压缩机叶轮等效砂粒粗糙度对离心压缩机低排放级特性的影响。数值分析

A. Yablokov, Y. Kozhukhov, N. Sadovsky
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引用次数: 1

摘要

给出了压缩机叶轮等效砂粒粗糙度对离心压缩机低排放中间型级特性影响的数值分析结果。低排放级广泛应用于高压压缩机的末级。该类型压缩机用于天然气注入以及生产甲醇、氨、高压聚乙烯等工艺。建立了低排放级运行效率低于中排放级的流道数学模型,并给出了低排放级试验结果。在文章的第二部分中,对叶轮所有内表面在不同等效砂粗糙度k值下的粘性气体流动进行了建模。n2理想气体被用作模拟介质。级入口的工作压力为4个大气压。得到了4种不同k值时的级特性,并对叶轮内的损失进行了评价。在低排放阶段的所有特征中,当k s值增大时,并没有观察到多向压头和效率系数的均匀减小。这些特性在高流量区要低得多,在最小流量区差别不大。内水头系数nt对k s的依赖性较低。条件流量系数的设计水头系数。K s为2·10 -6 m叶轮的内表面
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The influence of the equivalent sand roughness of compressor impeller on the characteristics of centrifugal compressor low-emission stage. a numerical analysis
The results of numerical analysis for the influence of the equivalent sand roughness of compressor impeller on the characteristics of centrifugal compressor low-emission intermediate type stage are presented . Low-emission stags are widely used in high-pressure compressors as the final stages . Compressors of the type are used for natural gas injection as well as in the production of methanol , ammonia , high pressure polyethylene and other processes . Operating ef ficiency of low-emission stages is lower than the one of medium - tificatio n of the mathematical model for the flow path is made and the results of low-emission stage tests are presented . In the second part of the article a modelling of a viscous gas flow under various values of equivalent sand roughness k s for all internal surfaces of the impeller is carried out . N 2 perfect gas is used as a medium for modelling . The operating pressure at the stage inlet is four atmospheres . The characteristics of the stage for four various values of k s are obtained and the losses in the impeller are evaluated . When the values of k s increase a uniform decrease of polytropic pressure head and efficiency coefficient are not observed for all characteristic of the low-emission stage . The characteristics are much lower in the high flow zones and do not differ greatly at minimum flow. The dependence of internal head coefficie nt on k s is low . of design head coefficient on conditional discharge coefficient. k s for the internal surfaces of the 2·10 -6 m impeller
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