[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Rajabi et al., 2021 - Google Patents

Hydrodynamic performance improvement of double‐row floating breakwaters by changing the cross‐sectional geometry

Rajabi et al., 2021

View PDF @Full View
Document ID
3535496525662998927
Author
Rajabi M
Ghassemi H
Publication year
Publication venue
Mathematical Problems in Engineering

External Links

Snippet

This paper is presented to develop the hydrodynamic performance of double‐row floating breakwater (FBW) by changing cross‐sectional geometry in the high wave periods. The ANSYS‐AQWA software is employed for the present calculations, which is a potential‐based …
Continue reading at onlinelibrary.wiley.com (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Rajabi et al. Hydrodynamic performance improvement of double‐row floating breakwaters by changing the cross‐sectional geometry
Li et al. Numerical analysis of a vessel-shaped offshore fish farm
McCormick Ocean engineering mechanics: with applications
Gao et al. Reducing hydroelastic response of pontoon-type very large floating structures using flexible connector and gill cells
Wei et al. A time-domain method for hydroelasticity of a curved floating bridge in inhomogeneous waves
Elchahal et al. The effects of reflection coefficient of the harbour sidewall on the performance of floating breakwaters
Yu et al. Preliminary results of a RANS simulation for a floating point absorber wave energy system under extreme wave conditions
Sun et al. Linear diffraction analysis for optimisation of the three-float multi-mode wave energy converter M4 in regular waves including small arrays
Qiao et al. Analytical model of wave loads and motion responses for a floating breakwater system with attached dual porous side walls
Liu et al. Investigation of linear wave action around a truncated cylinder with non-circular cross section
Neelamani et al. Experimental study on the hydrodynamic performance of floating pontoon type breakwater with skirt walls
Rezanejad et al. Hydrodynamic investigation of a novel concept of oscillating water column type wave energy converter device
Karmakar et al. Propagation of gravity waves past multiple bottom-standing barriers
Xu et al. Analysis of the hydroelastic performance of very large floating structures based on multimodules beam theory
Jiang et al. Analysis of a moored and articulated multibody offshore system in steep waves
Panduranga et al. Water waves scattering by cylindrical dual porous floating breakwaters connected with a rectangular porous box and floating over an undulated seabed
Wang et al. Floating forest: a novel concept of floating breakwater-windbreak structure
Wang et al. Floating breakwaters: sustainable solution for creating sheltered sea space
Wang et al. Hydroelastic analysis and response of pontoon-type very large floating structures
Ren et al. Hydrodynamic analysis of a novel modular floating structure system with central tension-leg platforms
Cheng et al. Hydrodynamics of a dual-module pontoon-net floating breakwater system: Numerical simulations and prototype tests
Vijay et al. Hydrodynamic coefficients of a floater near a partially reflecting seawall in the presence of an array of caisson blocks
Jiang et al. Numerical investigation of hydroelastic effects on floating structures
Rajabi et al. Research Article Hydrodynamic Performance Improvement of Double-Row Floating Breakwaters by Changing the Cross-Sectional Geometry
Park et al. Numerical analysis for motion response of modular floating island in waves