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THE PHYSICS OF H-DARRIEUS TURBINE STARTING BEHAVIOUR

机译:H-DARRIEUS涡轮启动行为的物理学

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This paper investigates Darrieus turbine starting behaviour and provides a resolution to the contradictory accounts of whether or not the Darrieus turbine can self-start. The paper builds on previous work proposing an analogy between the aerofoil in Darrieus motion and flapping-wing flow mechanisms. This analogy suggests that unsteadiness could be exploited to generate additional thrust and that this unsteady thrust generation is governed by rotor geometry. To confirm the hypothesis, this investigation incorporated unsteady effects into a rotor analysis which resolved the differences between experiments and predictions made using a steady-state assumption. The fundamental physics of starting were also studied and the rotor geometry parameters that govern the generation of unsteady thrust were explored: namely chord-to-diameter ratio and blade aspect ratio. Further simulation showed that the Darrieus rotor is prone to be locked in a deadband where the thrust is not continuous around a blade rotation. This discrete thrust is caused by the large variation of incidence angle during start-up making the Darrieus blade ineffective during part of the rotation. The results also show that unsteady thrust can be promoted through an appropriate selection of blade aspect ratio and chord-to-diameter ratio and therefore it is possible to design rotors that have an ability to self-start. A new definition of self-starting is proposed based upon this improved understanding.
机译:本文研究了Darrieus涡轮机的启动行为,并为Darrieus涡轮机能否自启动的矛盾解释提供了解决方案。该论文以先前的工作为基础,提出了Darrieus运动中的翼型和襟翼流动机制之间的类比。这种类比表明,可以利用不稳定来产生附加推力,并且这种不稳定推力的产生是由转子的几何形状控制的。为了证实这一假设,本研究将非稳态影响纳入了转子分析中,该分析解决了实验和使用稳态假设所作的预测之间的差异。还研究了启动的基本物理原理,并探讨了控制非恒定推力产生的转子几何参数:即弦径比和叶片纵横比。进一步的仿真表明,Darrieus转子易于锁定在死区中,在死区中,推力在叶片旋转附近不连续。这种离散的推力是由启动过程中入射角的较大变化引起的,这使得Darrieus叶片在部分旋转过程中无效。该结果还表明,非稳态的推力可通过叶片的纵横比和弦长与直径之比的适当选择来促进,因此,能够设计具有一个能够自行起动转子。基于这种更好的理解,提出了一种新的自启动定义。

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