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Vortex Optimization of a Low-Head Gravity Hydroelectric Power Plant
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Vortex Optimization of a Low-Head Gravity Hydroelectric Power Plant
Journal
Smart Innovation, Systems and Technologies
Date Issued
2022
Author(s)
Ayala-Chauvin, Manuel Ignacio
Centro de Investigación de Ciencias Humanas y de la Educación
Rojas-Asuero H.
Riba-Sanmartí G.
Ramón-Campoverde J.
Type
Conference Paper
DOI
10.1007/978-981-16-6269-0_23
URL
https://cris.indoamerica.edu.ec/handle/123456789/8651
Abstract
Gravitational Water Vortex Power Plant (GWVPP) is a Small-Scale Hydropower System which converts energy in a moving fluid to rotational energy. The main advantage of this technology is the low head hydraulic requirements. The aim of this work is to optimize the hydraulic geometry of the vortex, to achieve this, two prototypes (A and B) were designed and built to validate the proposed design process. The prototype A has a flat-bottom chamber and prototype B has a conical chamber outlet; both induce spiraling fluid streamlines. Prototypes were studied numerically and experimentally. The numerical study was developed in ANSYS CFX R19.0 software and the experimental phase was carried out in the fluid’s laboratory of the Technical University of Loja in Ecuador. The results show that the conical chamber improves strong free-surface vortex formation and increases water velocity in the center of the vortex flow. Finally, the proposed design method was validated and allows to reproduce the hydraulic structures of the gravity water vortex power plant. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.
Subjects
Heaviside equation; S...
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6
Acquisition Date
Nov 20, 2024
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