首页> 外文期刊>Flow, Turbulence and Combustion >Application of a Synthetic Jet to Control Boundary Layer Separation under Ultra-High-Lift Turbine Pressure Distribution
【24h】

Application of a Synthetic Jet to Control Boundary Layer Separation under Ultra-High-Lift Turbine Pressure Distribution

机译:合成射流在超高速涡轮压力分布控制边界层分离中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

The transition and separation processes of the boundary layer developing on a flat plate under a prescribed adverse pressure gradient typical of Ultra-High-Lift low-pressure turbine profiles have been investigated, with and without the application of a synthetic jet (zero net mass flow rate jet). A mechanical piston has been adopted to produce an intermittent flow with zero net mass flow rate. The capability of the device to suppress or reduce the large laminar separation bubble occurring under steady inflow condition at low Reynolds numbers has been experimentally investigated by means of hot-wire measurements. Wall static pressure measurements complement the hot-wire time-resolved velocity results. The paper reports the investigations performed for both steady and controlled conditions. The active device is able to control the laminar separation bubble induced at low Reynolds number conditions by the strong adverse pressure gradient. An overall view of the time-dependent evolution of the controlled boundary layer is provided by the phase-locked ensemble averaging technique, triggered at the synthetic jet frequency. The separated flow transition process, which is detected for the uncontrolled condition, is modified by the synthetic jet in different ways during the blowing and suction phases. Overall, the phase-locked velocity distributions show a reduced separated flow region for the whole jet cycle as compared to the uncontrolled condition. The phase-locked distributions of the random unsteadiness allow the identification of vortical structures growing along the shear layer mainly during the blowing phase.
机译:研究了在有和没有施加合成射流(零净质量流量)的情况下,在超高升速低压涡轮机典型的规定的不利压力梯度下在平板上形成的边界层的过渡和分离过程率喷射)。已采用机械活塞来产生零净质量流量的间歇流量。已经通过热线测量实验研究了该装置抑制或减少在稳定流入条件下以低雷诺数发生的大层流分离气泡的能力。墙体静压测量值补充了热线时间分辨速度结果。该论文报告了在稳定和受控条件下进行的调查。主动装置能够控制在低雷诺数条件下通过强的不利压力梯度引起的层流分离气泡。受控边界层随时间变化的整体视图由锁相合奏平均技术提供,并以合成射流频率触发。在鼓风和吸气阶段,合成射流会以不同的方式修改针对非受控状态检测到的分离流动过渡过程。总体而言,与不受控制的状态相比,锁相速度分布在整个射流循环中显示出减小的分离流动区域。随机不稳定的锁相分布使得可以确定主要在吹塑阶段沿剪切层生长的旋涡结构。

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