首页> 外文会议>ASME Fluids Engineering Division summer meeting >HYDRAULIC OPTIMIZATION AND LOSS ANALYSES OF A LOW SPECIFIC-SPEED CENTRIFUGAL PUMP WITH VARIABLE-THICKNESS BLADES
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HYDRAULIC OPTIMIZATION AND LOSS ANALYSES OF A LOW SPECIFIC-SPEED CENTRIFUGAL PUMP WITH VARIABLE-THICKNESS BLADES

机译:具有可变厚度叶片的低速离心泵的液压优化和损耗分析

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This paper investigates the hydraulic and dynamic performance of a low specific-speed centrifugal pump with CFD simulation. Three different impellers are designed with different thickness distributions along the same mean line of the blades. The entropy production is introduced to study the energy losses in the three models and the energy loss distributions of the whole flow passages are fully revealed. The simplified energy loss equation is carefully validated by comparing the thermodynamic efficiency to the traditional hydraulic efficiency, and the errors between them can be considered acceptable. The circumferential Euler head distribution out of the impeller is used to predict the uniformity of the flow into the volute. To obtain the transient flow characteristics, the sliding mesh technique and the unsteady CFD simulation are applied and the pressure pulsations in the volute are well captured. The head fluctuation intensities of the three models are quantitatively compared under constant flow rate. The results show that the thickness distribution can affect the hydraulic performance to a large extent, and it can strongly affect the pressure pulsation in the volute.
机译:本文通过CFD仿真研究了低比转速离心泵的水力和动力性能。设计了三个不同的叶轮,它们沿着叶片的相同平均线具有不同的厚度分布。引入熵产生来研究三种模型的能量损失,并充分揭示了整个流道的能量损失分布。通过将热力学效率与传统液压效率进行比较,仔细验证了简化的能量损失方程,并且可以认为它们之间的误差是可以接受的。叶轮的圆周欧拉头分布用于预测流入蜗壳的流量的均匀性。为了获得瞬态流动特性,应用了滑动网格技术和非稳态CFD仿真,并很好地捕获了蜗壳中的压力脉动。在恒定流速下定量比较了三种模型的水头起伏强度。结果表明,厚度分布在很大程度上影响水力性能,并强烈影响蜗壳内的压力脉动。

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