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Numerical characteristics of a centrifugal compressor with a low flow coefficient

机译:低流量系数的离心压缩机的数值特性

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The study presents the simulation results of the viscid gas flow in low flow coefficient centrifugal compressor stages. The problem is solved in a stationary formulation using the Ansys CFX software package. The numerical simulation is carried out on three ultrahigh-pressure model stages; two stages have blades of the classical type impeller and one stage is of the bodily type. The value of the conditional flow coefficient is 0.0063 to 0.015. As part of the study, block-structured design meshes are used for all gas channel elements, with their total number being equaled as 13–15 million. During the calculations a numerical characteristic was validated with the results of tests carried out at the Department of Compressor, Vacuum and Refrigeration Engineering of Peter the Great St. Petersburg Polytechnic University. With an increase of inlet pressure as a result of a numerical study, it was found that for a given mathematical model the disk friction and leakage coefficient (1 + βfr + βlk) is overestimated. The analysis of flow in labyrinth seals has shown an increase of total temperature near the discs by 30–50 °С, nevertheless this fact did not influence gas parameters in the behind-the-rotor section. The calculation data obtained with finer design mesh (the first near-wall cell was 0.001 mm) is identical to those obtained with the first near-wall cell 0.01 mm mesh.
机译:该研究给出了低流量系数离心压缩机级中粘性气体流动的模拟结果。使用Ansys CFX软件包以固定配方解决了该问题。在三个超高压模型阶段进行了数值模拟。两级装有经典型叶轮的叶片,一级是主体型的。条件流量系数的值为0.0063至0.015。作为研究的一部分,块结构设计网格用于所有气体通道元素,其总数等于13–15百万。在计算过程中,通过彼得大彼得堡理工大学压缩机,真空和制冷工程系进行的测试结果验证了数值特性。数值研究表明,随着入口压力的增加,发现对于给定的数学模型,圆盘摩擦和泄漏系数(1 +βfr+βlk)被高估了。迷宫式密封件中的流动分析表明,圆盘附近的总温度增加了30–50°С,尽管如此,这一事实并未影响转子后段的气体参数。使用更精细的设计网格(第一近壁单元为0.001 mm)获得的计算数据与使用第一近壁单元0.01 mm网格获得的计算数据相同。

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