vertical cylinders
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2021 ◽  
Vol 158 (A3) ◽  
Author(s):  
A Lavrov ◽  
C Guedes Soares

The laminar flow around heaving axisymmetric and three-dimensional cylinders with damping plates is numerically studied for various Keulegan-Carpenter numbers. The Navier-Stokes equations are solved using OpenFOAM, which is applied to the flow on a moving mesh. For processing of results the semi-empirical Morison equation is used. Calculations are conducted for one cylinder, one cylinder with one disk, one cylinder with two disks, and one cylinder with one pentagonal plate. The calculated values are compared against experimental data.


2021 ◽  
Vol 33 (10) ◽  
pp. 102106
Author(s):  
Nikolay G. Kuznetsov ◽  
Oleg V. Motygin
Keyword(s):  

2021 ◽  
Vol 232 ◽  
pp. 111499
Author(s):  
Silken Jones ◽  
Joseph Shepherd

2020 ◽  
Vol 8 (12) ◽  
pp. 960
Author(s):  
Joffrey Jamain ◽  
Julien Touboul ◽  
Vincent Rey ◽  
Kostas Belibassakis

There is growing interest for water-wave flows through arrangements of cylinders with application to the performance of porous marine structures and environmental flows in coastal vegetation. For specific few cases experimental data are available in the literature concerning the modification of the dispersion equation for waves through a dense array of vertical cylinders. This paper presents a numerical study of the porosity effects on the dispersion relation of water waves through such configurations. To this aim, the sloshing problem in a tank full of vertical cylinders intersecting the free surface is studied using the finite element method, and the influence of the porosity on the wave number is quantified. On the basis of numerical results, a new modification of a dispersion relation for porous medium is suggested based on a wide range of collected data. Moreover, the domain of validity of this new dispersion relation is examined considering the number of cylinders and the extrapolation to the infinite medium.


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