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Numerical and Experimental Study on Rotating Stall in Industrial Centrifugal Compressor

机译:工业离心压缩机旋转摊位的数值和实验研究

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Centrifugal compressors employed in the oil and gas industry are operated at high gas pressure conditions and are used in a wide operation range. Accurate prediction of the rotating stall and the destabilizing aerodynamic force is one of the key technologies for these compressors. The aim of this study is to establish a method of accurately predicting the inception of rotating stall and its effect on shaft vibration. To achieve this, numerical investigations are carried out by unsteady flow and rotordynamic simulations. To validate the accuracy, an experiment is carried out at relatively high gas pressure conditions. In the first part of the study, the accuracy of compressor performance prediction is studied by steady computational fluid dynamics (CFD) simulation. It is found that by taking the wall roughness effect into account, the predicted performance shows good agreement with the experimental result. In the second part of the study, the accuracy of predicting the rotating stall is studied. In the experiment, two types of rotating stalls are measured. One is a multiple-cell stall induced in the vaneless diffuser and the other is a one-cell stall induced in the impeller. It is found that the simulation can predict the inception of the rotating stall with relatively high accuracy as the predicted results show good agreement with the experimental results in terms of cell count, rotation speed, pressure fluctuation level, and the effect on shaft vibration. Through this study, the effectiveness of simulation is validated for the stall and vibration prediction.
机译:石油和天然气工业中使用的离心压缩机在高气体压力条件下操作,并在宽的操作范围内使用。精确预测旋转失速和稳定的空气动力力是这些压缩机的关键技术之一。本研究的目的是建立一种准确地预测旋转失速初始的方法及其对轴振动的影响。为此,通过不稳定的流量和旋转动力模拟进行数值调查。为了验证准确性,在相对高的气体压力条件下进行实验。在该研究的第一部分中,通过稳定的计算流体动力学(CFD)模拟研究了压缩机性能预测的准确性。结果发现,通过考虑到墙壁粗糙度效应,预测性能与实验结果表现出良好的一致性。在研究的第二部分中,研究了预测旋转失速的准确性。在实验中,测量两种类型的旋转失速。一个是在无差漫射器中引起的多电池档,另一个是在叶轮中引起的单电池摊位。结果发现,随着预测结果表明,随着预测结果,在细胞计数,转速,压力波动水平和轴振动的影响方面,具有相对高的精度,仿真可以预测旋转失速的初始化。通过这项研究,验证了模拟的有效性,用于失速和振动预测。

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