2012•2nd International Conference on the Developments in Renewable Energy Technology (ICDRET 2012)Requires access

Effects of turbine design parameters on sediment erosion of Francis runner

Biraj Singh Thapa, Kristine Gjosater, Mette Eltvik, Ole Gunnar Dahlhaug, Bhola Thapa

Open publisher page 13 citations

Abstract

Problems of sediment erosion in the hydropower industry across Asia and South America have become a major technical challenge. One of the emerging solutions to prevent the erosion of hydro turbines is to reduce the relative velocity inside the runner by improving hydraulic design. It is important to evaluate relation of the turbine design parameters on sediment erosion so as to identify those parameters that can be attuned to reduce the erosion. A new design program named as “Khoj” has been developed to facilitate this study. A method to include sediment erosion as a design parameter is devised. The traditional design of Francis runner has been made for a reference case. Each hydraulic design parameter is varied within a pre-defined range and changes in erosion relative to the reference design have been evaluated. It is found that the runner outlet diameter, peripheral velocity at inlet, and blade angle distribution have the highest effect on sediment erosion of Francis runner. Results of this study can be utilized to develop better Francis turbines to handle sediments.

About this research paper

What this paper is about

Problems of sediment erosion in the hydropower industry across Asia and South America have become a major technical challenge. One of the emerging solutions to prevent the erosion of hydro turbines is to reduce the relative velocity inside the runner by improving hydraulic design. It is important to evaluate relation of the turbine design parameters on sediment erosion so as to identify those parameters that can be attuned to reduce the erosion. A new design program named as “Khoj” has been developed to facilitate this study. A method to include sediment erosion as a design parameter is devised. The traditional design of Francis runner has been made for a reference case. Each hydraulic design parameter is varied within a pre-defined range and changes in erosion relative to the reference design have been evaluated. It is found that the runner outlet diameter, peripheral velocity at inlet, and blade angle distribution have the highest effect on sediment erosion of Francis runner. Results of this study can be utilized to develop better Francis turbines to handle sediments.

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Problems of sediment erosion in the hydropower industry across Asia and South America have become a major technical challenge. One of the emerging solutions to prevent the erosion of hydro turbines is to reduce the relative velocity inside the runner by improving hydraulic design. It is important to evaluate relation of the turbine design parameters on sediment erosion so as to identify those parameters that can be attuned to reduce the erosion. A new design program named as “Khoj” has been developed to facilitate this study. A method to include sediment erosion as a design parameter is devised. The traditional design of Francis runner has been made for a reference case. Each hydraulic design parameter is varied within a pre-defined range and changes in erosion relative to the reference design have been evaluated. It is found that the runner outlet diameter, peripheral velocity at inlet, and blade angle distribution have the highest effect on sediment erosion of Francis runner. Results of this study can be utilized to develop better Francis turbines to handle sediments.

Key concepts: Erosion, Hydropower, Inlet, Sediment, Turbine, Francis turbine, Marine engineering, Range (aeronautics)

Related papers

Back to paper searchBrowse research topicsOriginal source
Effects of turbine design parameters on sediment erosion of Francis runner — Research Paper | ScholarLens