The Kaligandaki-A Hydropower Station features major hydraulic structures that endure continuous abrasion from high-velocity water and sediment-rich flows. These conditions gradually erode concrete surfaces, reducing efficiency and threatening long-term stability. To restore durability and strengthen operational resilience, high-performance epoxy mortar lining work is carried out across critical zones.
The treatment includes preparing the affected surfaces, applying specialized wear-resistant epoxy mortar, and ensuring a smooth, uniform finish that boosts structural toughness under demanding hydraulic loads.
The Kaligandaki-A Hydropower Station features major hydraulic structures that endure continuous abrasion from high-velocity water and sediment-rich flows. These conditions gradually erode concrete surfaces, reducing efficiency and threatening long-term stability. To restore durability and strengthen operational resilience, high-performance epoxy mortar lining work is carried out across critical zones.
The treatment includes preparing the affected surfaces, applying specialized wear-resistant epoxy mortar, and ensuring a smooth, uniform finish that boosts structural toughness under demanding hydraulic loads.
Client
Kaligandaki-A Hydropower Station
Location
Syangja, Nepal
Project status
Completed
Scope of Work
Surface Preparation:
Thorough cleaning, chipping, and profiling of weakened concrete surfaces to ensure strong bonding with the epoxy system.
Epoxy Mortar Application:
Laying of high-strength, abrasion-resistant epoxy mortar designed to withstand heavy sediment impact and high-velocity water flow.
Surface Protection & Finishing:
Uniform trowel finish to create a dense, smooth layer that reduces turbulence and improves long-term wear resistance.
Structural Performance Enhancement:
Strengthening of exposed spillway and hydraulic surfaces to improve durability during peak operational conditions.
Project Highlights
Applied specialized epoxy mortar engineered for high-abrasion hydraulic zones.
Restored durability of critical surfaces exposed to high-velocity flow and sediment impact.
Strengthened long-term structural performance to support stable hydropower operations.
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