火用
可用能
气体压缩机
离心式压缩机
蜗壳
气流
环境科学
空气压缩机
工艺工程
材料科学
叶轮
机械工程
工程类
作者
Emrehan Gürsoy,Engin Gedik,Aleksandar G. Georgiev,Ali Keçebaş,Hüseyin Kurt
标识
DOI:10.1007/s10973-024-12921-2
摘要
Abstract In this study, the thermodynamic performance of a real operating three-stage turbo/centrifugal type main air compressor for the air separation unit in an iron-steel industry was evaluated using both conventional and enhanced exergy analyses. Furthermore, the interaction and the potential for improvement of system components at two different airflow rates, 210,000 Nm 3 h −1 and 240,000 Nm 3 h −1 , were investigated under real operating conditions. The results indicated that the conventional exergy analysis of the system yields efficiency rates of approximately 21.3% and 25.0% for these airflow rates, respectively. It was found that implementing operating conditions proposed by the enhanced exergy analysis could increase the system’s exergy efficiency to about 40.8% and 80.7%, respectively. The primary causes of exergy destruction in the compressor are generally attributed to frictions occurring in the impeller, diffuser, and volute, as well as shock waves and air circulation during the compression process. It was observed that system efficiency could potentially increase to 80.7% with improvements in compressors and pump. The study also determined that enhanced exergy analysis is beneficial for identifying losses in system components and is seen as a tool that complements conventional exergy analysis.
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