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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Investigation and Simulation of a Boeing 747 Auxiliary Power Unit
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Experimental Investigation and Simulation of a Boeing 747 Auxiliary Power Unit

机译:波音747辅助动力单元的实验研究与仿真

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Auxiliary power units (APUs) are a major driver of maintenance on civil aircraft. However, experimental data and performance simulations are rarely seen in public domain literature. While there is recourse to aircraft engine experience, this does not address the loading and the failure modes of an APU. This work aims to add to the literature, by experimentally investigating a Boeing 747 APU, collecting data under various power settings and ambient conditions, and using these data to calibrate a simple simulation model. This simulation model will subsequently be used to explore failure modes in the APU and hence what sensors may be needed for health monitoring purposes in future work. In this paper, a Boeing 747 APU rig development process and the testing strategy are presented. The rig is validated through a process that includes uncertainty analysis, repeatability tests, consistency tests, and comparison of the collected data with the calibrated simulation model. The results from the rig's validation indicate that the data collected from the APU is independent of its running time or the order of loading cycles imposed on it, i.e., the results are path independent. Changes in pneumatic and electrical power result in small changes in the rotational speed despite the fact that the rotational speed should remain constant. The rotational speed shows a slightly increasing trend when the extracted power rises, and this affects the APU thermodynamic characteristics. This work has resulted in a calibrated simulation model that will be further used in examining fault mode scenarios, as injecting these directly into the rig is seen as high risk.
机译:辅助电源单元(APU)是民用飞机维护的主要驱动因素。然而,在公共领域文献中很少看到实验数据和性能模拟。虽然有飞机发动机经验的诉诸,但这并没有解决APU的负载和故障模式。这项工作旨在通过通过实验研究波音747 APU,在各种电源设置和环境条件下收集数据,并使用这些数据来校准简单的仿真模型来添加到文献中。随后,该模拟模型将用于探索APU中的故障模式,因此可能需要哪些传感器在未来的工作中进行健康监测目的。本文提出了一种波音747 APU钻机开发过程和测试策略。通过包括不确定性分析,可重复性测试,一致性测试的过程验证钻机以及使用校准模拟模型的收集数据的比较。钻机验证的结果表明,从APU收集的数据与其运行时间无关或对其上施加的装载周期的顺序,即,结果是独立的路径。尽管转速应保持恒定,气动和电能的变化导致转速的较小变化。当提取的电力升高时,转速显示出略微增加的趋势,这影响了APU热力学特性。这项工作导致校准模拟模型,将进一步用于检查故障模式方案,因为将这些直接注入钻机被视为高风险。

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