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Using Free Flow Energy Cumulation in Wind and Hydro Power Production

机译:在风力和水力发电中使用自由流动能量累积

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摘要

When approaching a conventional wind turbine, the air flow is slowed down and widened. This results in a loss of turbine efficiency. In order to exploit wind or water flow power as effectively as possible, it was suggested that the turbine should be placed inside a shroud, which consists of 4 wing-shaped surfaces. Two internal airfoils improve the turbine performance by speeding up the flow acting on the turbine blades, two external wings create a field of low pressure behind the turbine, thus, helping to draw more mass flow to the turbine and avoid the loss of efficiency due to flow deceleration.  The system accumulates kinetic energy of the flow in a small volume where the smaller (and, therefore, cheaper) turbine can be installed. A smaller system can be installed inside the bigger one, which would help to accumulate even more kinetic energy on the turbine. We call this method the kinetic energy summation with local flow redistribution. Both experiments and CFD simulations demonstrate a significant increase in velocity and generated mechanical power in comparison of those for a bare turbine.
机译:当接近传统的风力涡轮机时,气流减速并加宽。这导致涡轮效率的损失。为了尽可能有效地利用风或水流功率,建议涡轮机应放置在护罩内,该护罩包括4个翼形表面。通过加速作用在涡轮机叶片上的流动,两个内部翼型改善了涡轮机性能,两个外部翼在涡轮机后面产生了低压的领域,从而有助于向涡轮机吸引更多的质量流动并避免由于流动减速。该系统在可以安装较小的(以及因此,因此,更便宜)的涡轮机的小体积中累积流量的动能。较小的系统可以安装在更大的系统内,这将有助于在涡轮机上积累更多的动能。我们称这种方法用局部流量再分配来称之为动能求和。实验和CFD模拟的速度和CFD模拟都表现出速度的显着增加和产生的机械动力,相比之下是裸机的速度。

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