首页> 外文会议>2015 International Conference on Sustainable Energy Engineering nd Application >Numerical simulation of the effect of flow direction angle at inlet boundary condition on flow characteristics and performance of axial flow hydraulic propeller turbine runner
【24h】

Numerical simulation of the effect of flow direction angle at inlet boundary condition on flow characteristics and performance of axial flow hydraulic propeller turbine runner

机译:流动方向角度在入口边界条件下的数值模拟对轴流液压螺旋桨涡轮流动特性及性能的数值模拟

获取原文

摘要

The flow behaviour and performance of designed axial flow hydraulic propeller turbine runner were analyzed using computational fluid dynamics (CFD). Numerical simulations were performed in three dimensional computational domain and steady-state type analysis using commercial software ANSYS CFX. The axisymmetric condition of runner and shroud can be simplified by only solving one blade passage in multiple identical regions. In the present simulations, guiding vane which has the main function to adjust turbine load was not modeled, but several flow direction angles at inlet boundary condition were used to direct the flow that enters the domain so the main function of guiding vane can be obtained. The runner rotates at constant rotational speed of 200 rpm. The numerical simulations were carried out for eleven flow direction angles from 60° to 80° with an increment of 2° from tangential direction, specified at inlet boundary condition to see its effects on flow characteristic, such as velocity, pressure, and turbine performance. At flow direction angles of 60°, 70°, and 80°, the resulting torque were 39.457 N.m, 84.523 N.m, and 129.828 N.m respectively, and the resulting power were 828.606 W, 1774.987 W, and 2726.388 W respectively. As the flow direction angle at inlet boundary condition increases, the torque increases. Greater torque leads to increased power.
机译:利用计算流体动力学(CFD)的流动特性和设计轴流螺旋桨液压水轮机转轮的性能进行了分析。数值模拟采用商业软件ANSYS CFX三维计算域和稳态型分析来进行。转轮和护罩的轴对称条件可以通过仅解决多个相同区域中的一个叶片通道被简化。另外,在本模拟中,导向叶片,其具有的主要功能来调整涡轮机负载未建模,但在入口边界条件几个流动方向角,用来引导进入所以能够得到导向叶片的主要功能域的流动。以200rpm的转速恒定的转轮旋转。数值模拟是从60°至80°为2的增量°从切线方向进行11流动方向的角度,在入口边界条件中指定以查看其上流量特性的影响,如速度,压力,和涡轮机性能。在60流动方向角°,70°和80°,所得到的转矩分别为39.457牛米,84.523牛米,和129.828牛米分别,并将得到的功率分别为828.606 W,1774.987 W,和2726.388 W上。如在入口边界条件增加时,扭矩增大的流动方向的角度。更大的扭矩导致增加的动力。

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