首页> 外文会议>Asia-Pacific Power and Energy Engineering Conference;APPEEC 2009 >Analysis of Complex Flows in the Whole Passage of an Axial Flow Pump
【24h】

Analysis of Complex Flows in the Whole Passage of an Axial Flow Pump

机译:轴流泵全流道中的复杂流分析

获取原文

摘要

To systematically study the spatial flow characteristics inside an axial flow pump, based on three-dimensional Navier- Stokes governing equation and renormalization group(RNG) k-epsiv model, computational fluid dynamics (CFD) work on rotating turbulent flows with complicated curved boundaries was practiced. Unstructured meshes and the semi-implicit method for pressure linked equation (SIMPLE) algorithm were adopted. Major attentions were placed on pressure distribution in inlet, impeller and vane zones under design operation condition. Three viewpoints are obtained. (1) From blade inlet to outlet, hydrostatic pressure decreases firstly and then increases on suction surface. On pressure surface, hydrostatic pressure increases radially from hub to tip. The total pressure on suction surface is obviously lower than that on pressure surface. (2) The lowest pressure appears near the leading edge of suction surface, approaching the blade tip, where cavitation occurs with great possibility.(3) From inlet to outlet of vane passage, there is no pressure lower than critical cavitation pressure and hydrostatic pressure increase along the bulk flow direction. Numerical simulation result here can be referred in axial flow impeller design and relevant flow analysis.
机译:为了系统地研究轴流泵内部的空间流动特性,基于三维Navier-Stokes控制方程和重归一化组k-epsiv模型,对具有复杂弯曲边界的旋转湍流进行了计算流体动力学(CFD)工作。练习。采用非结构网格和压力隐式方程的半隐式方法(SIMPLE)。在设计运行条件下,重点放在入口,叶轮和叶片区域的压力分布上。得到三个观点。 (1)从叶片的入口到出口,静水压力先减小,然后在吸力面上增大。在压力面上,静水压力从毂到尖端径向增加。吸入面上的总压力明显低于加压面上的总压力。 (2)最低压力出现在吸力面的前缘附近,靠近叶片尖端,极有可能发生气穴现象。(3)从叶片通道的入口到出口,没有低于临界气穴压力和静水压力的压力。沿整体流动方向增加。此处的数值模拟结果可用于轴流式叶轮设计和相关的流量分析。

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