2015
Khelifi C, Ouali M, FERROUDJI F, Adjlout L.
Modal analysis of a small Savonius aerogenerator by using SolidWorks Simulation. Applied Mechanics and MaterialsApplied Mechanics and Materials. 2015;806 :214-221.
Khelifi C, Ouali M, FERROUDJI F, Adjlout L.
Modal analysis of a small Savonius aerogenerator by using SolidWorks Simulation. Applied Mechanics and MaterialsApplied Mechanics and Materials. 2015;806 :214-221.
Khelifi C, Ouali M, FERROUDJI F, Adjlout L.
Modal analysis of a small Savonius aerogenerator by using SolidWorks Simulation. Applied Mechanics and MaterialsApplied Mechanics and Materials. 2015;806 :214-221.
Khelifi C, Ouali M, FERROUDJI F, Adjlout L.
Modal analysis of a small Savonius aerogenerator by using SolidWorks Simulation. Applied Mechanics and MaterialsApplied Mechanics and Materials. 2015;806 :214-221.
HADDAD D, Oulmi K, Moussa HB, Aouachria Z, Youcef S.
Modeling of Heat Transfer in the PEMFC: Velocity Inlet and Current Density Effect. In: Progress in Clean Energy, Volume 1. Springer ; 2015. pp. 463-473.
HADDAD D, Oulmi K, Moussa HB, Aouachria Z, Youcef S.
Modeling of Heat Transfer in the PEMFC: Velocity Inlet and Current Density Effect. In: Progress in Clean Energy, Volume 1. Springer ; 2015. pp. 463-473.
HADDAD D, Oulmi K, Moussa HB, Aouachria Z, Youcef S.
Modeling of Heat Transfer in the PEMFC: Velocity Inlet and Current Density Effect. In: Progress in Clean Energy, Volume 1. Springer ; 2015. pp. 463-473.
HADDAD D, Oulmi K, Moussa HB, Aouachria Z, Youcef S.
Modeling of Heat Transfer in the PEMFC: Velocity Inlet and Current Density Effect. In: Progress in Clean Energy, Volume 1. Springer ; 2015. pp. 463-473.
HADDAD D, Oulmi K, Moussa HB, Aouachria Z, Youcef S.
Modeling of Heat Transfer in the PEMFC: Velocity Inlet and Current Density Effect. In: Progress in Clean Energy, Volume 1. Springer ; 2015. pp. 463-473.
DJEBARA Y, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
Modeling of the effect of particles size, particles distribution and particles number on mechanical properties of polymer-clay nano-composites: numerical homogenization versus experimental results. Composites Part B: Engineering, In Press, Accepted Manuscript,Composites Part B: Engineering, In Press, Accepted Manuscript,. 2015.
DJEBARA Y, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
Modeling of the effect of particles size, particles distribution and particles number on mechanical properties of polymer-clay nano-composites: numerical homogenization versus experimental results. Composites Part B: Engineering, In Press, Accepted Manuscript,Composites Part B: Engineering, In Press, Accepted Manuscript,. 2015.
DJEBARA Y, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
Modeling of the effect of particles size, particles distribution and particles number on mechanical properties of polymer-clay nano-composites: numerical homogenization versus experimental results. Composites Part B: Engineering, In Press, Accepted Manuscript,Composites Part B: Engineering, In Press, Accepted Manuscript,. 2015.
DJEBARA Y, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
Modeling of the effect of particles size, particles distribution and particles number on mechanical properties of polymer-clay nano-composites: numerical homogenization versus experimental results. Composites Part B: Engineering, In Press, Accepted Manuscript,Composites Part B: Engineering, In Press, Accepted Manuscript,. 2015.
DJEBARA Y, ELMOUMEN A, KANIT T, MADANI S, IMAD A.
Modeling of the effect of particles size, particles distribution and particles number on mechanical properties of polymer-clay nano-composites: numerical homogenization versus experimental results. Composites Part B: Engineering, In Press, Accepted Manuscript,Composites Part B: Engineering, In Press, Accepted Manuscript,. 2015.