The following are the R&D areas for focus:
- New superior erosion resistant materials for hydro turbine blades and runner.
- Application of GIS/GPS in River Flow Discharge Measurement, flood forecasting.
- Analysis and Monitoring of Cavitation phenomenon.
- Integrated operation of Cascade Hydro Power projects.
- Rock Stabilization Techniques for large size caverns.
- Tunneling in Soft Rocks/Fragile Himalayan Geology.
- Measures to tackle Bad Geology during Excavation of Tunnels and Construction of Dam Foundation and Cut off Wall.
- Problems due to Silting in Hydro plants-R&D for Turbine components etc.
- Studies on benefits of Pump Storage Plant (PSP) in Indian context, particularly keeping in view the large capacity addition through variable renewable power generation.
- Analysis measures to increase service life for Silt Flushing Gates, Numerical Flow Simulation, Performance Optimization of Hydro Plant components and for Improving Desilting Chamber Efficiency using Computational Fluid Dynamics (CFD).
- Technology for Spilt Runners / Site Fabrication of Runners.
- Development of Facilities for Large Size/Weight Casting and Forging.
- Development of Shaft Seal for Silty Water.
- Generator Modernization to Increase Efficiency.
- Site assembly and acceptance testing of 400 kV Generator-Transformer (GT).
- Monitoring System for On-line Measurement of Turbine Efficiency
- Simulation and development of Test Facility to Study the performance of Coating Material Characteristics.
- Development of PTFE (Polytetrafluoroethylene) Material.
- Measures to tackle Corrosion/Erosion Problems in Acidic Water.
- Construction Methodology for Arch Dams.
- Excavation of Large Size Cavern with Stabilization Technology.
- Measures to tackle bad geology in Dam Foundation and Cutoff Wall.
- The causes of pressure recovery loss near the best efficiency point in draft tube.
- Dynamic pressure distribution and comparison between conventional and splitter blade runner.
- Fluid-structure interaction of guide vanes, vibration, and magnitude of forces on guide vane spindle of Francis turbine.
- Fluctuations in vane less space during turbine runner acceleration or deceleration and optimization of movement of guide vanes during turbine start-up after emergency shutdown of the Francis turbine.
- Transient dynamic behavior and runner blade loading during no-load run/ runway, load rejection, and start-up as well as shutdown of the Francis turbine. A strategic start-up and shutdown technique of the Francis turbine may be developed.
- Numerical Flow Simulation using Computational Fluid Dynamics (CFD) tools for Hydro Turbine Optimization and Enhanced Efficiency
- Finding non-intrusive methods of assessing the sub-surface geology