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Performance improvement of an axial-flow pump with inlet guide vanes in the turbine mode

机译:涡轮机模式中具有入口导向叶片的轴流泵的性能改进

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The axial pump operating in the pump-as-turbine mode is a practical and cost-saving alternative suitable for low-head pico hydropower in rural and remote areas that bypasses the need for expensive turbines. Their pump characteristics, however, indicate that efficiency is low in off-design flow rates. Using the computational fluid dynamics, the adjustable inlet guide vanes with five angles (+/- 20 degrees, 0 degrees, +/- 10 degrees) in front of the impeller of the axial pump have been redesigned and installed specifically to increase the operating range of high efficiency in the pump-as-turbine mode. To validate the simulation method, a prototype of the axial pump was built to measure in the pump mode the pump characteristics including head and efficiency. The results obtained show that the computational fluid dynamics calculated results are in qualitative agreement with the experimental data. In the pump-as-turbine mode, the adjustable inlet guide vanes were found to affect the performance of the axial pump. The most important aspect is that the adjustable inlet guide vanes widen the efficiency range if the inlet guide vane angle is adjusted for different flow rates. For the same situation with negative angles, the efficiency values at the BEP are higher than those with positive angles, where the efficiency around the angle - 10 degrees is the highest. The main reason is that the direction of flow at the impeller-zone exit is guided by the adjustable inlet guide vanes to reduce the energy loss, which can be supported in the view of vector field and energy losses of different parts of pump.
机译:在泵送 - 涡轮机模式下操作的轴向泵是一种实用而成本节省的替代方案,适用于农村和偏远地区的低头PICO水电,绕过昂贵的涡轮机。然而,它们的泵特性表明效率低于设计流量率。使用计算流体动力学,在轴向泵的叶轮前面的可调节入口导向叶片(+/-20度,0度,+/- 10度)已经重新设计并专门安装以增加操作范围泵送式汽轮机模式的高效率。为了验证仿真方法,轴向泵的原型是为了测量泵模式,泵特性包括头部和效率。得到的结果表明,计算流体动力学计算结果与实验数据进行定性协议。在泵送式涡轮机模式中,发现可调节的入口导向叶片影响轴向泵的性能。最重要的方面是,如果针对不同流速调节入口导向叶片角度,可调节入口导向叶片会扩大效率范围。对于具有负角度的相同情况,BEP处的效率值高于具有正角度的效率值,其中围绕角度-10度的效率最高。主要原因是叶轮区出口处的流动方向由可调节入口导向叶片引导,以降低能量损失,这可以在矢量场和泵的不同部分的能量损失中支持。

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