首页> 外文会议>ASME Fluids Engineering Division Meeting >INFLUENCE OF DESIGN PARAMETERS ON THE GLOBAL PERFORMANCES OF LOW-SPEED COUNTER-ROTATING AXIAL-FLOW FANS
【24h】

INFLUENCE OF DESIGN PARAMETERS ON THE GLOBAL PERFORMANCES OF LOW-SPEED COUNTER-ROTATING AXIAL-FLOW FANS

机译:设计参数对低速反旋转轴流风扇全球性能的影响

获取原文

摘要

The present work aims at experimentally investigating the effects of some parameters on the performances of a counter-rotating stage, and on the instationary flow between the rotors. Three counter-rotating fans, which have the same design point, have been designed. These systems differ by the distribution of the loading and of the ratio of angular velocity between the front rotor and the rear rotor. All the configurations have been tested in a normalized test rig, where the ratio of angular velocities and the axial distance between the two rotors can be varied. The influence of these parameters are then addressed by analysing the experimental results of the static pressure rise and static efficiency, as well as of the wall pressure fluctuations registered by a microphone at the wall. The three systems achieve the design point with a high efficiency. The counter-rotating systems lead to at least a 10 percentage points gain in static efficiency at the design flow rate, compared to the typical peak efficiency of a traditional rotor-stator stage. Meanwhile, counter-rotating systems display good working stabilities at very low volume flow rates. In addition, at the design speed ratio, the overall performance decreases almost monotonically with the axial distance. Nevertheless, an optimum in axial distance can be found for higher speed ratios. Finally, the investigations of the wall pressure fluctuations show that the amplitudes of power spectral density corresponding to the blade passing frequency of the rear rotor are significantly higher than that of the front rotor. The interaction peaks are also stronger for an equal distribution of the work on the two rotors.
机译:本工作旨在通过实验研究一些参数对反向旋转阶段的性能的影响,以及转子之间的处于处于处于的气流。设计了三种反向旋转风扇,具有相同的设计点。这些系统因装载的分布和前转子和后转子之间的角速度的分布而不同。所有配置都已在归一化的试验机中进行测试,其中可以改变角速度与两个转子之间的轴向距离的比率。然后通过分析静压上升和静力效率的实验结果,以及壁壁上登记的壁压波动的实验结果来解决这些参数的影响。三个系统以高效率实现设计点。与传统转子定子阶段的典型峰值效率相比,反向旋转系统以静电效率引入至少10个百分点的增益。同时,反向旋转系统以极低的体积流速显示出良好的工作稳定性。另外,在设计速比下,整体性能几乎在轴向距离下单调地减小。然而,可以找到轴向距离的最佳最佳比率。最后,壁压波动的研究表明,对应于后转子的叶片流频的功率谱密度的幅度显着高于前转子的功率谱密度。相互作用峰值对于两个转子上的工作的平等分布也更强。

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