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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Lateral Equilibrium Position Analysis Program With Applications to Electric Submersible Pumps
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Lateral Equilibrium Position Analysis Program With Applications to Electric Submersible Pumps

机译:横向平衡位置分析程序及其在潜水电泵中的应用

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摘要

The long length of subsea electric submersible pumps (ESPs) requires a large amount of annular seals. Loading caused by gravity and housing curvature changes the static equilibrium position (SEP) of the rotor in these seals. This analysis predicts the SEP due to gravity and/or well curvature loading. The analysis also displays the rotordynamics around the SEP. A static and rotordynamic analysis is presented for a previously studied ESP model. This study differs by first finding the SEP and then performing a rotordynamic analysis about the SEP. Predictions are shown in a horizontal and a vertical orientation. In these two configurations, viscosities and clearances are varied through four cases: 1X 1cP, 3X 1cP, 1X 30cP, and 3X 30cP. In a horizontal, straight-housing position, the model includes gravity and buoyancy on the shaft. At 1cP-1X and 1cP-3X, the horizontal statics, show a moderate eccentricity ratio for the shaft with respect to the housing. With 30cP-1X, the predicted static eccentricity ratio is low at 0.08. With 30cP-3X, the predicted eccentricity ratio increases to 0.33. Predictions for a vertical case of the same model are also presented. The curvature of the housing is varied in the Y–Z plane until rub or close-to-wall rub is expected. The curvature needed for a rub with a 1X 1cP fluid is 7.5 deg of curvature. Curvature has little impact on stability. With both 1X 30cP and 3X 30cP, the maximum curvature for a static rub is over 25 deg of curvature. Both 1X 30cP and 3X 30cP remain unstable with increasing curvature.
机译:水下潜水电泵(ESP)的长距离需要大量的环形密封件。由重力和外壳曲率引起的负载会改变这些密封件中转子的静态平衡位置(SEP)。该分析预测了由于重力和/或井曲率载荷而引起的SEP。该分析还显示了SEP周围的转子动力学。对先前研究的ESP模型进行了静态和转子动力学分析。这项研究的不同之处在于,首先找到SEP,然后对SEP进行转子动力学分析。预测以水平和垂直方向显示。在这两种配置中,粘度和间隙在以下四种情况下变化:1X 1cP,3X 1cP,1X 30cP和3X 30cP。在水平的直壳体位置,模型包括轴上的重力和浮力。在1cP-1X和1cP-3X处,水平静力显示轴相对于壳体的偏心率适中。使用30cP-1X时,预测的静态偏心率较低,为0.08。使用30cP-3X时,预计的偏心率会增加到0.33。还提供了对相同模型的垂直案例的预测。外壳的曲率在Y–Z平面中变化,直到预计会发生摩擦或接近壁的摩擦为止。用1X 1cP流体摩擦所需的曲率是7.5°曲率。曲率对稳定性几乎没有影响。使用1X 30cP和3X 30cP时,静态摩擦的最大曲率超过25度。 1X 30cP和3X 30cP都随着曲率的增加而保持不稳定。

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