Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/11894
Title: Numerical modeling of turbulent flow around a SAVONIUS wind turbine
Authors: Mihoub, Ahmed
Bendjerrat, Nabil; Bekhti, A.(promoteur); Laazab, Sebaa (promoteur)
Keywords: CFD; Vertical axis wind turbine; Turbulence; Power
Issue Date: 2021
Publisher: Université Blida 01
Abstract: This thesis presents a numerical modeling of the incompressible and turbulent airflow around a two-bladed Savonius vertical axis wind turbine. The interest of this study is the characterization of the flow downstream of the rotating wind turbine by numerically modeling the generated wake and the power coefficient. The simulation is based on the resolution of Navier Stokes equations in unsteady regime (RANS method) of a flow around a Savonius wind turbine in 2D using the turbulence model komega -SST. The calculations are performed using a computational fluid dynamics (CFD) code (openFoam) based on the finite volume method , the results are presented by the variation of the coefficients of the aerodynamic forces as a function of time. In the second part the simulation is performed for a flow around a two-bladed savonius wind turbine in rotation, the wake is presented by the distribution of speed and vorticity for different angles with respect to several specific velocities.
Description: Mémoire de Master option Propulsion .-Numéro de Thèse 003/2021
URI: http://di.univ-blida.dz:8080/jspui/handle/123456789/11894
Appears in Collections:Mémoires de Master

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