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Leakage performance of a novel turbomachinery shaft seal

机译:新型涡轮机械轴封的泄漏性能

摘要

Advanced sealing systems are needed to control parasitic leakage flows to achieve high turbine engine efficiency and low emissions. Typical extreme turbomachinery engine operating conditions when combined rotor excursions do not lend simple sealing solutions. This work presents an in-depth analysis of a novel robust yet simple sealing system that is capable of maintaining long life under high speed and high temperature operating conditions. The proposed seal design is actually a gas bearing that is carefully tailored, analyzed, and designed to function as a differential pressure seal. The design involves a simple rigid/semi-flexible seal ring that is attached to a stationary support plate via flexible metal cloth structure. The seal body is capable of moving under the effect of hydrodynamic lift force. Therefore, above a certain clearance limit, which ensures that asperity contact is avoided, the seal follows shaft excursions to avoid damaging hard rubs.
机译:需要先进的密封系统来控制寄生泄漏流,以实现高涡轮发动机效率和低排放。当组合的转子偏移不能提供简单的密封解决方案时,典型的极端涡轮机械发动机工况。这项工作对新型坚固而简单的密封系统进行了深入的分析,该系统能够在高速和高温操作条件下保持较长的使用寿命。提出的密封设计实际上是经过精心设计,分析和设计以用作压差密封的气体轴承。该设计涉及一个简单的刚性/半柔性密封环,该密封环通过柔性金属布结构连接到固定支撑板上。密封体能够在流体动力升力的作用下移动。因此,在一定的间隙极限以上(确保避免粗糙接触),密封件遵循轴偏移以避免损坏硬摩擦。

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