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Controlling a rabbet load and air/oil seal temperatures in a turbine

机译:控制涡轮中的齿槽负荷和空气/油封温度

摘要

During a standard fired shutdown of a turbine, a loaded rabbet joint between the fourth stage wheel and the aft shaft of the machine can become unloaded causing a gap to occur due to a thermal mismatch at the rabbet joint with the bearing blower turned on. An open or unloaded rabbet could cause the parts to move relative to each other and therefore cause the rotor to lose balance. If the bearing blower is turned off during a shutdown, the forward air/oil seal temperature may exceed maximum design practice criterion due to “soak-back.” An air/oil seal temperature above the established maximum design limits could cause a bearing fire to occur, with catastrophic consequences to the machine. By controlling the bearing blower according to an optimized blower profile, the rabbet load can be maintained, and the air/oil seal temperature can be maintained below the established limits. A blower profile is determined according to a thermodynamic model of the system.
机译:在涡轮机的标准点火关闭期间,在第四级轮和机器的后轴之间的已加载的榫槽接头可能会卸荷,由于在轴承鼓风机打开的情况下,由于榫槽接头处的热不匹配,导致出现间隙。开放的或未加载的槽口可能导致零件彼此相对移动,从而导致转子失去平衡。如果在停机期间关闭轴承鼓风机,则由于“回热”,向前的空气/油封温度可能会超过最大设计实践标准。空气/油封温度超过设定的最高设计极限可能会导致轴承起火,并对机器造成灾难性后果。通过根据优化的鼓风机轮廓控制轴承鼓风机,可以保持齿槽负荷,并且可以将空气/油封温度保持在设定的极限以下。鼓风机的轮廓根据系统的热力学模型确定。

著录项

  • 公开/公告号US6379108B1

    专利类型

  • 公开/公告日2002-04-30

    原文格式PDF

  • 申请/专利权人 GENERAL ELECTRIC COMPANY;

    申请/专利号US20000635086

  • 发明设计人 MARK CHRISTOPHER SCHMIDT;

    申请日2000-08-08

  • 分类号F01D50/80;

  • 国家 US

  • 入库时间 2022-08-22 00:47:54

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