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Journal Article

Validation of Tidal Stream Turbine Wake Predictions and Analysis of Wake Recovery Mechanism

Sanchit Salunkhe; Oumnia El Fajri; Shanti Bhushan; David Thompson; Daphne O’Doherty; Tim O’Doherty; Allan Mason-Jones
Journal of Marine Science and Engineering · Vol. 7, Issue 10 · pp. 362 · 2019

Abstract

This paper documents the predictive capability of rotating blade-resolved unsteady Reynolds averaged Navier-Stokes (URANS) and Improved Delayed Detached Eddy Simulation (IDDES) computations for tidal stream turbine performance and intermediate wake characteristics. Ansys/Fluent and OpenFOAM simulations are performed using mixed-cell, unstructured grids consisting of up to 11 million cells. The thrust, power and intermediate wake predictions compare reasonably well within 10% of the experimental data. For the wake predictions, OpenFOAM performs better than Ansys/Fluent, and IDDES better than URANS when the resolved turbulence is triggered. The primary limitation of the simulations is under prediction of the wake diffusion towards the turbine axis, which in return is related to the prediction of turbulence in the tip-vortex shear layer. The shear-layer involves anisotropic turbulent structures; thus, hybrid RANS/LES models, such as IDDES, are preferred over URANS. Unfortunately, IDDES fails to accurately predict the resolved turbulence in the near-wake region due to the modeled stress depletion issue.

Bibliographic Information

JournalJournal of Marine Science and Engineering
PublisherMDPI
Publication Date2019-10-11
Publication Year2019
Volume7
Issue10
Pages362
Document TypeJournal Article
eISSN2077-1312
DOI10.3390/jmse7100362
SubjectMarine science; oceanography; marine engineering; coastal science; marine environment

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.mdpi.com/journal/jmse
Publisher PageOpen Publisher Page
This article is openly available from the publisher.