Repository logo
  • English
  • Deutsch
  • Español
  • Français
  • Log In
    New user? Click here to register.Have you forgotten your password?

  • English
  • Deutsch
  • Español
  • Français
  • Log In
    New user? Click here to register.Have you forgotten your password?
Repository logo
  • Communities & Collections
  • Research Outputs
  • Fundings & Projects
  • Researchers
  • Statistics
  1. Home
  2. Current Research Information System UV
  3. Publicaciones
  4. Evaluación De Caudal De Sobrepaso En Una Defensa Costera Mediante Un Modelo Basado En Las Ecuaciones De Navier-Stokes Promediadas Por Reynolds En El Volumen (Varans)
 
  • Details
Options

Evaluación De Caudal De Sobrepaso En Una Defensa Costera Mediante Un Modelo Basado En Las Ecuaciones De Navier-Stokes Promediadas Por Reynolds En El Volumen (Varans)

Date Issued
2023-06-19
Author(s)
Winckler, Patricio  
Facultad de Ingeniería  
Rodrigo Campos-Caba
DOI
10.21703/0718-281320233301
Abstract
The calibration of the IH2VOF numerical model and a sensitivity analysis of wave overtopping in a coastal defense are presented in this study. Physical model tests are replicated at a reduced scale of 1:50 in the main breakwater of the port of Pòvoa de Varzim, Portugal (Neves et al., 2008). The parameters used in the calibration correspond to porosity, linear and non-linear friction coefficients characterizing a porous media, which in our model represent the defense’s armor and filter. For irregular waves and first-order generation in the numerical wavemaker (i.e., considering only waves as a boundary condition), overtopping is practically insensitive to the range of values used for the friction parameters, due to the relatively small volume of coastal defense. Porosity, in contrast, plays a significant role in the computation of overtopping. Once these parameters have been calibrated, the tests are repeated using a second-order generation, which incorporates both waves and the infragravity waves accompanying the former. Results show that the first-order generation overestimates the overtopping, especially in more intense wave conditions. For the second-order generation, results correspond fairly well with those reported by Neves et al. (2008). Finally, we recommend the use of second-order generation both in the numerical and physical modelling of wave overtopping on coastal defenses to avoid unnecessarily conservative designs.
Subjects

Construction And Buil...

Engineering

OCDE Subjects

Engineering And Techn...

Quartile (Date Issued)
SQ
License
acceso abierto

  • Cookie settings
  • Privacy policy
  • End User Agreement
  • Send Feedback

Hosting & Support by

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science