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The prediction of the hydrodynamic performance of marine current turbines

机译:船用水轮机水动力性能的预测

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The development of a blade element momentum (BEM) model for the hydrodynamic design of marine current turbines is presented. The model includes routines for interpolation of 2D section data and extrapolation for stall delay. The numerical model is compared with experimental data obtained from tests of an 800 mm diameter model rotor carried out in a cavitation tunnel. The theoretical predictions are in good agreement with the experiments. Using this validated model, a typical 3D rotor is used to demonstrate parametric variations of the design parameters. The effect of tip immersion on possible cavitation is assessed for this rotor. The model is then used to solve the dynamic effects of a tidal profile. The effect of an increase in blade roughness is presented, indicating a relatively small reduction in power. This work demonstrates that the numerical model developed can provide a useful tool for the investigation of the hydrodynamic design and operation of marine current turbines.
机译:提出了一种用于船用水轮机水力设计的叶片动量(BEM)模型的开发。该模型包括用于2D截面数据内插和用于失速延迟外推的例程。将数值模型与从800mm直径模型转子在空化通道中进行的测试获得的实验数据进行比较。理论预测与实验吻合良好。使用此经过验证的模型,典型的3D转子可用于演示设计参数的参数变化。对于该转子,评估了尖端浸入对可能的气蚀的影响。然后将模型用于求解潮汐剖面的动态影响。呈现出叶片粗糙度增加的效果,表明功率的降低相对较小。这项工作表明,开发的数值模型可以为研究船用水轮机的水力设计和运行提供有用的工具。

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