首页> 外文会议>AIAA/ASME/SAE/ASEE joint propulsion conference exhibit >Analytical Approach for Quantifying the Working Potential of Blading with and without Casing Treatments
【24h】

Analytical Approach for Quantifying the Working Potential of Blading with and without Casing Treatments

机译:定量分析有无套管处理后的工作潜力的分析方法

获取原文

摘要

To improve the understanding of casing treatments and their working principle, performance and detailed flow measurements were carried out in a transonic compressor. For this purpose an axial slot casing treatment was applied to a datum configuration (Darmstadt Rotor-1). Both are additionally compared to a rotor having the same number of blades and identical blade angles but a tip section enhancement with a slight forward sweep and a smaller tip-gap. For each case corrected, lossless compressor maps are derived from the performance measurements. It shows that a reduction of blockage and the associated redistribution of massflow increases the work input. In particular, this holds true for the casing treatment configuration at massive throttled massflows. Additionally the test rig was analytically modeled to derive an ideal compressor map. Theses curves are compared against the experimental, corrected data. It is found that curve gradients match very well for the whole working range and different speedlines in the sub-and transonic regime. In contrast, total pressure ratio and work input are over predicted, whereby deviation is quite negligible. This is seen as an indication that also a real but idealized lossless blading does not use the full theoretical potential of work input. Consequently the quality of a blading is not only determined by the efficiency but also by the rate of actual to theoretical work input, especially in terms of blockage. In some cases the potential of conventional blading could even be exceeded by the use of casing treatments.
机译:为了提高对套管处理及其工作原理的了解,在跨音速压缩机中进行了性能和详细的流量测量。为此,将轴向槽套管处理应用于基准配置(Darmstadt Rotor-1)。两者都与具有相同叶片数和相同叶片角但叶尖截面增强,具有略微的前掠角和较小的叶尖间隙的转子进行了比较。对于每种情况,从性能测量中得出无损压缩机图。它表明减少堵塞和相关的质量流重新分配会增加功投入。尤其是在节流质量流量很大的情况下,套管处理配置也是如此。另外,对测试设备进行了分析建模,以得出理想的压缩机图。将这些曲线与实验的校正数据进行比较。发现在整个亚音速和跨音速状态下,曲线梯度对于整个工作范围和不同的速度线都非常匹配。相反,总压力比和功输入被过度预测,因此偏差可以忽略不计。这被认为是一个现实的但理想化的无损刀片也没有利用工作投入的全部理论潜能的迹象。因此,叶片的质量不仅取决于效率,还取决于实际工作量与理论工作量的比率,尤其是在堵塞方面。在某些情况下,使用套管处理甚至可以超过常规刮刀的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号