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CFD APPLICATIONS TO INDUSTRIAL CENTRIFUGAL COMPRESSOR DESIGN

机译:CFD在工业离心压缩机设计中的应用

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The aerodynamic redesign of an industrial transonic centrifugal impeller by means of CFD techniques is presented here. The computational procedure was validated by comparing numerical predictions of efficiency and work input coefficient to data from experimental tests on two different typologies of impellers: a low flow coefficient subsonic radial impeller and a high flow coefficient one. Three-dimensional, fully viscous computations were used to investigate the transonic impeller aerodynamic performance in terms of both the characteristic curves and details of the flow structure, suggesting possible improvements in the design. In order to standardize the redesign process of 3D impellers, a number of geometrical parameters, capable of describing the main features of the geometry, were identified. The original configuration was modified by varying the values of such parameters, and the impact of changes was assessed by means of 3D computations. As a result, the designer would be able to recognize which parameters have greater influence, and understand the physical effect of each change. This made it possible to establish some design rules to be exploited in future design processes.
机译:本文介绍了通过CFD技术对工业跨音速离心叶轮进行的空气动力学重新设计。通过将效率和功输入系数的数值预测与叶轮的两种不同类型的实验测试数据进行比较,验证了该计算程序的有效性:两种类型的叶轮:低流量系数亚音速径向叶轮和高流量系数叶轮。三维全粘性计算用于研究跨音速叶轮的空气动力学性能,包括特性曲线和流场结构细节,这表明设计可能有所改进。为了使3D叶轮的重新设计过程标准化,确定了一些能够描述几何形状主要特征的几何参数。通过更改此类参数的值来修改原始配置,并通过3D计算评估更改的影响。结果,设计人员将能够识别出哪些参数具有更大的影响力,并了解每次更改的物理效果。这样就可以建立一些设计规则,以供将来的设计过程中使用。

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