2016
DOI: 10.3390/en9100852
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Numerical Simulations of the Effects of a Tidal Turbine Array on Near-Bed Velocity and Local Bed Shear Stress

Abstract: Abstract:We apply a three-dimensional hydrodynamic model to consider the potential effects of energy extraction by an array of tidal turbines on the ambient near-bed velocity field and local bed shear stress in a coastal channel with strong tidal currents. Local bed shear stress plays a key role in local sediment dynamics. The model solves the Reynold-averaged Navier-Stokes (RANS) equations on an unstructured mesh using mixed finite element and finite volume techniques. Tidal turbines are represented through a… Show more

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Cited by 27 publications
(19 citation statements)
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“…On the contrary, when high tide current (Figure 4), current enters from section D go to section A and a small part flow to section B which previous happened eddy at center east area near Bangka Island whereas current from section Tables 2 and 3), we can see that the values of velocity can be used to design profile of the marine current turbine. The results if we compare the results of marine currents numerical simulation in the Bunaken Starit that presented by [6] which at flow rate of 1 Sv, the average velocities at enter of Bunaken Strait is 1.46 m/s when low tide currents and 0.85 m/s when high tide currents. It shows difference in the boundary conditions.…”
Section: Results and Analysismentioning
confidence: 93%
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“…On the contrary, when high tide current (Figure 4), current enters from section D go to section A and a small part flow to section B which previous happened eddy at center east area near Bangka Island whereas current from section Tables 2 and 3), we can see that the values of velocity can be used to design profile of the marine current turbine. The results if we compare the results of marine currents numerical simulation in the Bunaken Starit that presented by [6] which at flow rate of 1 Sv, the average velocities at enter of Bunaken Strait is 1.46 m/s when low tide currents and 0.85 m/s when high tide currents. It shows difference in the boundary conditions.…”
Section: Results and Analysismentioning
confidence: 93%
“…Gillibrand et al [6] have proposed numerical simulations which used the 3D shallow water equations derived from the RANS equations by using the hydrostatic assumption. Rodriguez-Cuevas, et al, [7] have been conducted a number of numerical experiments through test various turbulence models for shallow fluxes with recirculation of wakes produced by an island with a slight slope in their numerical simulations.…”
Section: Introductionmentioning
confidence: 99%
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“…The hydrodynamics of shallow water regions, estuaries, straits and bays is affected by uncertainties in both bottom friction and bathymetric data [57][58][59][60][61]. Bathymetric data has been known as an important input to shallow water hydrodynamic modelling [62,63], while the influence of the drag coefficient value on tides in coastal regions has been reported by other studies [64,65].…”
Section: Sensitivity Analysismentioning
confidence: 99%
“…Jeyar et al investigated the hydrodynamic impacts of whole lagoon due to tidal waves using a 2-D, depth-averaged hydrodynamic model based on the shallow water equations. Gillibrand et al [11] adopted a three-dimensional (3-D) hydrodynamic model to consider the potential effects of energy extraction by an array of tidal turbines on ambient near-bed velocity field and local bed shear stress. Yamamoto et al [12] exploited ANSYS to select the best shape of oscillator, in order to efficiently harness the tidal flow energy in a cost-efficient manner.…”
Section: Introductionmentioning
confidence: 99%