首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Influence of endwall slotted injection on performance and flow physics in a compressor cascade
【24h】

Influence of endwall slotted injection on performance and flow physics in a compressor cascade

机译:端壁开槽注射喷射对压缩机级联性能和流量物理的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Air injection is an effectively methodology to suppress flow separation and to improve blade loading of airfoils and compressors. In order to remove corner separations in a cascade, investigation of endwall slotted injection was carried out numerically in this study. Based on endwall slot schemes of other flow control methods, six different endwall slots were designed, aiming at revealing the axial location effect and pitchwise location effect. For each endwall slot, numerical simulations were performed with six different injection directions to uncover the injection direction effect. Results showed that endwall slotted injection can effectively remove the corner separation. The overall loss coefficient and endwall loss coefficient of the cascade were reduced by 10.3% and 36.8% at most, respectively. Injection from leading edge and mid-chord can reduce endwall loss; however, the optimal axial location of endwall slot is near the trailing edge, where the corner separation is located. Different with other flow control methods, in general, the optimal pitchwise location of endwall slot is not close to suction surface but 0.16 pitch away from it. Injection near the suction surface is more sensitive to injection direction compared with injection at 0.16 pitch away from suction surface. Injection with velocity components both downstream and toward suction surface promises optimal control effect on corner separation. However, at mid-span, trailing edge separation is deteriorated and the flow turning angle is reduced, the flow mechanism being that the low-momentum fluid migrates along spanwise.
机译:空气喷射是一种有效的方法来抑制流动分离,并改善翼型和压缩机的叶片装载。为了去除级联中的角分离,在本研究中对端壁开槽注射的研究进行了研究。基于其他流量控制方法的端壁槽方案,设计了六个不同的端壁槽,旨在揭示轴向位置效应和俯仰位置效果。对于每个端壁槽,用六种不同的喷射方向执行数值模拟,以揭示注射方向效果。结果表明,端壁开槽注入可以有效地除去角分离。级联的整体损失系数和端壁损耗系数分别降低了10.3%和36.8%。从前缘和中间弦中注射可以减少端壁损失;然而,端壁槽的最佳轴向位置位于后缘附近,其中角分离位于拐角处。与其他流量控制方法不同,一般而言,端壁槽的最佳触头位置不接近抽吸表面,但远离抽吸表面。在抽吸表面附近注射对注射方向更敏感,与喷射在抽吸表面的0.16间距时更敏感。用下游和吸入表面的速度分量注射,对角分离产生最佳控制效果。然而,在中间,后缘分离劣化并且流动转向角度降低,流动机构是低动量流体沿跨部迁移。

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