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EVALUATION OF AXIAL COMPRESSOR CHARACTERISTICS UNDER OVERSPRAY CONDITION

机译:超喷条件下轴流压气机特性的评估

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An axial compressor was developed for an industrial gas turbine equipped with a water atomization cooling (WAC) system, which is a kind of inlet fogging technique with overspray. The compressor performance was evaluated using a 40MW-class test facility for the advanced humid air turbine system. A prediction method to estimate the effect of WAC was developed for the design of the compressor. The method was based on a streamline curvature (SLC) method implementing a droplet evaporation model. Four test runs with WAC have been conducted since February 2012. The maximum water mass flow rate was 1.2% of the inlet mass flow rate at the 4th test run, while the design value was 2.0%. The results showed that the WAC decreased the inlet and outlet temperatures compared with the DRY (no fogging) case. These decreases changed the matching point of the gas turbine, and increased the mass flow rate and the pressure ratio by 1.8% and 1.1%, respectively. Since prediction results agreed with the results of the test run qualitatively, the compressor performance improvement by WAC was confirmed both experimentally and analytically. The test run with the design water mass flow rate is going to be conducted in the near future.
机译:为配备有水雾化冷却(WAC)系统的工业燃气轮机开发了轴流式压缩机,这是一种具有过喷的入口雾化技术。使用40MW级测试设施对先进的湿式风力涡轮机系统进行评估压缩机性能。为压缩机设计开发了估计WAC效果的预测方法。该方法基于实施液滴蒸发模型的流线曲率(SLC)方法。自2012年2月以来已经进行了与WAC的四次试运行。第四次试验运行时,最大水质量流量为入口质量流量的1.2%,而设计值为2.0%。结果表明,与干燥(无雾化)情况相比,WAC降低了入口和出口温度。这些降低改变了燃气轮机的匹配点,并分别增加了质量流量和压力比率1.8%和1.1%。由于预测结果与试验结果同意的预测结果定性,因此通过实验和分析证实了WAC的压缩机性能改善。随着设计水质流量的试验将在不久的将来进行。

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