Simulation of Large Wind Farms in the Conventionally Neutral Atmospheric Boundary Layer Using LES
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-63212-4_60
Reference5 articles.
1. Allaerts, D., Meyers, J.: Large eddy simulation of a large wind-turbine array in a conventionally neutral atmospheric boundary layer. Phys. Fluids 27, 065108 (2015)
2. Calaf, M., Meneveau, C., Meyers, J.: Large eddy simulation study of fully developed wind-turbine array boundary layers. Phys. Fluids 22, 015110 (2010)
3. Goit, J., Meyers, J.: Optimal control of energy extraction in wind-farm boundary layers. J. Fluid Mech. 768, 5–50 (2015)
4. Stevens, B., Moeng, C.-H., Sullivan, P.P.: Entrainment and subgrid lengthscales in large-eddy simulations of atmospheric boundary-layer flows, In Kerr, R.M., Kimura, Y.(eds.) IUTAM Symposium on Developments in Geophysical Turbulence of Fluid Mechanics and Its Applications, vol. 58, pp. 253–269 (2000)
5. Stevens, R.J.A.M., Graham, J., Meneveau, C.: A concurrent precursor inflow method for large eddy simulations and applications to finite length wind farms. Renew. Energy 68, 46–50 (2014)
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