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March 26, 2026The Proceedings of Mechanical Engineering Congress Japan0 citationsOpen Access

Effect of a Front Ring Flat Plate on Power Characteristics of Circular Cylinder Blades Wind Turbine Driven by Longitudinal Vortex

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KNKu NAGASHIMAYSYasunori SatoTTTsutomu TAKAHASHI

Key Points

  • The study aims to evaluate the effect of a front ring flat plate on the performance metrics of a circular cylinder blades wind turbine.
  • Installed a front ring flat plate on a wind turbine with circular cylinder blades.
  • Measured the turbine’s rotational speed under no-load and load conditions.
  • Analyzed torque curve slopes and power coefficient changes based on front ring flat plate diameter.
  • The front flat plate increased rotational speed under no-load conditions.
  • Under load conditions, torque curve slope decreased for plates with diameter ≤ 180 mm.
  • Power coefficient decreased for D'≤180 mm but improved for D'≥190 mm.
  • The maximum power coefficient achieved was approximately 2.5 times greater with a plate diameter of 240 mm.

Abstract

The circular cylinder blades wind turbine is driven by steady lift force generated by longitudinal vortices formed in the gap between the rear ring flat plate and the cylinder blade. In this study, the turbine’s performance was improved by installing an additional flat plate on the front side. The front ring flat plate was found to increase the rotational speed under no-load conditions. However, under load conditions, the torque curve slope significantly decreased and the power coefficient Cp was reduced when the front ring flat plate diameter D'≦180mm. In contrast, when D'≧190mm, the torque curve slope was similar to that of the configuration without a front ring flat plate, and Cp improved. Notably, the configuration with D'=240mm achieved a maximum power coefficient Cp max approximately 2.5 times greater than that of the case without a front ring flat plate.

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Cite This Study

NAGASHIMA et al. (2025) studied this question.

synapsesocial.com/papers/69c4ccc9fdc3bde448918524https://doi.org/10.1299/jsmemecj.2025.j052p-17
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