Numerical study of the influence of an obstacle on the flow around vertical axial wind turbine
Matematičeskoe modelirovanie, Tome 33 (2021) no. 11, pp. 61-76.

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The simulation results of a vertical-axis wind turbine based on numerical solution of the three-dimensional Reynolds-averaged Navier-Stokes equations with Spalart-Allmaras turbulence model are presented. For the helicoid turbine with three spiral blades, the results of parametric computations of viscous compressible flows in presence of the urban infrastructure model are given.
Keywords: computational aerodynamics, vertical axis wind turbine, urban infrastructure.
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     title = {Numerical study of the influence of an obstacle on the flow around vertical axial wind turbine},
     journal = {Matemati\v{c}eskoe modelirovanie},
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A. E. Bondarev; A. V. Bondarenko; V. A. Galaktionov; V. T. Zhukov; K. V. Manukovskii; N. D. Novikova; O. B. Feodoritova. Numerical study of the influence of an obstacle on the flow around vertical axial wind turbine. Matematičeskoe modelirovanie, Tome 33 (2021) no. 11, pp. 61-76. http://geodesic.mathdoc.fr/item/MM_2021_33_11_a3/

[1] V. G. Bobkov, A. E. Bondarev, A. V. Bondarenko et al, “Numerical Simulation of the Aerodynamics of Vertical-Axis Wind Turbines”, MM, 13:4 (2021), 604–612 | Zbl

[2] S. V. Andreev, A. E. Bondarev, A. V. Bondarenko et al, “Modelling and visualisation of blade assembly with complicated shape for power turbine”, Scientific Visualization, 7:4 (2015), 1–12

[3] B. Hand, A. Cashman, “A review on the historical development of the lift-type vertical axis wind turbine: from onshore to offshore floating application”, Sustain. Energy Technol. Assess, 38 (2020), 100646

[4] B. Hand, G. Kelly, A. Cashman, “Aerodynamic design and performance parameters of a lift-type vertical axis wind turbine: A comprehensive review”, Sustain. Energy Technol. Assess, 139 (2021), 110699 | DOI

[5] I. V. Abalakin, P. A. Bakhvalov, A. I. Gorobets, A. P. Duben, T. K. Kozubskaia, “Parallelnyi programmnyi kompleks NOISEtte dlia krupnomasshtabnykh raschetov zadach aerodinamiki i aeroakustiki”, Vychisl. metody i programmirovanie, 13 (2012), 110–125

[6] I. V. Abalakin, V. G. Bobkov, T. K. Kozubskaya, “Implementation of the low Mach number method for calculating flows in the NOISEtte software package”, Math. Models Comput. Simul., 9:6 (2017), 688–696 | DOI | Zbl

[7] A. E. Bondarev, V. A. Galaktionov, V. M. Chechetkin, “Analysis of the development concepts and methods of visual data representation in computational physics”, Comput. Math. and Math. Phys., 51:4 (2011), 624–636 | DOI | Zbl

[8] K. N. Volkov, V. N. Emelianov, I. V. Teterina, M. S. Iakovchuk, “Metody i kontseptsii vizualizatsii vikhrevykh techenii v zadachakh vychislitelnoi gazovoi dinamiki”, Vychislitelnye metody i programmirovanie, 17 (2016), 81–98

[9] Hybrid supercomputer K-60