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Cavitation inception and simulation in blade element momentum theory for modelling tidal stream turbines

机译:潮汐流涡轮机叶片动量理论中的气蚀开始和模拟

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Blade element momentum theory (BEMT) is an analytical modelling tool that describes the performance of turbines by cross-referencing one-dimensional momentum theory with blade element theory. Each blade is discretised along its length and the dynamic properties of torque and axial force are determined. A compatible cavitation detection model is introduced to indicate any cavitating blade elements. Cavitation occurrence is dependent on proximity to the free surface, the incident flow velocity and inflow angle and the blade cross-section aerofoil shape. The shock waves associated with cavitation can significantly damage the blade surface and reduce performance; therefore, this model is a useful addition to BEMT and can be used in turbine design to minimise cavitation occurrence. The results are validated using the cavitation experiment observations.
机译:叶片要素动量理论(BEMT)是一种分析建模工具,通过将一维动量理论与叶片要素理论交叉引用来描述涡轮机的性能。每个叶片沿其长度离散,并确定扭矩和轴向力的动态特性。引入了兼容的空化检测模型以指示任何空化叶片元素。空化的发生取决于与自由表面的接近程度,入射流速和流入角度以及叶片截面的翼型形状。与气蚀有关的冲击波会严重损坏叶片表面并降低性能。因此,该模型是BEMT的有用补充,可用于涡轮机设计中,以最大程度地减少气蚀现象。使用气蚀实验观察结果验证了结果。

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