首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >UNSTEADY FLOW IN EXTRACTION MODULES OF INDUSTRIAL STEAM TURBINES
【24h】

UNSTEADY FLOW IN EXTRACTION MODULES OF INDUSTRIAL STEAM TURBINES

机译:工业汽轮机提取模块中的非恒定流动

获取原文

摘要

Industrial steam turbines are designed for application in power-, process- and chemical engineering. Particular modules ensure the optimum integration into power plants and other engineering processes. Extraction modules allow the controlled extraction of large steam quantities on certain and constant enthalpy levels. Valves regulate the amount of steam extracted from the turbine expansion path. Depending on the valve lift, different flow separation phenomena can occur peripherally inside the valves, causing undesired large unsteady fluid forces on the valve head and seat. Due to the compact design of the industrial steam turbines, these unsteady jets can influence the rotor dynamics as well as the blade loading of the adjacent stages. These fluctuations should be understood and avoided in order to enhance the reliability of steam turbines. In the present study the unsteady flow phenomena due to separation occurring circumferentially inside the valve of extraction modules are investigated numerically. First, the commercial 3D RANS CFD-solver (ANSYS CFX 14) is validated in the application to experimental results. Subsequently, the various flow patterns of the examined valve design are analyzed on a standalone numerical valve model in an extensive study. In order to assess the impact of these unsteady flow separations on other components, the complete extraction module is simulated in combination with the adjacent stages. The transient simulation results show pressure fluctuations downstream of the valves resulting in an unsteady load of the control valves, the shaft and the blading.
机译:工业蒸汽轮机设计用于动力,过程和化学工程。特殊的模块可确保与发电厂和其他工程流程的最佳集成。抽气模块允许以一定和恒定的焓水平控制抽出大量蒸汽。阀门调节从涡轮膨胀路径提取的蒸汽量。取决于气门升程,可能会在气门内部周围发生不同的分流现象,从而在气门头和阀座上产生不希望的大的不稳定流体力。由于工业蒸汽轮机的紧凑设计,这些不稳定的射流会影响转子动力学以及相邻级的叶片负载。应该理解并避免这些波动,以提高蒸汽轮机的可靠性。在本研究中,对由于萃取模块的阀门内周向发生分离而引起的非稳态流动现象进行了数值研究。首先,将商用3D RANS CFD求解器(ANSYS CFX 14)应用于实验结果中。随后,在广泛的研究中,在独立的数值阀模型上分析了所检查阀设计的各种流型。为了评估这些不稳定流动分离对其他组件的影响,将完整的提取模块与相邻阶段组合进行模拟。瞬态仿真结果表明,阀下游的压力波动会导致控制阀,轴和叶片的负载不稳定。

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