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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Hydrodynamic analysis models for the design of Darrieus-type vertical-axis marine current turbines
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Hydrodynamic analysis models for the design of Darrieus-type vertical-axis marine current turbines

机译:Darrieus型垂直轴船用水轮机设计的流体动力学分析模型

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摘要

This work reviews hydrodynamic analysis models developed for the design of Darrieus-type vertical axis marine current turbines, with particular emphasis on the prediction of hydrodynamic rotor performance, as well as their suitability for aiding the optimization process, either directly, or as a fast filter of potential blade profiles. In order to improve the performance of a marine current turbine it is necessary accurately to model the flow passing the turbine's blades. Several types of models exist for Darrieus-type turbines, from momentum-based streamtube models to complex computational fluids dynamics (CFD) simulations. With continuously varying large angles of attack on the blades, the main issue is accurate prediction of the flow field around the rotor and thus its loads and torque. This is further complicated by the significant inherent unsteady hydrodynamic characteristics and potential for dynamic stall. Comparisons of the analytical results with experimental data are presented to compare these different models and thus illustrate their areas of suitability in this context. In conclusion, vertical axis machines have the potential of high power capture compared with that of their horizontal counterparts but this will depend on blade profile and design configuration, solidity, and tip speed ratio. None of the existing theoretical methods really captures the actual performance of the machines except for detailed CFD simulations, which are inevitably computational time intensive.
机译:这项工作回顾了为设计Darrieus型垂直轴船用水轮机而开发的流体动力分析模型,尤其着重于流体动力转子性能的预测以及它们对直接或快速过滤器的优化过程的适用性。潜在的叶片轮廓。为了提高船用水轮机的性能,有必要对流过涡轮叶片的水流进行精确建模。从基于动量的流管模型到复杂的计算流体动力学(CFD)模拟,Darrieus型涡轮机有几种类型的模型。随着叶片不断变化的大迎角,主要问题是对转子周围流场的准确预测,从而准确预测其负载和扭矩。显着的固有非稳态流体动力特性和潜在的动态失速使情况进一步复杂化。提出了分析结果与实验数据的比较,以比较这些不同的模型,从而说明它们在此情况下的适用范围。总之,与卧式立式机床相比,立轴式机床具有更高的功率捕获潜力,但这将取决于叶片轮廓和设计配置,坚固性和叶尖速比。除了详细的CFD模拟外,所有现有的理论方法都无法真正捕捉到机器的实际性能,因为CFD模拟不可避免地需要大量的计算时间。

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