Please use this identifier to cite or link to this item: https://elibrary.tucl.edu.np/handle/123456789/18395
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dc.contributor.authorPandey, Rupa-
dc.date.accessioned2023-07-04T05:52:24Z-
dc.date.available2023-07-04T05:52:24Z-
dc.date.issued2022-09-
dc.identifier.urihttps://elibrary.tucl.edu.np/handle/123456789/18395-
dc.descriptionIn Nepal, there are about 6,000 rivers and rivulets. Due to its unique geography and abundant water supply, Nepal has a wealth of hydropower potential. There is an overall economically viable production capacity of 83,000 megawatts (MW) and a production capacity of roughly 43,000 MW. Compared to the similar amount of 6,529 GWh in FY 2019/20, the total energy usage in FY 2020/21 was 7,319 GWh, a small rise.en_US
dc.description.abstractOne of the primary operating issues for the hydropower sector is the severe degradation of the hydro-mechanical components of hydropower projects (apart from storage-type plants). The eroded pieces are regularly replaced with fresh ones (or repaired ones) and are fixed by welding. The templates created from sheets and utilized for bucket profile control during repair and maintenance have the drawback of not being able to record the angular deviation of the bucket profile. Additionally, secondary flows and bucket warping may be brought on by unequal loading, an eccentric jet, and changes in mechanical qualities. A relative angular eccentricity between the jet and bucket results from both of the aforementioned cases. This study aims to investigate how the angular eccentricity between the jet and bucket affects the flow behavior. Numerical flow analysis is done in this work to examine the impact of eccentricity on the Pelton turbine's bucket using the commercial Computational Fluid Dynamics (CFD) Fluent code ANSYS. To mesh, ANSYS ICEM was utilized, and the Volume of Fluid (VOF) method's implicit scheme formulation was employed to represent the transient state of the jet until a steady state was reached. For focal situations of jet-bucket interaction, the results of theoretical calculations, experimental observations, and numerical modeling were compared.en_US
dc.language.isoenen_US
dc.publisherI.O.E. Pulchowk Campusen_US
dc.subjectDeviationen_US
dc.subjectTurbineen_US
dc.subjectPeltonen_US
dc.titleDeviation of Flow Pattern in Pelton Turbine Bucket Due to Angular Eccentricity of the Jeten_US
dc.typeThesisen_US
local.institute.titleInstitute of Engineeringen_US
local.academic.levelMastersen_US
local.affiliatedinstitute.titlePulchowk Campusen_US
Appears in Collections:Mechanical and Aerospace Engineering

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