Numerical Simulations of Two Back-To-Back Horizontal Axis Tidal Stream Turbines in Free-Surface Flows

Author:

Yan Jinhui1,Deng Xiaowei2,Xu Fei3,Xu Songzhe1,Zhu Qiming1

Affiliation:

1. Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, 205, N. Mathews Ave., Urbana, IL 61801

2. Department of Civil Engineering, University of Hong Kong, Pokfulam Road, Hong Kong, 9990077, China

3. Ansys, Inc., 807 Las Cimas Pkwy, Austin, TX 78746

Abstract

Abstract We simulate two back-to-back full-scale tidal turbines using an in-house computational free-surface flow code. We briefly present the mathematical formulation of the computational framework. We first validate the proposed method on a single turbine configuration. A mesh refinement study is conducted to ensure the result is converged. We then quantify the wake effect and free-surface effect on tidal turbine performance by a case study. To investigate the free-surface effect, we perform both pure hydrodynamics and free-surface simulations. The time history of thrust and production coefficients is quantified. In both pure hydrodynamics and free-surface flow simulations, thrust and production coefficients of the downstream turbines drop significantly due to the velocity deficit in the wake. By comparing the result between free-surface flow and pure hydrodynamics simulations for the configuration considered here, we find that the free-surface does not affect the upstream turbine but significantly affects the downstream turbine.

Funder

University of Illinois at Urbana-Champaign

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

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