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Impact of the Volute Basic Circle Diameter of Sewage Pump on Pressure Pulsation

机译:污水泵蜗壳基​​本圆直径对压力脉动的影响

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摘要

W artykule przedstawiono wyniki i opis symulacji przep?ywu w pompie kanalizacyjnej z trzema ró?nymi ?rednicami spr??yn nap?dowych. W badaniach wykorzystano oprogramowanie Fluent, jeden ze standardowych modeli turbulencji (k-epsilon), algorytm SIMPLE oraz technik? siatki przesuwnej. W analizie skupiono si? na przypadku wyst?pienia zak?óceń przep?ywu w kanale. Dokonano analizy wyników i przedstawiono wnioski.%The unsteady flow field in the channel sewage pump with three different basic circle diameters of volutes were numerically simulated based on the Fluent commercial software, using the standard k-e turbulence model, the SIMPLE algorithm, and the sliding mesh technique. By setting pressure measurement points, the pressure pulsation in different positions can be obtained. The impact of the basic circle diameter of volute on the internal pressure pulsation characteristics of a sewage pump was analyzed based on frequency domain and time domain graphs. The results show that the smaller the basic circle diameter of volute is, the more turbulent the pressure pulsation is. The Coefficient of pressure pulsation amplitude reaches the maximum value with small gaps in the volute and impeller clearance. The closer the monitoring point to the cutwater, the greater the amplitude of pressure pulsation. In a flow channel of volute, the pressure fluctuation presents cyclical changes, and a small gap flow reaches the strongest unsteady characteristics. Pressure pulsation cycle is associated with the number of impeller blades and a period of three peaks is the blade passing frequency. The dominant frequency of pressure pulsation is 73.5Hz, which is the threefold frequency of rotation frequency.
机译:本文介绍了具有三种不同直径的驱动弹簧的污水泵中的水流模拟结果和描述。该研究使用Fluent软件,标准湍流模型(k-epsilon),SIMPLE算法和技术之一?滑动网格。分析重点在于在通道中发生流动干扰的情况下。分析结果并提出结论。%基于Fluent商业软件,使用标准ke湍流模型,SIMPLE算法和滑动网格,对具有三个不同蜗壳基本直径的通道污水泵的非稳态流场进行了数值模拟。技术。通过设置压力测量点,可以获得不同位置的压力脉动。基于频域和时域图,分析了蜗壳基本圆直径对污水泵内压脉动特性的影响。结果表明,蜗壳的基本圆直径越小,压力脉动越湍流。压力脉动幅度系数达到最大值,蜗壳和叶轮间隙中的间隙很小。监测点越靠近切水点,压力脉动的幅度越大。在蜗壳的流动通道中,压力波动呈现周期性变化,并且较小的间隙流达到最强的不稳定特性。压力脉动周期与叶轮叶片的数量相关,三个峰值的时间段是叶片通过的频率。压力脉动的主要频率为73.5Hz,是旋转频率的三倍频率。

著录项

  • 来源
    《Przeglad Elektrotechniczny》 |2013年第3b期|232-235|共4页
  • 作者单位

    Research Center of Fluid Machinery Engineering and technology, Jiangsu University, Zhenjiang 212013, P. R. China;

    Research Center of Fluid Machinery Engineering and technology, Jiangsu University, Zhenjiang 212013, P. R. China;

    Research Center of Fluid Machinery Engineering and technology, Jiangsu University, Zhenjiang 212013, P. R. China;

    Research Center of Fluid Machinery Engineering and technology, Jiangsu University, Zhenjiang 212013, P. R. China;

    Research Center of Fluid Machinery Engineering and technology, Jiangsu University, Zhenjiang 212013, P. R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sewage pump; volute; basic circle diameter; unsteady flow; pressure pulsation;

    机译:污水泵蜗壳基本圆直径不稳定流量压力脉动;

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