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Influence of Operating Condition and Geometry on the Oil Film Thickness in Aeroengine Bearing Chambers

机译:工作条件和几何形状对航空发动机轴承室油膜厚度的影响

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摘要

Increasing the efficiency of modern jet engines does not only imply to the mainstream but also to the secondary air and oil system. Within the oil system the bearing chamber is one of the most challenging components. Oil films on the chamber walls are generated from oil droplets, ligaments, or film fragments, which emerge from bearings, seal plates and shafts, and enter the bearing chamber with an angular momentum. Furthermore, shear forces at its surface, gravity forces, and the design of scavenge and vent ports strongly impact the behavior of the liquid film. The present paper focuses on the experimental determination of the film thickness in various geometries of bearing chambers for a wide range of engine relevant conditions. Therefore, each configuration was equipped with five capacitive probes positioned at different circumferential locations. Two analytical approaches are used for a comprehensive discussion of the complex film flow.
机译:现代喷气发动机效率的提高不仅暗示了主流,而且暗示了二次空气和机油系统。在机油系统中,轴承腔是最具挑战性的组件之一。腔室壁上的油膜是由油滴,韧带或膜碎片产生的,这些油滴,韧带或膜碎片从轴承,密封板和轴上冒出,并以角动量进入轴承腔。此外,其表面的剪切力,重力以及扫气口和排气口的设计极大地影响了液膜的性能。本文主要针对各种发动机相关条件,通过实验确定轴承室各种几何形状的薄膜厚度。因此,每种配置都配备了五个位于不同圆周位置的电容式探头。两种分析方法用于复杂膜流的全面讨论。

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