AbstractThe article provides an overview of the developments by OAO NPO TsKTI aimed at improvement of components and assemblies of new-gener'/> Development of High-Powered Steam Turbines by OAO NPO Central Research and Design Institute for Boilers and Turbines
首页> 外文期刊>Thermal engineering >Development of High-Powered Steam Turbines by OAO NPO Central Research and Design Institute for Boilers and Turbines
【24h】

Development of High-Powered Steam Turbines by OAO NPO Central Research and Design Institute for Boilers and Turbines

机译:OAO NPO锅炉和水轮机中央研究设计院开发大功率蒸汽轮机

获取原文
获取原文并翻译 | 示例
           

摘要

AbstractThe article provides an overview of the developments by OAO NPO TsKTI aimed at improvement of components and assemblies of new-generation turbine plants for ultra-supercritical steam parameters to be installed at the power-generating facilities in service. The list of the assemblies under development includes cylinder shells, the cylinder’s flow paths and rotors, seals, bearings, and rotor cooling systems. The authors consider variants of the shafting–cylinder configurations for which advanced high-pressure and intermediate-pressure cylinders with reactive blading and low-pressure cylinders of conventional design and with counter-current steam flows are proposed and high-pressure rotors, which can increase the economic efficiency and reduce the overall turbine plant dimensions. Materials intended for the equipment components that operate at high temperatures and a steam cooling technique that allows the use of cheaper steel grades owing to the reduction in the metal’s working temperature are proposed. A new promising material for the bearing surfaces is described that enables the operation at higher unit pressures. The material was tested on a full-scale test bench at OAO NPO TsKTI and a turbine in operation. Ways of controlling the erosion of the blades in the moisture–steam turbine compartments by the steam heating of the hollow guide blades are considered. To ensure the dynamic stability of the shafting, shroud and diaphragm seals that prevent the development of the destabilizing circulatory forces of the steam flow were devised and trialed. Advanced instrumentation and software are proposed to monitor the condition of the blading and thermal stresses under transient conditions, to diagnose the vibration processes, and to archive the obtained data. Attention is paid to the normalization of the electromagnetic state of the plant in order to prevent the electrolytic erosion of the plant components. The instrumentation intended for monitoring the relevant electric parameters is described.
机译: 摘要 本文概述了OAO NPO TsKTI旨在改进用于新一代涡轮机的部件和组件的发展超超临界蒸汽参数将安装在运行中的发电设施上。正在开发的组件清单包括气缸壳,气缸的流路和转子,密封件,轴承以及转子冷却系统。作者考虑了轴-缸配置的变体,针对这些变体,提出了具有常规设计的带反应叶片和低压缸的先进高压和中压缸,以及具有逆流蒸汽流的高压缸和中压缸,并且可以增加高压转子经济效益和减小涡轮机整体尺寸。提出了用于高温下工作的设备部件的材料和蒸汽冷却技术,该技术由于降低了金属的工作温度而允许使用更便宜的钢种。描述了一种用于轴承表面的新的有希望的材料,该材料能够在较高的单位压力下运行。该材料在OAO NPO TsKTI的大型试验台和正在运行的涡轮机上进行了测试。考虑了通过中空导向叶片的蒸汽加热来控制湿汽轮机舱中叶片腐蚀的方法。为了确保轴系的动态稳定性,设计并尝试了防止蒸汽流不稳定循环力发展的护罩和隔膜密封。提出了先进的仪器和软件来监视瞬态条件下的叶片状况和热应力,诊断振动过程并存档获得的数据。注意防止设备电磁状态的正常化,以防止设备部件的电解腐蚀。描述了用于监视相关电气参数的仪器。

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