迷宫式密封
转子动力学
计算流体力学
转子(电动)
涡轮机械
泄漏(经济)
机械工程
涡轮机
振动
气体压缩机
工程类
涡轮
方位(导航)
流量(数学)
印章(徽章)
工作(物理)
机械
计算机科学
汽车工程
航空航天工程
声学
物理
经济
人工智能
视觉艺术
艺术
宏观经济学
作者
Toshio Hirano,Zhiwei Guo,R. G. Kirk
摘要
Labyrinth seals are used in various kinds of turbo machines to reduce internal leakage flow. The working fluid, or the gas passing through the rotor shaft labyrinth seals, often generates driving force components that may increase the unstable vibration of the rotor. It is important to know the accurate rotordynamic force components for predicting the instability of the rotor-bearing-seal system. The major goals of this research were to calculate the rotordynamic force of a labyrinth seals utilizing a commercial CFD program and to further compare those results to an existing bulk flow computer program currently used by major US machinery manufacturers. The labyrinth seals of a steam turbine and a compressor eye seal are taken as objects of analysis. For each case, a 3D model with eccentric rotor was solved to obtain the rotordynamic force components. The leakage flow and rotor dynamics force predicted by CFX TASCFlow are compared with the results of the existing bulk flow analysis program DYNLAB. The results show that the bulk flow program gives a pessimistic prediction of the destabilizing forces for the conditions under investigation. Further research work will be required to fully understand the complex leakage flows in turbo machinery.
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