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FORCED RESPONSE IN AXIAL TURBINES UNDER THE INFLUENCE OF PARTIAL ADMISSION

机译:部分接纳影响下轴流涡轮的强制响应

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High cycle fatigue (HCF) due to unforeseen excitation frequencies or due to under predicted force magnitudes, or a combination of both causes control stage failures for steam turbine stakeholders. The objectives of this paper is to provide an extended design criteria toolbox and validation data for control stage design based on experimental data, with the aim to decrease HCF incidents for partial admission turbines.The upstream rotor in a two stage air test turbine is instrumented with pressure transducers and strain gauges. Admission degrees stretching from 28.6% to 100% as one or two admission arcs are simulated by blocking segmental arcs immediately upstream of first stator vanes by aerodynamically shaped filling blocks. Sweeps across a speed range from 50 to 105% of design speed are performed at constant turbine pressure ratio during simultaneous high speed acquisition. A forced response analysis is performed and results presented in Campbell diagrams.Partial admission creates a large number of low engine order forced responses because of the blockage, pumping, loading and unloading processes. Combinations of the number of rotor blades and low engine order excitations are the principal sources of forced response vibrations for the turbine studied herein.Altering the stator and/or rotor pitches will change the excitation pattern. A relation between the circumferential lengths of the admitted and non-admitted arcs that dictates the excitation forces is observed that may serve as a design parameter.
机译:由于无法预料的激励频率或由于预计力大小不足或两者结合而导致的高周疲劳(HCF),会导致汽轮机涉众的控制级故障。本文的目的是为基于实验数据的控制级设计提供扩展的设计标准工具箱和验证数据,以减少部分进气涡轮的HCF事故。压力传感器和应变计。通过用空气动力学形状的填充块阻塞紧靠第一定子叶片上游的扇形弧,可以模拟一个或两个进气弧的进气程度从28.6%扩展到100%。在同时进行高速采集的过程中,以恒定的涡轮压力比执行从设计速度的50%到105%的速度范围内的扫描。执行强制响应分析并将结果显示在Campbell图表中。由于堵塞,泵送,装载和卸载过程,部分入场会产生大量的低发动机指令强制响应。转子叶片数量和发动机低阶激励的结合是本文研究的涡轮机强制响应振动的主要来源。改变定子和/或转子的螺距将改变激励模式。观察到指示激励力的允许电弧和非允许电弧的圆周长度之间的关系可以用作设计参数。

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