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      New Evaluation Technique for WTG Design Wind Speed Using a CFD-Model-Based Unsteady Flow Simulation with Wind Direction Changes

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      Modelling and Simulation in Engineering
      Hindawi Limited

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          Abstract

          Because a significant portion of the topography in Japan is characterized by steep, complex terrain, which results in a complex spatial distribution of wind speed, great care is necessary for selecting a site for the construction of wind turbine generators (WTG). We have developed a CFD model for unsteady flow called RIAM-COMPACT (Research Institute for Applied Mechanics, Kyushu University, computational prediction of airflow over complex terrain). The RIAM-COMPACT CFD model is based on large eddy simulation (LES). The computational domain of RIAM-COMPACT can extend from several meters to several kilometers, and RIAM-COMPACT can predict airflow and gas diffusion over complex terrain with high accuracy. The present paper proposes a technique for evaluating the deployment location of a WTG. The proposed technique employs the RIAM-COMPACT CFD model and simulates a continuous wind direction change over 360 degrees.

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          Computation of high Reynolds number flow around a circular cylinder with surface roughness

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            Micro-siting technique for wind turbine generators by using large-eddy simulation

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              Finite-Difference Method for Convective Terms using Non-Uniform Grid.

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                Author and article information

                Journal
                Modelling and Simulation in Engineering
                Modelling and Simulation in Engineering
                Hindawi Limited
                1687-5591
                1687-5605
                2011
                2011
                : 2011
                :
                : 1-6
                Article
                10.1155/2011/941870
                5ec360d4-60ee-4f31-b595-cb5243e21693
                © 2011

                http://creativecommons.org/licenses/by/3.0/

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