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A Study on Matching Between Centrifugal Compressor Impeller and Low Solidity Diffuser and Its Extension to Vaneless Diffuser

机译:离心式压缩机叶轮与低固度扩散器的匹配研究及其向无叶扩散器的扩展

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摘要

A centrifugal compressor requires a wide operating range as well as a high efficiency. At high pressure ratios, the impeller discharge velocity becomes transonic and effective pressure recovery in a vaned or vaneless diffuser is necessary. At high pressure ratios, a vaned diffuser is used as it has high pressure recovery, but may have a narrow operating range. At low flow, diffuser stall may trigger surge. At high flow, choking in the throat of the vanes may limit the maximum flow rate. A low solidity diffuser allows a good pressure recovery because it has vanes to guide the flow and a wide operating range as there is no geometrical throat to limit the maximum flow. In experimental studies at a pressure ratio around 4:1, the author has replaced vaned diffusers with a range of low solidity diffusers to try to broaden the operating range. The test results showed that the low solidity diffuser also chokes. In this paper, a virtual throat is defined and its existence is confirmed by flow visualization and pressure measurements. A method to select low solidity diffusers is proposed based on test data and the fundamental nature of the flow. The extension of the proposed method to the selection of a vaneless diffuser is examined and a design approach for a vaneless diffuser system to minimize surge flow rate without limiting the attainable maximum flow rate is proposed.
机译:离心压缩机需要宽的工作范围以及高的效率。在高压力比下,叶轮的排出速度变为跨音速的,需要在叶片式或无叶片式扩压器中进行有效的压力恢复。在高压力比下,使用带叶片的扩散器,因为它具有较高的压力恢复能力,但操作范围可能较窄。在低流量时,扩压器失速可能触发喘振。在高流量下,导叶喉部的阻塞可能会限制最大流量。低密度扩散器具有良好的压力恢复能力,因为它具有导流叶片,并且操作范围广,因为没有几何形状的喉咙限制最大流量。在压力比约为4:1的实验研究中,作者已将叶片式扩散器替换为一系列低密度扩散器,以尝试扩大操作范围。测试结果表明,低密度扩散器也会阻塞。在本文中,定义了虚拟喉咙,并通过流量可视化和压力测量来确认其存在。根据试验数据和流动的基本特性,提出了一种选择低固相扩散器的方法。研究了所提出的方法对无叶扩散器的选择的扩展,并提出了一种无叶扩散器系统的设计方法,该方法可在不限制可达到的最大流量的情况下最小化喘振流量。

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