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Engine Icing Modeling and Simulation (Part 2): Performance Simulation of Engine Rollback Phenomena

机译:发动机结冰建模和仿真(第2部分):发动机回滚现象的性能仿真

摘要

Ice buildup in the compressor section of a commercial aircraft gas turbine engine can cause a number of engine failures. One of these failure modes is known as engine rollback: an uncommanded decrease in thrust accompanied by a decrease in fan speed and an increase in turbine temperature. This paper describes the development of a model which simulates the system level impact of engine icing using the Commercial Modular Aero-Propulsion System Simulation 40k (C-MAPSS40k). When an ice blockage is added to C-MAPSS40k, the control system responds in a manner similar to that of an actual engine, and, in cases with severe blockage, an engine rollback is observed. Using this capability to simulate engine rollback, a proof-of-concept detection scheme is developed and tested using only typical engine sensors. This paper concludes that the engine control system s limit protection is the proximate cause of iced engine rollback and that the controller can detect the buildup of ice particles in the compressor section. This work serves as a feasibility study for continued research into the detection and mitigation of engine rollback using the propulsion control system.
机译:在商用飞机燃气涡轮发动机的压缩机部分中积冰会导致许多发动机故障。这些故障模式中的一种称为发动机回滚:推力的不受控下降,伴随着风扇速度的下降和涡轮温度的上升。本文介绍了使用商业模块化航空推进系统仿真40k(C-MAPSS40k)仿真发动机结冰对系统水平影响的模型的开发。当向C-MAPSS40k添加冰堵时,控制系统将以类似于实际发动机的方式做出响应,并且在严重堵塞的情况下,会观察到发动机回滚。使用此功能来模拟发动机回滚,仅使用典型的发动机传感器就可以开发和测试概念验证检测方案。本文得出的结论是,发动机控制系统的极限保护是发动机结冰的直接原因,并且控制器可以检测出压缩机部分中的冰粒堆积。这项工作是一项可行性研究,可用于继续研究使用推进控制系统检测和缓解发动机后退。

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