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Numerical Simulation of Aerodynamic Performance of Off-grid Small Vertical Axis Wind Turbine

机译:离网小垂直轴风力涡轮机空气动力学性能的数值模拟

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In this paper, a 2D off-grid small compact model of vertical axis wind turbine was established. The sliding grid technology, the RNG turbulence model and the Coupld algorithm was applied to simulate the unsteady value of the model's aerodynamic performance. Through the analysis on the flow field at difference moments, the rules about velocity fields, vortices distributions and the wind turbine's total torque were obtained. The results show that: the speed around wind turbine blades have obvious gradient, and the velocity distribution at different times show large differences in the computional domain. In the rotating domain vorticity is large. With away from the rotation domain, vorticity reduced quickly. In the process of rotating for vertical axis wind turbine, the wind turbine's total torque showed alternating positive and negative changes.
机译:本文建立了垂直轴风风力涡轮机的2D离网小型型号。滑动网格技术,RNG湍流模型和耦合算法应用于模拟模型空气动力学性能的不稳定值。通过对差分矩的流场的分析,获得了关于速度场,涡流分布和风力涡轮机的总扭矩的规则。结果表明:风力涡轮机叶片周围的速度具有明显的梯度,不同时间的速度分布显示了卷积域的大差异。在旋转域涡旋中很大。与远离旋转域,涡旋快速减少。在旋转用于垂直轴风力涡轮机的过程中,风力涡轮机的总扭矩显示出交替的正和阴性变化。

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