Title of article :
Fluid-dynamic Simulations for Assessment of Dimensioning ‎Methodologies of Pelton Turbine Buckets Considering the Initial ‎Torque Overcoming
Author/Authors :
Zuluaga ، Jorge Mario Ceballos Grupo de Investigación e Innovación en Energía - Facultad de Ingeniería - Institución Universitaria Pascual Bravo , Merino ، Cesar Augusto Isaza Grupo de Investigación e Innovación en Energía - Facultad de Ingeniería - Institución Universitaria Pascual Bravo , Arcila ، Iván David Patiño Grupo de Investigación e Innovación Ambiental - Facultad de Ingeniería - Institución Universitaria Pascual Bravo , Rojas ، Andrés David Morales Grupo de Investigación e Innovación en Energía - Facultad de Ingeniería - Institución Universitaria Pascual Bravo
From page :
1036
To page :
1048
Abstract :
The growing demand for energy resources highlights the need to optimize traditional energy transformation systems. Pelton-type turbines, which are extensively used in micro-generation systems, can be designed using different methodologies, however, no consensus has been reached on which methodology guarantees greater efficiency. This work aims to compare the fluid-dynamic behavior at the first-time instants of Pelton turbines for micro-generation dimensioned by three different methodologies, namely, OLADE, Nechleba, and Thake, evaluating their capacity to overcome the initial torque. The results show that OLADE methodology leads to the best fluid-dynamic performance, whereas Nechleba fails to overcome the prescribed torque. In the Thake methodology, the impact of water on the back face of buckets and the formation of reverse pressure gradients can counter the turbine rotation.
Keywords :
Computational Fluid Dynamics , Dynamic mesh model , Multiphase flow , Pelton Turbines , Buckets dimensioning methodologies , Initial torque
Journal title :
Journal of Applied and Computational Mechanics
Journal title :
Journal of Applied and Computational Mechanics
Record number :
2744220
Link To Document :
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