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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Modulated circulation control around the blades of a vertical axis hydrokinetic turbine for flow control and improved performance
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Modulated circulation control around the blades of a vertical axis hydrokinetic turbine for flow control and improved performance

机译:围绕垂直轴流体动力学涡轮机叶片的调节式循环控制,可实现流量控制和更高的性能

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The circulation control around the Darrieus turbine blades is considered as a significant practical solution so as to improve the machine's performance. This paper describes a kinematics-based method, through which the pitching motion of the blades varies in such a way that the flow is controlled around them as well as across the rotor. For this purpose, the potential flow approach is used to derive the blade pitching laws being compatible with the unsteady Kutta-Joukowski condition at the trailing edge of the blade. By means of this, a constant circulation around the blade is ensured. Preliminary CFD investigations have evidenced the operating conditions at which the constant-circulation framework may be applied to turbulent flows in order to control the vortex shedding and avoid blade-vortex interactions. Nonetheless, a strict application of this concept prevents the turbine from harvesting the energy. As an alternative strategy, the application of a locally variable-circulation is proposed in order to enhance the power output without compromising on flow control. Three major accomplishments of the variable-circulation-based blade pitching proposition are the following: a. flow control around the turbine blades with definite patterns of vortical structures, b. consistent increase in the turbine's coefficient of power, and c. widened operating range of the turbine.
机译:Darrieus涡轮机叶片周围的循环控制被认为是重要的实用解决方案,以提高机器的性能。本文介绍了一种基于运动学的方法,通过该方法,桨叶的俯仰运动会发生变化,从而控制桨叶周围以及整个转子的流量。为此,使用了潜在的流动方法来推导与叶片后缘不稳定的Kutta-Joukowski条件兼容的叶片变桨定律。由此,确保了围绕叶片的恒定循环。初步的CFD研究已经证明了恒定循环框架可应用于湍流以控制涡旋脱落并避免叶片涡旋相互作用的运行条件。但是,严格应用此概念会阻止涡轮机收集能量。作为替代策略,提出了局部可变循环的应用,以便在不损害流量控制的情况下提高功率输出。基于可变循环的叶片变桨提议的三个主要成就如下:具有确定的旋涡结构模式的涡轮叶片周围的流量控制; b。涡轮机功率系数的持续增加; c。扩大了涡轮机的工作范围。

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