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Numerical Simulation of Tubular Pumping Systems with Different Regulation Methods

机译:不同调节方法的管状泵送系统的数值模拟

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Since the flow in tubular pumping systems is basically along axial direction and passes symmetrically through the impeller, most satisfying the basic hypotheses in the design of impeller and having higher pumping system efficiency in comparison with vertical pumping system, they are being widely applied to low-head pumping engineering. In a pumping station, the fluctuation of water levels in the sump and discharge pool is most common and at most time the pumping system runs under off-design conditions. Hence, the operation of pump has to be flexibly regulated to meet the needs of flow rates, and the selection of regulation method is as important as that of pump to reduce operation cost and achieve economic operation. In this paper, the three dimensional time-averaged Navier-Stokes equations are closed by RNG K — ε turbulent model, and two tubular pumping systems with different regulation methods, equipped with the same pump model but with different designed system structures, are numerically simulated respectively to predict the pumping system performances and analyze the influence of regulation device and help designers make final decision in the selection of design schemes. The computed results indicate that the pumping system with blade-adjusting device needs longer suction box, and the increased hydraulic loss will lower the pumping system efficiency in the order of 1.5%. The pumping system with permanent magnet motor, by means of variable speed regulation, obtains higher system efficiency partly for shorter suction box and partly for different structure design. Nowadays, the varied speed regulation is realized by varied frequency device, the energy consumption of which is about 3-4% of output power of the motor. Hence, when the efficiency of variable frequency device is considered, the total pumping system efficiency will probably be lower.
机译:由于在筒状的泵送系统的流动是沿着基本上轴向方向上,并通过叶轮对称地通过,最满足在叶轮的设计的基本假设和与竖直的泵系统相比,具有更高的泵送系统的效率,它们被广泛地应用到低头抽水工程。在一个泵站,在贮槽和放电池水位的变动是最常见和至多时间泵送系统运行非设计条件下。因此,泵的操作必须灵活地调节,以满足流量的需求,和调节方法的选择是为泵降低运营成本,实现经济运行的重要。在本文中,所述三维时间平均Navier-Stokes方程通过用RNG k关闭 - ε紊流模型,并与不同的调节方法,配备有相同的泵模型,但具有不同设计的系统结构的两个管状泵送系统,进行了数值模拟分别预测泵送系统的性能和分析的调节装置和帮助设计师的影响使设计方案的选择最终决定。所计算的结果表明,用叶片调整装置的泵送系统需要更长的抽吸箱,并且增加的水力损失将降低在1.5%的数量级泵送系统的效率。与永久磁铁电动机的泵送系统,通过可变速度调节手段,获得更高的系统效率部分地在较短的抽吸箱和部分用于不同的结构设计。如今,变化速度调节是通过改变的频率装置来实现,能量消耗,其中是关于马达的输出功率的3-4%。因此,当可变频率装置的效率被认为是,总的泵送系统的效率可能会降低。

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