Abst'/> Study on performance of contra-rotating sma1l hydro-turbine with thinner blade and longer front hub
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Study on performance of contra-rotating sma1l hydro-turbine with thinner blade and longer front hub

机译:叶片更薄,前轮毂更长的对转小型水轮机性能研究

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AbstractThere is a strong requirement to change fossil fuels into renewable energy in recent years because of the exhausted energy resources and the terrible environment pollution. Small hydropower is one of potential energy resource existing in our living environment and yet not been widely used. Small hydro-turbine can take advantage of this potential and unused energy while it still has some disadvantages, like performing low efficiency and easy to be out of control when there are foreign materials in the water. Thus we design this contra-rotating small hydro-turbine to increase its efficiency and stability. In this paper, a new kind of design method about the blade thickness, which can keep the blockage ratio of the blade constant, is adopted. In addition, a longer and arc chamfered front hub is also designed. The new test turbine is manufactured and the performance experiment is conducted. The numerical analysis is also carried out to investigate the internal flow condition. As the experimental and numerical results shown, the high efficiency area is moved closer to the designing flow rate area, the average efficiency of the new model becomes higher. The efficiency at flow rateQ = 0.9QdandQ = 0.95Qdis increased about 1.7% and 2.9%, reaching to 53.2%and 61.2%. The highest efficiency is increased about 0.5%, reaching to 64.7%, and it is obtained at 1.15Qd. The separation areas and vortex after the front blade and spokes become smaller, and the internal flow condition between the front rotor and rear rotor is improved.HighlightsThe contra-rotating rotors are used into the small hydro-turbine to achieve high efficiency and good stability.Compared with the original model, the blade of new model is thinner, and front hub is longer and arc chamfered.The performance experiment and numerical analysis of new model are conducted, and they are compared with each other.
机译: 摘要 由于能源资源枯竭和环境污染严重,近年来强烈要求将化石燃料转变为可再生能源。小水电是我们生活环境中存在的潜在能源之一,但尚未得到广泛使用。小型水轮机可以利用这种潜力和未使用的能量,但它仍然具有一些缺点,例如效率低下并且水中有异物时很容易失控。因此,我们设计了这种反向旋转的小型水轮机,以提高其效率和稳定性。本文采用了一种新型的叶片厚度设计方法,可以使叶片的堵塞率保持恒定。此外,还设计了更长的弧形倒角前轮毂。制造了新的测试涡轮机并进行了性能实验。还进行了数值分析以研究内部流动状况。如实验和数值结果所示,高效率区域靠近设计流速区域,新模型的平均效率变得更高。流速 Q = 0.9 Q d Q = 0.95 Q d 分别增加了约1.7%和2.9%,分别达到53.2%和61.2%。最高效率提高了约0.5%,达到了64.7%,效率是在1.15 Q d 。前叶片和轮辐后的分离区域和涡流变小,前转子和后转子之间的内部流动条件得到改善。 突出显示 反向旋转的转子用于小型水轮机中,以实现高效率和良好的稳定性。 与原始模型,新模型的刀片更薄,前轮毂更长,并且弧形倒角。 进行了新模型的性能实验和数值分析,并进行了比较彼此。

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