【24h】

Combating of the Solid Particle Erosion in a Steam Turbines

机译:打击汽轮机中的固体颗粒侵蚀

获取原文
获取原文并翻译 | 示例

摘要

The causes and possible solutions of solid particles erosion of the steam path components to reducing it substantially are presented. Applying numerical CFD simulations excessive solid particle erosion damage of the blades tenons, wheel filets, rotor labyrinth seals and main stop valves were studied and steam/solid particles flow conditions which play a main role in the erosion process determined. Afterwards, the flow was simulated introducing specific changes to the geometry of components in order to modify the flow pattern favourably. In each case analyzed, the results confirmed that is possible to reduce the erosion process significantly due to reduction of the volumetric flow rate and velocity of vapour (case of blade tenons), velocity reduction and to modify the angle of particle flow incidence on the surface by increasing the distance from the labyrinth seal to the rotor wheel (case of wheel filets) and flow velocity reduction due to incorporating a steam flow deflector to the diaphragm, which changing flow direction in the inlet zone to the rotor labyrinth seal channel (case of rotor labyrinth seal). In the case of the main steam valve, introducing profile off-set on the valve spherical surface, the steam/particle flow was separated from the valve critical zone, changing the particles trajectories and angle of impact on the surface, resulting in erosion rate reduction. Also, a passive methods of combating solid particle erosion of tenons in the form of weld deposits around them as a protective barrier and wheel filets, rotor labyrinth seals and blades and shrouds coating are presented. All analyzed design modifications and other improvements were implemented and its performance monitored.
机译:提出了固体颗粒侵蚀蒸汽通道组分以实质上减少蒸汽通道组分的原因和可能的解决方案。应用数值CFD模拟研究了叶片榫头,轮角,转子迷宫密封和主截止阀对固体颗粒的过度腐蚀破坏,并确定了在腐蚀过程中起主要作用的蒸汽/固体颗粒流动条件。此后,对流动进行了模拟,从而对组件的几何形状进行了特定的更改,以便更好地修改流动模式。在每种情况下分析的结果均证实,由于体积流量和蒸汽速度的降低(叶片榫的情况),速度降低以及改变表面上的颗粒流入射角,可以显着减少腐蚀过程通过增加从迷宫式密封件到转子轮的距离(轮辋的情况)和由于将蒸汽导流板结合到隔膜而导致流速降低,从而改变了进入转子迷宫式密封件通道的入口区域中的流向转子迷宫密封)。在主蒸汽阀的情况下,在阀球面上引入偏移的轮廓,将蒸汽/颗粒流与阀的临界区分开,从而改变了颗粒的轨迹和对表面的撞击角度,从而降低了腐蚀速率。此外,还提出了一种消灭榫头的固体颗粒侵蚀的被动方法,榫头周围的焊缝作为保护性障碍物和轮齿,转子迷宫式密封件以及叶片和外罩的涂层。实施所有分析的设计修改和其他改进,并监视其性能。

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