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Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies
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G. Coskun Et Al. , "Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies," Journal of Applied Fluid Mechanics , vol.18, no.8, pp.1-18, 2025

Coskun, G. Et Al. 2025. Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies. Journal of Applied Fluid Mechanics , vol.18, no.8 , 1-18.

Coskun, G., Delil, Y., & DEMİR, Ü., (2025). Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies. Journal of Applied Fluid Mechanics , vol.18, no.8, 1-18.

Coskun, G., Y. Delil, And ÜSAME DEMİR. "Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies," Journal of Applied Fluid Mechanics , vol.18, no.8, 1-18, 2025

Coskun, G. Et Al. "Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies." Journal of Applied Fluid Mechanics , vol.18, no.8, pp.1-18, 2025

Coskun, G. Delil, Y. And DEMİR, Ü. (2025) . "Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies." Journal of Applied Fluid Mechanics , vol.18, no.8, pp.1-18.

@article{article, author={G. Coskun Et Al. }, title={Experimental and Computational Fluid Dynamics Simulation Study on the Performance of a Two-Stroke Aviation Engine: A Comparative Analysis of Turbulence Models and Mesh Strategies}, journal={Journal of Applied Fluid Mechanics}, year=2025, pages={1-18} }