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首页> 外文期刊>International Journal of Environmental Science and Technology >Numerical evaluation of helical hydrokinetic turbines with different solidities under different flow conditions
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Numerical evaluation of helical hydrokinetic turbines with different solidities under different flow conditions

机译:不同流动条件下不同凝固性具有不同凝固性的螺旋水力涡轮机的数值评价

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摘要

In the present study, the effect of the turbine solidity on the performance of helical cross-flow hydrokinetic turbines is numerically investigated under different flow conditions. Four turbines, with different solidities of 0.15, 0.2, 0.25 and 0.3, were investigated in five dissimilar flow conditions with Froude numbers of 0.0714, 0.143, 0.214, 0.286 and 0.357. The devices employed in the analyses were three-bladed with the diameter of 1m and length of 1.5m. They were positioned horizontally in a rectangular-shaped channel with a perpendicular alignment to the flow direction. Symmetrical NACA0018 hydrofoils, which are twisted with an angle of 120 degrees, were used in the blade design. The investigation results have shown that the turbines with the solidity values 0.15 and 0.2 are more efficient than the other two cases. Considering all five flow conditions, the models have displayed the worst performance at a tip speed ratio of 4.0.
机译:在本研究中,在不同的流动条件下数量地研究了涡轮机固定对螺旋横流水力涡轮机的性能的影响。 在五个不同的流动条件下,在五种不同的流动条件下研究了四种涡轮机,其具有0.15,0.2,0.25和0.3的五个不同的流动条件,0.0714,0.143,0.214,0.286和0.357。 在分析中采用的装置是三叶,直径为1米和长度为1.5米。 它们在矩形通道中水平定位,垂直对齐到流动方向。 在刀片设计中使用了与120度的角度扭曲的对称NaCA0018水翼。 研究结果表明,具有稳定性值0.15和0.2的涡轮机比其他两种情况更有效。 考虑到所有五种流动条件,模型以尖端速度比为4.0显示最差的性能。

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