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首页> 外文期刊>Journal of Mechanical Science and Technology >Secondary flow control using endwall jet fence in a high-speed compressor cascade
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Secondary flow control using endwall jet fence in a high-speed compressor cascade

机译:在高速压缩机级联中使用端壁喷射栅栏的二次流量控制

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AbstractThis paper proposes a secondary flow control concept using Endwall jet fence (EJF). A parametric investigation concerning the variations of the jet location along the axial and pitch-wise direction as well as the skew angle is conducted numerically to validate the potential of EJF in a high-speed compressor cascade with an inlet Mach number of 0.67. And then the interaction mechanisms between the EJF and the endwall secondary flow are discussed in detail. The results show that the EJF could reduce the corner separation and losses significantly by inputting transverse momentum component, inducing a concentrated jet vortex to block the pitch-wise migration of the passage vortex as well as enhancing the energy exchange between the endwall boundary layer and the mainstream. The jet location and the skew angle are important for the influence of EJF on the cascade performance. In this work, a maximum total pressure loss reduction of 11.6 % is obtained by the EJF located at 30 % of the axial chord and 10 % of the pitch with a skew angle ofβ= 40°, whereas the jet-to-inflow mass flow ratio is only about 0.4 %, validating the high efficiency of this flow control concept. For the off-design points, the EJF also shows appreciable potential on the endwall secondary flow control and loss reduction.]]>
机译:<![CDATA [<标题>抽象 ara>本文提出了使用ENDWALL喷射栅栏(EJF)的二次流量控制概念。在数量上进行有关沿轴向和俯仰方向的喷射位置的变化的参数研究,以数值方式进行以验证EJF在高速压缩机级联中的电位,其中入口MACH数为0.67。然后详细讨论EJF和Endwall二次流程之间的相互作用机制。结果表明,EJF通过输入横向动量部件,诱导浓缩射流涡流来阻止通道涡流的俯仰迁移以及增强端壁边界层之间的能量交换以及增强端壁边界层之间的能量交换以及增强端壁边界层之间的能量交换的拐角分离和损失主流。喷射位置和歪斜角对于EJF对级联性能的影响很重要。在这项工作中,通过位于轴向弦的30%的EJF获得11.6%的最大总压力损失减少,并且具有<重点类型=“斜体”>ββ的倾斜角度的10% = 40°,而射流流入质量流量比仅为0.4%,验证该流量控制概念的高效率。对于非设计点,EJF还对端壁二次流量控制和损耗减少的显着潜力。]>

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