Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5017388 | Journal of Fluids and Structures | 2017 | 21 Pages |
Abstract
In this contribution, modal characteristics of a 7-rod bundle will be predicted by linear theory as well as by coupled CFD-CSM (Computational Fluid Dynamics - Computational Structure Mechanics) calculations. In the first part, fluid forces which lead to coupling of motion are computed with classical potential flow theory and URANS (Unsteady Reynolds-Averaged Navier-Stokes). Those forces are divided in a contribution in phase with the acceleration and a contribution in phase with the velocity of a cylinder. In the second part, modal characteristics of a 7 cylinder bundle are computed with coupled CFD-CSM simulations. The initial perturbations, which are required for the time-domain simulations come from a simplified structural model, with potential flow coupling between cylinders. The results are compared to linear theory. In the final part, approximations are proposed to predict upper and lower bounds of eigenfrequencies and damping, using calculations with only one cylinder.
Related Topics
Physical Sciences and Engineering
Engineering
Mechanical Engineering
Authors
Jeroen De Ridder, Joris Degroote, Katrien Van Tichelen, Jan Vierendeels,