Secudrain® drainage composite. The system is designed in accordance with EBGEO drainage requirements for landfill applications.

Structural drainage design: codes, standards and Naue support

Geosynthetic drainage systems for civil engineering structures are designed against recognised standards. The designer verifies that the long-term in-plane flow capacity of the chosen geocomposite exceeds the required drainage flow at the design compressive stress. Naue provides product-specific long-term design values derived from EN ISO 12958 creep testing.

  • EN ISO 12958: In-plane water drainage capacity of geosynthetics - primary test standard for Secudrain® flow capacity specification and structural drainage design
  • EN ISO 9863-1: Thickness of geosynthetics under specified pressures - governs thickness-under-load values used in structural drainage layer calculations
  • EN ISO 10319: Tensile properties of geosynthetics - governs filter nonwoven (Secutex®) tensile strength and elongation specification
  • EBGEO: Recommendations of the German Society for Geotechnics on geosynthetics - primary German design guideline for structural drainage with geocomposites
  • DIN 4095: Drainage by geotextiles in geotechnical applications - governs German design of geotextile drainage systems in geotechnical structures
  • EBA (Germany): Testing conditions for geosynthetics: Federal Railway Authority - Secudrain® WAS 7 qualified to EBA requirements for railway structure drainage
Concrete bridge deck under construction with white Secudrain® drainage mat on the side and temporary wooden safety railings on top.
Concrete bridge deck under construction with white Secudrain® drainage mat on the side and temporary wooden safety railings on top.

How Secudrain® works

The following system benefits come directly from how the Naue products work within the layer structure:

  1. Reliable groundwater drainage: hydrostatic pressure relieved to near zero behind structure face
  2. Slim geocomposite (6-25 mm) replaces 300-600 mm conventional granular drainage layer
  3. Integrated filter nonwoven: prevents fine particle migration - maintains long-term in-plane flow
  4. Compressive strength: tested to 500 kPa, suitable for deep structures and high-load tunnels
  5. EBA-qualified product available: approved for German Federal Railway Authority drainage applications

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  • Compliant with industry standards: aligns with AASHTO, and other engineering guidelines.