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Numerical Investigation on Windback Seals Used in Aero Engines

机译:航空发动机防风密封的数值研究

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Seals are considered one of the most important flow elements in turbomachinery applications. The most traditional and widely known seal is the labyrinth seal but in recent years other types like the brush or carbon seals were introduced since they considerably reduce the sealing air consumption. When seals are used for sealing of aero engine bearing chambers they are subjected to high “bombardment” through oil particles which are present in the bearing chamber. These particles mainly result from the bearings as a consequence of the high rotational speeds. Particularly when carbon or brush seals are used, problems with carbon formation (coking) may arise when oil gets trapped in the very tight gap of these seals. In order to prevent oil migration into the turbomachinery, particularly when the pressure difference over a seal is small or even negligible, significant improvement can be achieved through the introduction of so called windback seals. This seal has a row of static helical teeth (thread) and below this thread a scalloped or smooth shaft section is rotating. Depending on the application, a windback seal can be used alone or as a combination with another seal (carbon, brush or labyrinth seal). A CFD analysis carried out with ANSYS CFX version 11 is presented in this paper with the aim to investigate this seal type. The simulations were performed by assuming a two-phase flow of air and oil in the bearing compartment. Design parameters like seal clearance, thread size, scallop width, were investigated at different operating conditions.
机译:密封被认为是涡轮机械应用中最重要的流量元件之一。最传统和最广为人知的密封件是迷宫式密封件,但是近年来引入了其他类型的密封件,例如电刷或碳封条,因为它们大大降低了密封件的空气消耗。当密封件用于航空发动机轴承腔的密封时,它们会受到轴承腔中存在的油粒的强烈“轰击”。这些颗粒主要是由于轴承的高转速而产生的。尤其是在使用碳密封或电刷密封时,当油被困在这些密封的非常紧密的间隙中时,可能会出现碳形成(结焦)的问题。为了防止机油迁移到涡轮机中,特别是当密封件上的压力差很小甚至可以忽略不计时,可以通过引入所谓的反吹密封件来实现显着改善。该密封件具有一排静态螺旋齿(螺纹),在该螺纹之下,有一个扇形或光滑的轴段正在旋转。根据应用情况,回风密封件可以单独使用,也可以与其他密封件(碳,毛刷或迷宫式密封件)组合使用。本文介绍了用ANSYS CFX 11版进行的CFD分析,目的是研究这种密封类型。通过假设轴承箱中空气和油的两相流动进行了仿真。在不同的操作条件下研究了密封间隙,螺纹尺寸,扇贝宽度等设计参数。

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