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An Approach to Detect and Mitigate Ice Particle Accretion in Aircraft Engine Compression Systems

机译:一种检测和减轻飞机发动机压缩系统中冰粒积聚的方法

摘要

The accretion of ice in the compression system of commercial gas turbine engines operating in high ice water content conditions is a safety issue being studied by the aviation sector. While most of the research focuses on the underlying physics of ice accretion and the meteorological conditions in which accretion can occur, a systems-level perspective on the topic lends itself to potential near-term operational improvements. This work focuses on developing an accurate and reliable algorithm for detecting the accretion of ice in the low pressure compressor of a generic 40,000 lbf thrust class engine. The algorithm uses only the two shaft speed sensors and works regardless of engine age, operating condition, and power level. In a 10,000-case Monte Carlo simulation, the detection approach was found to have excellent capability at determining ice accretion from sensor noise with detection occurring when ice blocks an average of 6.8 percent of the low pressure compressor area. Finally, an initial study highlights a potential mitigation strategy that uses the existing engine actuators to raise the temperature in the low pressure compressor in an effort to reduce the rate at which ice accretes.
机译:在高冰水含量条件下运行的商用燃气涡轮发动机的压缩系统中积冰是航空部门正在研究的安全问题。尽管大多数研究都集中在潜在的冰积层物理原理和可能发生积冰的气象条件上,但是从系统层面上对该主题进行研究可使其在短期内得到改善。这项工作着重于开发一种准确可靠的算法,以检测普通40,000 lbf推力级发动机的低压压缩机中冰的积聚。该算法仅使用两个轴速度传感器,并且无论发动机寿命,运行状况和功率水平如何都可以运行。在10,000个案例的蒙特卡洛模拟中,发现这种检测方法具有出色的能力,可根据传感器噪声确定积冰,而当冰平均阻塞低压压缩机面积的6.8%时,就会进行检测。最后,一项初步研究强调了一种潜在的缓解策略,该策略利用现有的发动机执行器来提高低压压缩机中的温度,以降低冰的积聚速率。

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