首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >INVESTIGATION OF PRESSURE PULSATION IN THE STAGES OF AN ELECTRIC SUBMERSIBLE PUMP AT BEST EFFICIENCY POINT UNDER VARIOUS SPEEDS
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INVESTIGATION OF PRESSURE PULSATION IN THE STAGES OF AN ELECTRIC SUBMERSIBLE PUMP AT BEST EFFICIENCY POINT UNDER VARIOUS SPEEDS

机译:各种速度下潜水电泵最佳效率点的压力脉动研究

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Fluctuating pressures can induce vibration in the Electric Submersible Pump (ESP) and severely affect the pump components. The installation depths of ESP systems are varying from a few meters to several hundred meters. Once installed ESPs are not accessible for diagnostic measurement and maintenance activity, so it becomes necessary to obtain detailed information of mean and fluctuating pressures to attain an optimal pressure distribution inside the pump. In this paper the results obtained from an experimental investigation of stage-wise pressure pulsation at Best Efficiency Points at various speeds are presented. Tests were conducted on a five stage ESP having impellers of 121 mm diameter and 14 mm width at outlet with impeller of 8 vanes and a diffuser-return channel of 6 vanes which delivers 7 lps (litres per second) and develop 60 m total head at various speeds. Unsteady pressure signals were captured by mounting piezoresistive transducers at each stage of ESP. Captured pressure signals were converted into frequency domain to analyze the characteristics of pressure pulsation. The results have indicated that the maximum amplitude of pressure pulsation was obtained at the highest operating speed setting of 60 Hz at stage 4. The normalized frequency at which this amplitude was maximum was highest at stage 2 at all the speeds.
机译:压力波动会在潜水电泵(ESP)中引起振动,并严重影响泵的组件。 ESP系统的安装深度从几米到几百米不等。一旦安装的ESP无法用于诊断测量和维护活动,因此变得有必要获取平均压力和波动压力的详细信息,以实现泵内的最佳压力分布。本文介绍了在不同速度下,在最佳效率点对阶段性压力脉动进行实验研究的结果。测试在五级ESP上进行,该ESP的叶轮出口直径为121毫米,叶轮宽度为14毫米,叶轮为8个叶片,扩散器-回流通道为6个叶片,可输送7 lps(升/秒),并在60毫米处发展总压头各种速度。通过在ESP的每个阶段安装压阻传感器捕获不稳定的压力信号。将捕获的压力信号转换为频域,以分析压力脉动的特征。结果表明,在阶段4的最高运行速度设置为60 Hz时,获得了压力脉动的最大振幅。在所有速度下,阶段2的振幅最大的归一化频率最高。

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