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  • Slope shoreline protection system
  • Slope shoreline protection system
  • Slope shoreline protection system
  • Slope shoreline protection system
  • Slope shoreline protection system
  • Slope shoreline protection system
  • Slope shoreline protection system
    Slope shoreline protection system
    Slope shoreline protection system
    Slope shoreline protection system
    Slope shoreline protection system
    Slope shoreline protection system
    Slope shoreline protection system

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    The nest slope and shoreline protection system can isolate, strengthen, and constrain the soil layer and fill above the slope surface, thereby controlling the downward movement and sliding of the slope caused by hydraulic and gravity.

    Establish effective slope protection and effective restraint structures for surface soil, vegetation, and granular materials such as sand, gravel, and larger rocks or stones.

    Product Description
    Product Introduction

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    Product Features

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    performance indicators

    Plant covering protection:

    1. The grid system creates a structural soil stabilization system to protect the road from the negative effects of gravity and loss of surface and vegetation. Limit the upper soil layer and prevent erosion effects.

    2. Consolidate vegetation and enhance its erosion resistance.

    3. Prevent the development of rills caused by dense water flow.

    4. Enhance the effectiveness of other surface protections, such as erosion control blankets and lawn reinforcement pads.

    Shoreline protection:

    When filling with mixed soil, the system creates a flexible armor plate to protect the shoreline from collapse caused by hydraulic forces such as ice and surge. In appropriate cases, filling with topsoil or vegetation can control the movement of saturated soil, allowing natural vegetation to flourish and grow.

    Geomembrane protection:

    1. The cell system filled with various fillers on the impermeable geomembrane is an effective protective layer:

    2. Maintain the integrity of the geomembrane cushion or cover layer.

    3. Protect the mask from wildlife damage, accidental puncture, and natural degradation.

    4. Indirect prevention and control of soil pollution and erosion.


    Slope protection mechanism

    1. The slope is steeper: ≤ 63 °, and the surface soil and other fillers are more stable.

    2. The slope of the sand nest chamber can adapt to continuous water flow with a flow rate of<3m/s.

    3. The slope of the aggregate nest can adapt to continuous water flow of 3m/s ≤ flow velocity<6m/s.

    4. The concrete nest chamber slope can adapt to continuous water flow with a flow rate of ≥ 6m/s.

    5. Flexible structures adapt to foundation settlement and deformation.

    6. Flexible structures are suitable for retaining natural forms of terrain.

    7. Energy conservation and environmental protection: Low quality or local materials can be used as fillers, with less use of concrete.

    8. Nest chamber slope protection anchored at the top, suitable for long-term immersion and root erosion conditions.

    9. The vegetation nest slope can withstand intermittent runoff erosion with a flow rate of ≤ 10m/s and a duration of no more than 48 hours.

    10. Combine the nest chamber, upper and lower layers of soil, and non-woven geotextile into a multi-layer protective structure through vegetation roots.

    11. Ecological aesthetics: better water permeability, moisture retention, and soil retention, which is conducive to vegetation growth; There are almost no engineering traces;


    scope of application

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    Construction points

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