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Original Articles

Inlet grid-generated turbulence for large-eddy simulations

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Pages 307-315 | Received 12 Apr 2013, Accepted 14 Jun 2013, Published online: 11 Sep 2013

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F. Houtin-Mongrolle, L. Bricteux, P. Benard, G. Lartigue, V. Moureau & J. Reveillon. (2020) Actuator line method applied to grid turbulence generation for large-Eddy simulations. Journal of Turbulence 21:8, pages 407-433.
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Ehsan Asgari & Mehran Tadjfar. (2017) Assessment of four inflow conditions on large-eddy simulation of a gently curved backward-facing step. Journal of Turbulence 18:1, pages 61-86.
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I. Torrano, M. Martinez-Agirre & M. Tutar. (2016) LES study of grid-generated turbulent inflow conditions with moderate number of mesh cells at low Re numbers. International Journal of Computational Fluid Dynamics 30:2, pages 141-154.
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Articles from other publishers (11)

Bowen Yan, Ruifang Shen, Ke Li, Zhenguo Wang, Qingshan Yang, Xuhong Zhou & Le Zhang. (2023) Spatio-temporal correlation for simultaneous ultra-short-term wind speed prediction at multiple locations. Energy 284, pages 128418.
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Mingjin Zhang, Yiyan Dai, Bo Hu, Xu Xin, Lianhuo Wu & Yongle Li. (2023) Wind Field Numerical Simulation of a Cable-stayed Bridge in a Mountainous Area Using Improved Inlet Boundary by CIRFG Method. KSCE Journal of Civil Engineering 27:9, pages 3941-3951.
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Galih BanggaGalih Bangga. 2022. Wind Turbine Aerodynamics Modeling Using CFD Approaches. Wind Turbine Aerodynamics Modeling Using CFD Approaches 7-1 7-14 .
Muting Hao, Joshua Hope-Collins & Luca di Mare. (2022) Generation of turbulent inflow data from realistic approximations of the covariance tensor. Physics of Fluids 34:11.
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Zhang Zhiwei, Wu Bo, Zhang Liangliang, Wang Yuanqing & Huang Longxian. (2020) Large-eddy simulations of the inlet grid-generated turbulence. Vibroengineering PROCEDIA 30, pages 214-220.
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Benoît Gaurier, Clément Carlier, Grégory Germain, Grégory Pinon & Elie Rivoalen. (2020) Three tidal turbines in interaction: An experimental study of turbulence intensity effects on wakes and turbine performance. Renewable Energy 148, pages 1150-1164.
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Mohamed Abdelhady & David H. Wood. (2019) Evaluating the Impact of Free-Stream Turbulence on Convective Cooling of Overhead Conductors Using Large Eddy Simulations. Journal of Energy Resources Technology 141:6.
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Nitin S. Dhamankar, Gregory A. Blaisdell & Anastasios S. Lyrintzis. (2018) Overview of Turbulent Inflow Boundary Conditions for Large-Eddy Simulations. AIAA Journal 56:4, pages 1317-1334.
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Grégory Pinon, Matías Fernández Hurst & Edile Lukeba. (2017) Semi-analytical estimate of energy production from a tidal turbine farm with the account of ambient turbulence. International Journal of Marine Energy 19, pages 70-82.
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Nitin S. Dhamankar, Gregory A. Blaisdell & Anastasios S. Lyrintzis. (2015) An Overview of Turbulent Inflow Boundary Conditions for Large Eddy Simulations (Invited). An Overview of Turbulent Inflow Boundary Conditions for Large Eddy Simulations (Invited).
T. Blackmore, W. M. J. Batten & A. S. Bahaj. (2014) Influence of turbulence on the wake of a marine current turbine simulator. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 470:2170, pages 20140331.
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