High-Strength Epoxy Mortar Lining – Middle Marsyangdi Hydropower Station (70MW)
High-Strength Epoxy Mortar Lining – Middle Marsyangdi Hydropower Station (70MW)
The Middle Marsyangdi Hydropower Station requires durable surface protection to withstand high-velocity water flow and continuous sediment abrasion. To enhance the longevity of critical hydraulic structures, a high-strength, wear-resistant epoxy mortar system is applied across exposed concrete surfaces.
The work focuses on restoring eroded areas, improving abrasion resistance, and forming a durable protective layer capable of enduring harsh hydraulic forces.
Client
Middle Marsyangdi Hydropower Station
Location
Lamjung, Nepal
Project status
Completed
Middle Marsyangdi Hydropower Station
High-Strength Epoxy Mortar Lining – Middle Marsyangdi Hydropower Station (70MW)
The Middle Marsyangdi Hydropower Station requires durable surface protection to withstand high-velocity water flow and continuous sediment abrasion. To enhance the longevity of critical hydraulic structures, a high-strength, wear-resistant epoxy mortar system is applied across exposed concrete surfaces.
The work focuses on restoring eroded areas, improving abrasion resistance, and forming a durable protective layer capable of enduring harsh hydraulic forces.
Client
Middle Marsyangdi Hydropower Station
Location
Lamjung, Nepal
Project status
Completed
Scope of Work
Surface Preparation:
Mechanical cleaning, profiling, and removal of deteriorated concrete to ensure strong adhesion of the epoxy mortar system.
Epoxy Mortar Application:
Placement of high-strength, abrasion-resistant epoxy mortar designed to perform under continuous sediment-laden flow.
Protective Layer Formation:
Uniform coating applied to shield concrete surfaces from erosion, impact, and high-velocity discharge.
Structural Surface Restoration:
Strengthening weak or worn zones to recover structural integrity and extend service life.
Project Highlights
Delivered a protective epoxy mortar system engineered for abrasive hydraulic environments.
Improved long-term durability through high-strength, wear-resistant material application.
Enhanced structural resilience to support reliable hydropower station operation.
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