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Wave Control by an Array of N Bottom-Mounted Porous Cylinders  

조일형 (제주대학교 해양산업공학부)
Publication Information
Journal of Korean Society of Coastal and Ocean Engineers / v.15, no.4, 2003 , pp. 232-241 More about this Journal
Abstract
The interaction of incident monochromiatic waves with N bottom-mounted porous circular cylinders is investigated in the frame of three-dimensional linear potential theory. The fluid domain is divided into N+l regions i.e. a single exterior region and N interior regions, and the diffraction potential in each fluid region is expressed by an eigenfunction expansion method (Williams and Li,2000). The analytic results show that the porous structure reduces both the wave forces and the run-up wave around the cylinder. To verify the developed model, the systematic model test with a line array of porous cylinders is conducted at the wave tank (30m$\times$7m$\times$1.5m). The analytic results are in good agreement with the experimental results within measured frequency range. It is concluded that the breakwater constructed with an array of porous circular cylinders shows the performance of an effective wave barrier together with the seawater-exchange effect and is considered to have vast potentials for the use of seawater-exchanging breakwater in the future.
Keywords
porous circular cylinder; seawater-exchanging breakwater; eigenfunction expansion method; wave run-up;
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Times Cited By KSCI : 1  (Citation Analysis)
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