Numerical Analysis of the Flow Inside a Centrifugal Compressor’s Vaneless Diffuser and Volute

Hooman Rezaei, P. Haley, A. Engeda
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Abstract

The objective of this work was to perform numerical analysis of the flow inside a modified single stage CVHF 1280 Trane centrifugal compressor’s vaneless diffuser and volute. Gambit was utilized to read the casing geometry and generating the vaneless diffuser. An unstructured mesh was generated for the path from vaneless diffuser inlet to conic diffuser outlet. At the same time a meanline analysis was performed corresponding to speeds and mass flow rates of the experimental data in order to obtain the absolute velocity and flow angle leaving the impeller for those operating conditions. These values and experimental data were used as inlet and outlet boundary conditions for the simulations. Simulations were performed in Fluent 5.0 for three speeds of 2000, 3000 and 3497 RPM and mass flow rates of minimum, medium and maximum. Results are in good agreement with the experimental ones and present the flow structures inside the vaneless diffuser and volute.
离心压缩机无叶扩压器和蜗壳内流动的数值分析
本文的目的是对改进的单级CVHF 1280特灵离心压缩机无叶扩压器和蜗壳内的流动进行数值分析。Gambit用于读取套管几何形状并生成无叶扩压器。对无叶扩压器进口到圆锥扩压器出口的路径进行了非结构化网格划分。同时对实验数据的转速和质量流量进行平均线分析,得到各工况下离开叶轮的绝对速度和流动角。这些数值和实验数据作为进出口边界条件进行模拟。在Fluent 5.0中对2000、3000和3497 RPM三种转速和最小、中、最大质量流量进行了仿真。计算结果与实验结果吻合较好,给出了无叶扩压器和蜗壳内部的流动结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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