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Abstract (410 Views) | چکیده  |   Full-Text (PDF) (92 Downloads)   |   Highlights
Highlights
  • CCHE2D successfully simulated hydrodynamic and sediment transport processes downstream of the Aras Dam.
  • High flow velocity and bed shear stress were associated with erosion, while low-velocity recirculation zones promoted sediment deposition.
  • Sediment transport was highly sensitive to Manning’s roughness, downstream boundary conditions, and sediment transport formulations.
  • Increasing flow discharge increased sediment transport and altered the spatial distribution of bed shear stress.
  • Groynes reduced sediment transport by up to approximately 34%, demonstrating their effectiveness for sediment management.

| فایل صوتی چکیده مقاله [MP3]  (20 Download)

Abstract (323 Views) | چکیده  |   Full-Text (PDF) (74 Downloads)   |   Highlights
Highlights
  • CCHE2D successfully simulated hydrodynamic and sediment transport processes downstream of the Aras Dam.
  • High flow velocity and bed shear stress were associated with erosion, while low-velocity recirculation zones promoted sediment deposition.
  • Sediment transport was highly sensitive to Manning’s roughness, downstream boundary conditions, and sediment transport formulations.
  • Increasing flow discharge increased sediment transport and altered the spatial distribution of bed shear stress.
  • Groynes reduced sediment transport by up to approximately 34%, demonstrating their effectiveness for sediment management.
 
| فایل صوتی چکیده مقاله [MP3]  (23 Download)


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