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A panel method for both marine propulsion and renewable energy

机译:船舶推进和可再生能源的面板方法

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A computational hydrodynamics method was formulated and implemented as a tool from screw propeller propulsion to renewable energy performance prediction, design and optimization of horizontal axis turbines. As an example for tidal energy generation, a comparative analysis between screw propellers and horizontal axis turbines was presented, in terms of geometry and motion parameters, inflow velocity analysis and the implementation methodologies. Comparison and analysis are given for a marine propeller model and a horizontal axis turbine model that have experimental measurements available in literature. Analysis and comparison are presented in terms of thrust coefficients, shaft torque/power coefficients, blade surface pressure distributions, and downstream velocity profiles. The effect of number of blades from 2 to 5, of a tidal turbine on hydrodynamic efficiency is also obtained and presented. The key implementation techniques and methodologies are provided in detail for this panel method as a prediction tool for horizontal axis turbines. While the method has been proven to be accurate and robust for many propellers tested in the past, this numerical tool was also validated and presented for both tidal and wind turbines.
机译:提出了一种计算流体力学方法,并将其作为从螺旋桨推进到可再生能源性能预测,水平轴涡轮机设计和优化的工具来实施。以产生潮汐能为例,从螺旋桨和水平轴涡轮机的几何形状和运动参数,流入速度分析和实施方法等方面进行了比较分析。对船用螺旋桨模型和水平轴涡轮机模型进行了比较和分析,这些模型在文献中已有实验测量值。根据推力系数,轴扭矩/功率系数,叶片表面压力分布和下游速度曲线进行了分析和比较。还获得并介绍了潮汐涡轮机的2至5个叶片数量对流体动力效率的影响。为此面板方法详细提供了关键的实现技术和方法,作为水平轴涡轮机的预测工具。尽管该方法已被证明对于过去测试过的许多螺旋桨是准确且稳健的,但该数值工具也已得到验证并提供给潮汐和风力涡轮机。

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