This study examines the performance and wake dynamics of vertical-axis hydrokinetic turbines (VAHTs) at low Reynolds numbers through an integrated computational approach, combining overset mesh and volume of fluid methods. Two- and three-dimensional simulations were conducted to evaluate mesh convergence, wake recovery, and power coefficient (C-p) under varying submersion depths. The results reveal that shallow submersion prolongs wake deficits, while turbines at greater depths exhibit faster wake recovery, aligning closely with experimental data. Additionally, the study demonstrates that even when free-surface deformation is minimal, the free surface significantly affects wake recovery, highlighting the need to account for free-surface effects. Furthermore, the study identifies turbulence model limitations, with overestimated wake deficits in the near wake, yielding a root mean square error (RMSE) of 0.1553 for the three-dimensional case compared to 0.4029 for the two-dimensional model, emphasizing the need of three-dimensional simulations for accurate wake recovery predictions. These findings highlight the importance of accounting for free-surface effects in VAHT placement and design, particularly in shallow water environments, to enhance performance and guide turbine deployment in tandem configurations. This work contributes to the broader effort of expanding decentralized renewable energy solutions for rural and off-grid communities in developing countries.
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Univ Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain
Port Said Univ, Fac Engn, Mech Power Dept, Port Fuad, EgyptUniv Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain
Yosry, Ahmed Gharib
Alvarez, Eduardo Alvarez
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Univ Oviedo, Hydraul R&D Grp, EP Mieres, Mieres, SpainUniv Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain
Alvarez, Eduardo Alvarez
Valdes, Rodolfo Espina
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Univ Oviedo, Hydraul R&D Grp, EP Mieres, Mieres, SpainUniv Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain
Valdes, Rodolfo Espina
Pandal, Adrian
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Univ Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, SpainUniv Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain
Pandal, Adrian
Marigorta, Eduardo Blanco
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Univ Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, SpainUniv Oviedo, GIFD Grp, Energy Dept, C Wifredo Ricart S-N, Gijon, Spain