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Unsteady analysis on the instantaneous forces and moment arms acting on a novel Savonius-style wind turbine

机译:对作用于新型Savonius型风力涡轮机上的瞬时力和力矩臂的不稳定分析

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This paper aims to present a transient analysis on the forces acting on a novel two-bladed Savonius-style wind turbine. Two-dimensional unsteady Reynolds Averaged Navier Stokes equations are solved using shear stress transport k-omega turbulence model at a Reynolds number of 1.23 x 10(5). The instantaneous longitudinal drag and lateral lift forces acting on each of the blades and their acting points are calculated. The corresponding moment arms responsible for the torque generation are obtained. Further, the effect of tip speed ratio on the force coefficients, moment arms and overall turbine performances are observed. Throughout the paper, the obtained results for the new design are discussed with reference to conventional semi-circular design of Savonius turbines. A significant performance improvement is achieved with the new design due to its increased lift and moment arm contribution as compared to the conventional design. More interestingly, the present study sets a platform for future aerodynamic research and improvements for Savonius-style wind turbines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文旨在对作用于新型两叶式Savonius型风力涡轮机上的力进行瞬态分析。使用剪切应力传输k-omega湍流模型以1.23 x 10(5)的雷诺数求解二维非稳态雷诺平均Navier Stokes方程。计算作用在每个叶片及其作用点上的瞬时纵向阻力和横向升力。获得负责扭矩产生的相应力矩臂。此外,观察到叶尖速比对力系数,力矩臂和整体涡轮性能的影响。在整篇论文中,将参考Savonius涡轮机的常规半圆形设计来讨论针对新设计​​获得的结果。与传统设计相比,由于新设计增加了升力和力矩臂,因此新性能得到了显着改善。更有趣的是,本研究为Savonius型风力涡轮机的未来空气动力学研究和改进奠定了平台。 (C)2016 Elsevier Ltd.保留所有权利。

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