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A novel method for the determination of the change in blade tip timing probe sensing position due to steady movements

机译:确定由于稳定运动而导致叶片尖端正时探针感应位置变化的新方法

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The correlation of blade tip timing (BTT) measurements against strain gauge (SG) measurements and finite element (FE) predictions includes a number of uncertainties. One of the main ones is the steady movement of the blades (i.e. change in their mean position and orientation). This causes the sensing positions of the probes relative to a blade tip to deviate from their intended (nominal) positions, leading to deceptive results for the BTT amplitude and the corresponding stress levels. Such movements are caused by variations in static loading conditions (thermal and pressure) associated with changes in the operating speed. A novel method is introduced for the determination of three basic types of blade tip steady movements: axial; lean; untwist. The method relies on linking the shift in the averages of the BTT data to a number of geometrical relations, depending on the type of movement. Not more than two probes (to be placed at different axial positions) are needed to measure all three types of movement. The method is validated by simulations using a novel BTT simulator, and by measurements from both a test rig and real engine tests. The validated results demonstrate the great potential of the method for practical applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:叶片尖端正时(BTT)测量与应变仪(SG)测量和有限元(FE)预测之间的相关性包括许多不确定性。主要因素之一是叶片的稳定运动(即叶片平均位置和方向的变化)。这导致探针相对于刀片尖端的感测位置偏离其预期的(标称)位置,从而导致BTT振幅和相应应力水平的欺骗性结果。这种运动是由与运行速度变化相关的静态负载条件(热和压力)的变化引起的。引入了一种新颖的方法来确定三种基本类型的叶片尖端稳定运动:轴向运动;轴向运动;以及靠;松开该方法依赖于BTT数据平均值的偏移与多种几何关系相关联,具体取决于运动的类型。用来测量所有三种类型的运动的探针最多不超过两个(放置在不同的轴向位置)。该方法通过使用新型BTT仿真器的仿真以及来自测试台和实际发动机测试的测量结果进行了验证。验证的结果证明了该方法在实际应用中的巨大潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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