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EXPERIMENTAL STUDIES OF THE BOUNDARY CONDITIONS LEADING TO OIL FIRE IN THE BEARING CHAMBER AND IN THE SECONDARY AIR SYSTEM OF AEROENGINES

机译:轴承室中油火的边界条件和航空发动机二次空气系统的实验研究

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The continuous increase of the temperature and pressure levels in modern aeroengines has significantly increased the demands on the design of the lubrication system. Among other things the oil/air system of a gas turbine engine has to ensure that engine operation does not permit oil coking or oil fires in order to guarantee high reliability and safety of the engine. To improve existing and develop new design rules, a fundamental study of the conditions leading to oil firing within an oil contaminated environment has been initiated. Three ignition mechanisms relevant for the triggering of an oil fire in the bearing chamber or in the secondary air system are investigated in detail: the spontaneous ignition of the lubricant (autoignition), the ignition of the lubricant near a hot surface (hot surface ignition) and the propagation of a flame within a vent pipe into the bearing chamber (vent pipe flashback). The present paper focusses on the experimental approach and procedure. The different test rigs are presented and their functioning is demonstrated by means of initial results.
机译:现代航空发动机温度和压力水平的连续增加显着增加了对润滑系统设计的需求。除此之外,燃气轮机发动机的油/空气系统必须确保发动机运行不允许油焦或油火,以保证发动机的高可靠性和安全性。为改善现有和发展新的设计规则,启动了对石油污染环境中燃油射击的条件的根本研究。三种与轴承室中的油火触发的点火机制或二次空气系统相关的一种点火机制:润滑剂(自燃)的自发点火,润滑剂点火在热表面附近(热表面点火)并将火焰在通风管内传播到轴承室(通风管闪回)中。本文侧重于实验方法和程序。提出了不同的试验台,并通过初始结果来证明其功能。

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