
Non-Woven Geo Bags for Reliable Erosion Protection
Built To Protect Every Shoreline
Jaypee Industrial Corporation supplies high-quality needle-punched non-woven geo bags engineered for filtration, drainage, soil retention, and long-term erosion-control applications.










Riverbank Protection
About Non-Woven Geo Bags
Jaypee Industrial Corporation manufactures Non-Woven Geo Bags using high-quality, UV-stabilised needle-punched geotextile fabric. Designed for filtration, drainage, soil retention, and erosion-control applications, these bags offer dependable performance in riverbank protection, coastal works, canal lining, embankments, and flood-management projects.
Available in customised GSM, sizes, and stitching configurations, our geo bags can be supplied to meet project-specific site and performance requirements.
Applications
Reliable. Durable. Engineered for Demanding Conditions.
Flood Control
Canal Lining


Coastal Protection




Embankment Stabilisation
Drainage and Filteration
Technical Specifications
Engineered for Measurable Performance
Our Non-Woven Geo Bags are manufactured using UV-stabilised needle-punched geotextile fabric. Product grades, bag dimensions, and performance properties can be supplied according to approved project specifications and test requirements.




Geo Bag Installation Process
Correct installation is essential for reliable performance. Follow the approved project drawings, site-specific method statement, and supervising engineer’s instructions when preparing the site, installing the filter layer, filling and placing the bags, protecting the toe, and completing final inspection.
This wording is clear for general website visitors while remaining technically responsible. The installation sequence should be treated as general guidance, because final placement, overlap, toe protection, and site preparation depend on the project design and conditions.


Frequently asked questions
Q1.How do non-woven geo bags control erosion?Depending on the design and project requirements, Geotubes may be used for:
When installed in an engineered arrangement, filled geo bags form a protective layer that helps resist soil loss from flowing water, waves, and surface runoff. The non-woven fabric supports filtration by allowing water to pass while helping retain fine soil particles, depending on the selected opening size and site conditions.
Q2. Do geo bags allow water to pass through?
Non-woven geotextiles are commonly used for filtration and drainage because their pore structure can allow water movement while retaining soil particles. The required apparent opening size and hydraulic performance must be selected for the actual soil and water conditions at the site.
Q3. How do I select the correct geo bag GSM?
Select GSM based on the project’s engineered design—not just bag weight. Key considerations include hydraulic load, site geometry, expected abrasion and puncture exposure, fill material, installation method, soil characteristics, UV exposure, and the required service life. IS 16653 recognises 300, 400, and 600 GSM grades for relevant coastal and waterways applications.
Q4. What is double-line chain stitching?
It is a seam construction using two parallel rows of chain stitching. For the Jaypee 300 GSM product, this is the documented seam type. Seam design and strength are important because bags must tolerate filling, placement, and service loads.
Q5. What GSM options are available?
Jaypee’s current documented product is a 300 GSM Non-Woven Polyester Geo Bag. A 300 GSM grade is also one of the three grades covered in IS 16653; 400 GSM and 600 GSM are recognised grades under that standard, but their exact Jaypee performance values should be provided only against their own test certificates.
Q6. Can you provide test certificates?
Yes. Jaypee can provide the available product test documentation on request. For the 300 GSM Non-Woven Polyester Geo Bag, the technical data sheet records the tested values listed above. For other GSM grades or project-specific requirements, request the corresponding certificate before finalising specifications




