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Description of Unsteady Flow Characteristics in a Side Channel Pump With a Convex Blade

机译:具有凸刀片的侧通道泵中的非定常流动特性的描述

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To investigate the unsteady flow characteristics in side channel pumps, the vortex structures and their evolutions in the impeller and side channel flow passages have been comprehensively studied. Systematically, three impeller schemes were designed with different ratios of convex blade height h to impeller blade length l (h/l = 0.2, 0.5, and 0.8) for detailed analysis. The findings indicated that the convex blade broadens the high-efficiency range and improves the efficiency at the best efficiency point (BEP) for scheme h/l = 0.2. Impeller scheme h/l = 0.2 records the highest vortex concentration region, scheme h/l = 0.5 displays as scattered spots, while scheme h/l = 0.8 exhibits significant flow pattern changes in the impeller. The vortex distribution area and vortex intensity in the lengthways between the impeller and side channel of h/I = 0.2 are almost analogous, but the other two impeller schemes have obvious separation and very chaotic. Although the shrinkages of axial vortexes in the impeller did not reflect on hydraulic performance, impeller schemes h/l = 0.5 and 0.8 provided an outstanding performance in reducing the pressure fluctuations. The objective of this study is to provide a theoretical basis for optimal design and analysis of strong vortex flows in side channel pumps.
机译:为了研究侧流道泵的非定常流动特性,对叶轮和侧流道内的旋涡结构及其演变进行了全面的研究。系统地设计了三种不同凸面叶片高度h与叶片长度l之比(h/l=0.2、0.5和0.8)的叶轮方案,以进行详细分析。结果表明,在h/l=0.2的方案下,凸形叶片拓宽了效率范围,提高了最佳效率点(BEP)的效率。叶轮方案h/l=0.2记录了最高涡浓度区域,方案h/l=0.5显示为分散点,而方案h/l=0.8显示了叶轮中的显著流型变化。h/I=0.2时,叶轮与侧流道之间的纵向涡分布面积和涡强度基本相似,但其他两种叶轮方案分离明显,且非常混乱。虽然叶轮中轴向涡流的收缩没有反映水力性能,但叶轮方案h/l=0.5和0.8在减少压力波动方面提供了出色的性能。本研究的目的是为侧槽泵强旋涡流动的优化设计和分析提供理论依据。

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