Reservoir beds and slopes
Geomembranes can be installed across reservoir beds and side slopes to form a continuous barrier where water loss through the ground needs to be reduced.
Geosynthetics are used in reservoirs, canals, ponds and hydraulic structures to reduce seepage, protect liner systems, filter soil and provide drainage around water-retaining structures.
Typical applications include reservoir lining, irrigation canals, water storage ponds, channels, concrete structures and other seepage-control works.

Hydraulic projects combine barrier, protection, filtration and drainage materials according to the structure, ground conditions and required level of seepage control.
Geomembranes can be installed across reservoir beds and side slopes to form a continuous barrier where water loss through the ground needs to be reduced.
Geomembranes and protective geotextiles can line irrigation and water-conveyance canals where seepage through permeable soil is a concern.
Geomembranes can line ponds and basins used for irrigation water, process water, stormwater or other controlled storage.
Geotextiles can be placed beneath or above geomembranes to reduce puncture risk from prepared soil, aggregate or other adjacent materials.
Geotextiles and drainage materials can be used where water needs to pass through or away from soil while limiting the migration of fine particles.
HDPE anchor plates provide weldable connection points where HDPE liners meet concrete walls, channels, pits or other structural elements.
Most hydraulic lining systems require more than one function, particularly where the barrier layer meets soil, drainage zones or concrete structures.
Geomembranes provide low-permeability barrier layers that reduce water migration through soil and other permeable surfaces.
Geotextiles provide cushioning around geomembranes where adjacent soil, aggregate or construction activity could damage the liner.
Geotextiles allow water to pass while retaining soil particles at drainage and soil interfaces.
Drainage materials provide defined pathways for collected water behind or beneath selected structures and lining systems.
Geotextiles help keep soil, aggregate and drainage layers separated during installation and service.
HDPE anchor plates provide a weldable interface between HDPE lining systems and cast-in-place concrete structures.
The liner configuration varies according to the structure, hydraulic conditions, ground permeability and the role of the barrier or drainage layer.

Geomembranes and protective geotextiles can be used on reservoir beds and slopes where the design requires a geosynthetic seepage-control layer.
Geomembrane lining can reduce seepage losses along irrigation and water-conveyance canals built through permeable ground.
Geomembranes can line irrigation ponds, process-water ponds and other basins where retained water needs to be separated from the underlying soil.
Geosynthetics can be incorporated into selected channel lining, filtration and drainage details where flowing water interfaces with soil or lined surfaces.
Geomembranes, geotextiles and drainage materials can be incorporated into selected embankment or hydraulic seepage-control details where specified by the project design.
HDPE liners and anchor plates can be used where a polyethylene lining system needs a welded connection to concrete.
Hydraulic projects may combine several geosynthetic materials. The products below cover the main barrier, protection, filtration, drainage and liner-connection functions.

Used as barrier layers in reservoirs, canals, ponds and other water-retaining or seepage-control applications.

Used for liner protection, filtration and separation between soil, aggregate, drainage zones and geomembranes.

Used to form weldable connection points between HDPE lining systems and concrete structures.

Used only in selected structural and below-grade drainage details where a formed drainage path is required.
Hydraulic lining systems often rely on several materials working together, with each layer performing a separate barrier, protection, filtration or drainage function.
The final material arrangement should follow the hydraulic design, water conditions, substrate, structural details and applicable project specification.
These details help us review the hydraulic application, required materials, product specifications and order scope.
Hydraulic projects may require large liner areas and several roll products delivered to the same site. Roll configuration, packing and shipment planning should be confirmed after the product specifications and quantities are established.
Roll width, roll length and unit weight depend on the selected product and specification.
Packing is confirmed according to the product type, transport method and agreed buyer requirements.
Roll labels and order identification can be prepared according to the confirmed order requirements.
Container loading should account for roll dimensions, unit weight and the combination of products supplied for the project.
Commercial and shipment documents are prepared according to the confirmed order and agreed export requirements.
Destination port, required delivery period and shipment requirements should be provided during quotation so the order can be planned accordingly.
Send us your product specifications, quantities or project requirements, and our team will prepare a suitable material recommendation and quotation.
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