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Experimental Study of the Effect of Blade Angle on Pico Tubular Bulb Turbine Performance in Horizontal Flow

机译:叶片角度对水平流动微微管状泡沫涡轮机性能影响的实验研究

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At present, most of the small hydropower research literature focuses on the head between 2 and 30 meters, in contrast to the ultra-low head (ULH) between 0 and 3 meters undeveloped. ULH hydropower, especially for horizontal flow is attractive to develop because it is renewable, sustainable, simple, low cost, and environment-friendly. One type of ULH hydropower application in horizontal flow is the tubular channel, while the ultra-low of turbine used is a propeller. Efforts to increase the velocity of water flow and direct the current to the turbine in the tubular channel applying the bulb body. The blade angle is related to the gap between the blades in the turbine and will affect the discharge, so the performance of the turbine is also affected. This study aimed to determine the effect of blade angle on the propeller turbine characteristics on horizontal flow. The number of blades in this study was 5, with the bulb ratio to the pipe used 0.6. Blade angle variations of 15°, 20°, 25° and 30° with each tested at 7, 9, 11, and 13 L/s in horizontal tubular flow. The relationship between blade angle variations with rotation speed, dynamic head, shaft power, and efficiency in this study are displayed graphically. The results of this study indicate that a slope of 20° with a flow rate of 13 L/s produces optimal power compared to other angles.
机译:目前,大多数小型水电研究文献侧重于2到30米的头部,与超低头(ULH)相比,0到3米的未开发。 ULH水电,特别是对于水平流是有吸引力的,因为它是可再生的,可持续,简单,成本和环保的。水平流量中的一种ULH水电应用是管状通道,而使用的超低电阻器是螺旋桨。努力增加水流的速度并将电流引导到施加灯泡体的管状通道中的涡轮机。叶片角度与涡轮机中叶片之间的间隙有关,并且会影响放电,因此涡轮机的性能也受到影响。本研究旨在确定叶片角度对水平流动螺旋桨涡轮机特性的影响。本研究中的叶片的数量为5,灯泡比与管子的灯泡比为0.6。叶片角度变化为15°,20°,25°和30°,各自在7,9,11和13L / s中进行水平管状流动。图形上显示了该研究中旋转速度,动态头,轴功率和效率的叶片角度变化的关系。该研究的结果表明,与其他角度相比,具有13L / s的流速的20°的斜率产生最佳功率。

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