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System-Level Design of a Shape Memory Alloy Actuator for Active Clearance Control in the High-Pressure Turbine

机译:用于高压涡轮机主动间隙控制的形状记忆合金执行器的系统级设计

摘要

This paper describes results of a numerical analysis evaluating the feasibility of high-temperature shape memory alloys (HTSMA) for active clearance control actuation in the high-pressure turbine section of a modern turbofan engine. The prototype actuator concept considered here consists of parallel HTSMA wires attached to the shroud that is located on the exterior of the turbine case. A transient model of an HTSMA actuator was used to evaluate active clearance control at various operating points in a test bed aircraft engine simulation. For the engine under consideration, each actuator must be designed to counteract loads from 380 to 2000 lbf and displace at least 0.033 inches. Design results show that an actuator comprised of 10 wires 2 inches in length is adequate for control at critical engine operating points and still exhibits acceptable failsafe operability and cycle life. A proportional-integral-derivative (PID) controller with integrator windup protection was implemented to control clearance amidst engine transients during a normal mission. Simulation results show that the control system exhibits minimal variability in clearance control performance across the operating envelope. The final actuator design is sufficiently small to fit within the limited space outside the high-pressure turbine case and is shown to consume only small amounts of bleed air to adequately regulate temperature.
机译:本文介绍了一种数值分析结果,该结果评估了高温形状记忆合金(HTSMA)在现代涡轮风扇发动机的高压涡轮机部分中主动间隙控制致动的可行性。这里考虑的原型执行器概念由平行的HTSMA导线组成,该导线附接到位于涡轮机壳体外部的护罩上。 HTSMA执行器的瞬态模型用于评估试验台飞机发动机仿真中各个工作点的主动间隙控制。对于所考虑的发动机,必须将每个执行器设计为抵消380至2000 lbf的负载,并位移至少0.033英寸。设计结果表明,由10根2英寸长的导线组成的执行器足以在关键的发动机工作点进行控制,并且仍具有可接受的故障安全操作性和循环寿命。带有积分器加速保护的比例积分微分(PID)控制器用于在正常任务期间控制发动机瞬变期间的间隙。仿真结果表明,该控制系统在整个工作范围内的间隙控制性能表现出最小的变化。最终的执行器设计足够小,无法安装在高压涡轮机壳体外部的有限空间内,并且显示出仅消耗少量引气来充分调节温度。

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