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首页> 外文期刊>Journal of Ecohydraulics >Improving survival: injury and mortality of fish struck by blades with slanted, blunt leading edges
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Improving survival: injury and mortality of fish struck by blades with slanted, blunt leading edges

机译:改善生存:叶片撞击的鱼类的伤害和死亡率,带有倾斜的叶片,钝的前缘

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Compact turbines offer potential to reduce hydropower plant construction costs, but conventional turbine blade designs endanger entrained fish due to high blade strike speeds and thin leading edges. We evaluated the potential for combined blade leading edge slant and large leading edge thickness to increase strike survival. Rainbow trout(Oncorhynchus mykiss) were subjected to strikes with 100 mm thick blade analogues. At 10 m/s, strikes at fish length to blade leading edge thickness ratio (L/t) of 2 resulted in 98% survival at a location along the blade witha 30° slant relative to the tangential direction, compared to 26.8% survival at a location with 90°slant. For L/t 1.14-2, survival was found to be sensitive to location of strike within the mid-body region, determined from high-speed video. Strikes of 200 mm fish at 10 m/s resulted in 68% survival when body strike location was 0.58 (near caudal),and 7.9% when body strike location was 0.36 (near head). These results are consistent with previous trends and indicate opportunities to improve turbine blade design for greater entrained fish survival at higher turbine speeds, at both low head (<30 m) and high head projects.
机译:紧凑型涡轮机提供降低水电站施工成本的潜力,但传统的涡轮叶片设计由于高叶片撞击速度和薄的前缘,避免夹带的鱼。我们评估了组合刀片前缘倾斜和大领先边缘厚度的潜力,以提高罢工生存。彩虹鳟鱼(Oncorhynchus mykiss)与100mm厚的刀片类似物进行罢工。在10米/秒时,鱼长到叶片的前沿厚度比(L / T)为2的撞击导致沿着叶片的位置98%,相对于切向方向相对于26.8%的存活率为26.8%位置90°倾斜。对于L / T 1.14-2,发现存活率对中体区域内的撞击位置敏感,从高速视频确定。在10米/秒的鱼类时,200毫米鱼的剧烈导致了68%的存活位置,当身体打击位置为0.58(尾部),当体撞击位置为0.36时(近头)时7.9%。这些结果与先前的趋势一致,并表明在低头(<30米)和高头工程中,在更高的涡轮机速度下改善涡轮叶片设计的机会。

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