高压比离心压气机叶轮流动及扩压器出口宽度变化对性能影响的数值分析

Amjid Khan, Tariq Ullah
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引用次数: 2

摘要

本文对涡轮增压器高压比离心压气机叶轮进行了全面的数值研究。目的是利用(3D)数值模拟研究不同质量流量对从失速到阻塞的压力比和效率的影响。本文以德国航空航天中心(DLR)研制的SRV2跨音速压气机为试验用例。采用基于Reynolds平均Navier-Stokes (RANS)的k- ε模型对湍流进行了数值模拟。对于边界附近的结构化网格,y +保持为35。在第一部分中,以50,000 1/min的设计速度进行计算,研究ANSYS CFX在设计过程中的适用性,并将结果与实验数据和其他四种(3D)求解器进行比较。数值模拟结果表明,ANSYS CFX对该压气机实验数据的预测误差超过9%。第二部分描述了在设计高转速下,无叶扩压器出口宽度对离心压缩机性能参数的影响,表明减小无叶扩压器出口宽度可以提高压比、等熵效率和从失速到窒息的运行范围。关键词:离心式压缩机,扩散器出口宽度,数值模拟,熵生成,跨声速,压力,效率,性能,压力比
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis of Flow through High Pressure Ratio Centrifugal Compressor Impeller and Effect of Varying Diffuser Exit Width on Performance
This paper carries out a comprehensive numerical investigation of turbocharger high-pressure ratio centrifugal compressor impeller. The aim is to study the effect of varying mass flow rate on the pressure ratio and efficiency from stall to choke using (3D) numerical simulations. The transonic SRV2 compressor developed by DLR (German Aerospace Center) has been used as the test case in this study. Numerical simulations have been performed using Reynolds Averaged Navier-Stokes (RANS) based k-ɛ model to predict turbulence. Y-plus is kept 35 for the structured mesh near the boundaries. In first part, calculations were carried out for design speed of 50,000 1/min to study the suitability of ANSYS CFX in the design procedure and compared the results with experimental data and four other (3D) solvers. The numerical simulations showed that ANSYS CFX over predicts the experimental data by 9% in this compressor. The second part describes the effect of vaneless diffuser exit width on performance parameters of centrifugal compressor at design high rotational speed, which shows that decreasing vaneless diffuser exit width increases pressure ratio, isentropic efficiency and operating range from stall to choke. Keywords— Centrifugal compressor, Diffuser Exit width, Numerical simulations, Entropy generation, Transonic, Pressure, Efficiency, Performance, Pressure ratio
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