Search results for: WIND TURBINE, FLOATING PLATFORM, SAVONIUS ROTOR, VERTICAL ROTOR, ANCHORING - Bridge of Knowledge

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Search results for: WIND TURBINE, FLOATING PLATFORM, SAVONIUS ROTOR, VERTICAL ROTOR, ANCHORING

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Search results for: WIND TURBINE, FLOATING PLATFORM, SAVONIUS ROTOR, VERTICAL ROTOR, ANCHORING

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Search results for: WIND TURBINE, FLOATING PLATFORM, SAVONIUS ROTOR, VERTICAL ROTOR, ANCHORING

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Search results for: WIND TURBINE, FLOATING PLATFORM, SAVONIUS ROTOR, VERTICAL ROTOR, ANCHORING

  • An Innovative Floating System with a Savonius Rotor as a Horizontal-Axis Wind Turbine

    Publication

    - Polish Maritime Research - Year 2024

    In this project, an innovative wind turbine was designed for a floating plant. A large Savonius rotor was replaced with a double-rotor wind turbine implemented as a horizontal-axis turbine. This double rotor was positioned on the tip of a thrust plate and fixed to the deck of a catamaran. Simple 2D numerical simulations were performed to confirm the effectiveness of the concept. An analysis of the floating system configuration...

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  • Variable Size Twin-Rotor Wind Turbine

    Publication

    - ENERGIES - Year 2019

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  • Axial-Flux Permanent-Magnet Dual-Rotor Generator for a Counter-Rotating Wind Turbine

    Publication

    Coaxial counter-rotating propellers have been widely applied in ships and helicopters for improving the propulsion efficiency and offsetting system reactive torques. Lately, the counter-rotating concept has been introduced into the wind turbine design. Distributed wind power generation systems often require a novel approach in generator design. In this paper, prototype development of axial-flux generator with a counter-rotating...

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  • Dependence of Power Characteristics on Savonius Rotor Segmentation

    Publication
    • K. Doerffer
    • J. Telega
    • P. Doerffer
    • P. Hercel
    • A. Tomporowski

    - ENERGIES - Year 2021

    Savonius rotors are large and heavy because they use drag force for propulsion. This leads to a larger investment in comparison to horizontal axis wind turbine (HAWT) rotors using lift forces. A simple construction of the Savonius rotor is preferred to reduce the production effort. Therefore, it is proposed here to use single-segment rotors of high elongation. Nevertheless, this rotor type must be compared with a multi-segment...

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  • Improving Savonius rotor performance by shaping its blade edges

    Publication

    The article presents the results of the numerical analysis of the flow inside the Savonius rotor. Particular at-tention has been paid to the vicinity of the blade gap in order to recognise the mechanisms controlling the flow in this area. The conclusions resulting from the analysis made the basis for an attempt to improve Savonius turbine performance via shaping rotor blade edges. The paper presents selected characteristic flow...