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Numerical Modeling of Dynamic Sealing Behaviors of Spiral Groove Gas Face Seals

机译:螺旋槽气端面密封动态密封行为的数值模拟

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摘要

A numerical model is developed for the dynamic analysis of gas lubricated spiral groove face seals. Effects of the rotor runout, misalignment, face contact, as well as the stiffness and damping of the secondary seal are considered. Seal axial and angular motions and key parameters such as torque, power loss, and flow rate are obtained by a global time integration scheme, which traces the time history of the dynamic sealing behaviors. The analysis of gas film lubrication, face contact, and the seal dynamics is cast as an inverse problem and the solution is obtained iteratively at each time step. Dynamic tracking motion and key sealing characteristics of a representative spiral groove gas seal undergoing transient operations are presented.
机译:建立了用于气体润滑螺旋槽端面密封件动态分析的数值模型。考虑了转子跳动,未对准,面接触以及辅助密封件的刚度和阻尼的影响。密封件的轴向和角运动以及关键参数(例如扭矩,功率损耗和流量)是通过全局时间积分方案获得的,该方案可跟踪动态密封行为的时间历史。气膜润滑,面接触和密封动力学的分析被认为是一个反问题,并且在每个时间步迭代地获得了解决方案。给出了代表性的螺旋槽气密封件进行瞬态操作的动态跟踪运动和关键密封特性。

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