BABA Compliant Dimpled Core Drainage Composite - Made in USA
FREE SHIPPING
The Mirafi G-series is a prefabricated drainage composite that relieves water pressure behind walls and structures.
It combines a high-flow drainage core with a bonded nonwoven geotextile, collecting water and carrying it away while filtering out soil. This reduces hydrostatic pressure against retaining walls, foundations, and below-grade surfaces.
The G-series replaces traditional aggregate drainage layers with a thin, easy-to-install sheet, saving space and labor while providing reliable long-term subsurface drainage.
Our BABA Compliant Dimpled Core Drainage Composite is a high compressive strength core with a nonwoven filter fabric that provides clog resistance and long term flow capacity. They are used to provide consistent drainage medium for cut off drains, retaining walls, and landfill closures.
This fabric is produced in the USA and meets BABA requirements.
Why Choose a BABA-Compliant Mirafi Fabric?
5 reasons to specify domestic BABA and Berry-compliant geotextile over offshore alternatives
Manufactured in the USA — BABA & Berry Compliant
Produced in Georgia, USA — qualifying for Build America / Buy America and Berry Amendment requirements on federal, state, and municipal infrastructure projects.
ASTM-Tested Properties for Engineering Submittals
Published ASTM grab tensile, AOS, permittivity, and UV resistance data for project submittals — an assurance offshore generic fabrics frequently cannot provide.
ISO-Certified Manufacturing for Consistent Quality
Every roll produced under ISO-certified quality control with documentation traceability — meeting the quality assurance requirements of federally funded projects.
Avoid Compliance Risk on Public Projects
Specifying a non-compliant offshore fabric on a BABA/Berry-required project can result in project delays, rejections, and costly material replacement. Domestic Mirafi eliminates that risk.
Available in Commercial Roll Sizes for Efficient Installation
Standard commercial roll widths and lengths reduce field splicing and material waste — improving installation efficiency on large public works projects.


