首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental Investigation of the Transient Patterns and Pressure Evolution of Tip Leakage Vortex and Induced-Vortices Cavitation in an Axial Flow Pump
【24h】

Experimental Investigation of the Transient Patterns and Pressure Evolution of Tip Leakage Vortex and Induced-Vortices Cavitation in an Axial Flow Pump

机译:尖端泄漏涡流瞬态图案和压力演化的实验研究,轴流泵中诱导涡流空化

获取原文
获取原文并翻译 | 示例
           

摘要

Cavitating flow is extremely complex in axial and mixed flow pumps, resulting in several adverse effects on pump performance. In this paper, the tip leakage vortex (TLV) cavitation patterns in an axial flow pump model were studied based on high-speed photography and transient pressure measurements. The TLV cavitation morphology and transient development of the induced suction-side-perpendicular cavitating vortices (SSPCVs) were investigated at multi-operating conditions. The time-domain of the transient pressure was employed to clarify the relationship between the tip cavitation and the pressure field. The results showed that cavitation inception occurred earlier with an unstable TLV cavitation shape at part-load conditions. Cavitation was more intense with a decrease of the cavitation number, presenting a larger area of triangular cavitation with the shedding of SSPCV. The inception of SSPCV was attributed to the tail of the shedding cavitation cloud originally attached to the suction surface (SS) of the blade, moving in the direction of the adjacent blade perpendicular to the SS, resulting in a flow blockage. With a further decrease in pressure, the SSPCVs grew in size and strength, accompanied by a rapid degradation in performance of the pump. The cavitation images and the corresponding circumferential pressure distributions showed that the lowest pressure point coincided with the SS corner. After this position, the pressure fluctuated as the cavitation intensity changed. The transient characteristics of SSPCV are a basis for revealing the instability mechanism of its evolution in the axial flow pump.
机译:在轴向和混合流动泵中,空化流量非常复杂,导致泵性能的几个不利影响。本文基于高速摄影和瞬态压力测量研究了轴流泵模型中的尖端泄漏涡流(TLV)空化图案。在多功能条件下研究了诱导的吸入侧垂直空腔涡流(SSPCVS)的TLV空化形态和瞬态发展。采用瞬态压力的时域来阐明尖端空化与压力场之间的关系。结果表明,在部分负载条件下具有不稳定的TLV空化形状之前发生空化初始化。空化率更加强烈,随着空化数减小,呈现出较大的三角空心的脱落的SSPCV。 SSPCV的初始归因于最初连接到刀片的吸入表面(SS)的脱落空化云的尾部,沿垂直于SS的相邻刀片的方向移动,从而导致流量堵塞。随着压力的进一步降低,SSPCVS的尺寸和强度增长,伴随着泵的性能的快速降解。空化图像和相应的圆周压力分布表明,最低压力点与SS角一致。在该位置之后,随着空化强度的变化而波动的压力波动。 SSPCV的瞬态特性是揭示其在轴向流动泵中的输出的不稳定机制的基础。

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