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COMPRESSOR STABILITY MANAGEMENT IN AIRCRAFT ENGINES

机译:飞机发动机的压缩机稳定性管理

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The safety for modern gas turbine engines can be greatly improved with the development of accurate on-line measurement to gauge the aerodynamic stability level for fans and compressors. This paper describes the development and application of a robust real time algorithm for gauging fan/compressor aerodynamic stability level using over-the-rotor dynamic pressure sensors. This real time scheme computes a correlation measure through signal multiplication and integration. The algorithm uses the existing speed signal from the engine control for cycle synchronization. The algorithm is simple and is implemented on a portable computer to facilitate rapid real-time implementation on different experimental platforms as demonstrated both on a full-scale high-speed compressor rig and on an advanced aircraft engine. In the multi-stage advanced compressor rig test, the compressor was moved toward stall at constant speed by closing a discharge valve. The stability management system was able to detect an impending stall and trigger opening of the valve so as to avoid compressor surge. In the full-scale engine test, the engine was configured with a one-per-rev distortion screen and transients were run with a significant amount of fuel enrichment to facilitate stall. Test data from a series of continuous rapid transients run in the engine test showed that in all cases the stability management system was able to detect an impending stall and manipulated the enrichment part of the fuel schedule to provide stall free transients.
机译:通过开发精确的在线测量来测量风扇和压缩机的空气动力学稳定性水平,可以大大提高现代燃气涡轮发动机的安全性。本文介绍了一种通过转子动态压力传感器测量风扇/压缩机空气动力学稳定性水平的鲁棒实时算法的开发和应用。该实时方案通过信号乘法和积分来计算相关性度量。该算法将来自发动机控制系统的现有速度信号用于循环同步。该算法很简单,并且在便携式计算机上实现,以促进在不同的实验平台上快速实时实现,这在大规模高速压缩机设备和先进的飞机发动机上均得到了证明。在多级高级压缩机装置测试中,通过关闭排放阀,使压缩机以恒定速度移向失速状态。稳定性管理系统能够检测到即将发生的失速并触发阀门打开,从而避免了压缩机喘振。在全尺寸发动机测试中,该发动机配置了一个每转一转的变形筛,并且在瞬态过程中运行了大量的燃油,以促进失速。来自发动机测试的一系列连续快速瞬变的测试数据表明,在所有情况下,稳定性管理系统都能够检测到即将发生的失速,并操纵燃油表的浓缩部分以提供无失速的瞬变。

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