离心泵作为水轮机的试验研究

O. A. Audisio, Mariano Nicolás Rossi, Paul José Alonso
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引用次数: 0

摘要

为研究离心泵在泵-水轮机模式下的运行特性,对离心泵进行了试验研究。泵和PAT性能之间的相关性是一个主要问题。已经开发了几种方法来预测作为涡轮机运行的泵的最佳效率,但它们的结果与所有泵的实验数据并不吻合。相对于其局部和分布的水力损失、速度分布和同源点的压力,PAT的流体动力学行为发生了明显的变化。使用泵模式性能的相似参数来推断PAT的行为是不可能的;产生了很大的错误。本文介绍了低比数PAT操作的实验参数。为了确定泵作为涡轮的特性,我们采用了一个闭环实验装置,在该实验装置中,通过另一个泵来实现入口压头,并确定了三种不同流量范围内PAT直径与具体数的相关性。这是基于在两种节流模式下,转速范围在250到2500 RPM之间,特定数值为17.80 [RPM, m3 /s, m]的离心泵的实验数据库。测量了所需的所有参数,得到了完整的反向泵特性曲线。功能表征为液压机在涡轮模式下的转速、高度、流量等运行参数变化曲线。有了得到的结果,进行比较可以观察到这些变化对pat性能的影响。所得到的曲线允许从泵态参数推断涡轮模式下的行为。推导出的相关系数值与实验结果吻合较好。
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Experimental study of a centrifugal pump operating as a hydraulic turbine
An experimental investigation of centrifugal pump has been carried out to study its characteristics in pump and turbine mode operation (PAT). The correlation between pump and PAT performance is a major problem. Several methods have been developed to predict the best efficiency of pumps running as turbines, but their results are not in good coincidence with experimental data for all pumps. Fluid dynamic behavior of PAT changes appreciably, in relation to its localized and distributed hydraulic losses, velocity profiles and pressures at homologous points. It is not possible to infer the behavior of a PAT using similarity parameters from pump mode performance; very large errors are made. This paper presents the experimental parameters of the operating of a PAT with specific number low. In order to determine the pump’s characteristic as turbine, we used a closed-circuit experimental setup in which the admission pressure head was realized with another pump and the correlation between the diameter of the PAT and the specific number for three different ranges of flow was determined. This is based on an experimental database on a centrifugal pump of specific number 17 .80 [RPM, m3 /s, m] in bothrotation modes and for a speed range of rotation between 250 and 2500 RPM. All required parameters were measured to achieve complete characteristic curves of the reverse pump. The functional characterization showed curves of the hydraulic machine in the turbine mode with variation of operating parameters, such as rotation speeds, heights, and flow rates. With the results obtained, the comparatives made allowed observing the influence of these variations on the performance of the PATs. Curves obtained allowed inferring the behavior in turbine mode from pump mode parameters. Values obtained from the derived correlations showed good match with experimental results.
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