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首页> 外文期刊>Journal of propulsion and power >Multiple-Point Adaptive Performance Simulation Tuned to Aeroengine Test-Bed Data
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Multiple-Point Adaptive Performance Simulation Tuned to Aeroengine Test-Bed Data

机译:针对航空发动机试验台数据调整的多点自适应性能仿真

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Adaptive simulation technology enables the calibration of a performance simulation code to a given in-service gas turbine and provides correct prediction of its performance. This is a fundamental prerequisite for reliable gas-path diagnostics and performance health monitoring. In this paper, a new offdesign performance adaption algorithm is introduced. Cranfield University's consolidated engine performance simulation code PYTHIA is enhanced with the capability of offdesign performance adaptation to model available field data. The software minimizes, via a genetic algorithm, an objective function that measures the error between an initial engine model output and the real engine data by varying some characteristics' scaling factors. In this study, a multiple-point adaptation procedure was applied to a two-shaft aeroengine. This generated an optimized engine model that minimized its deviations from a set of test-bed data. The adapted model was then tested against different real data, resulting in an average error, over 8 measured parameters, of less than 0.35%.
机译:自适应仿真技术可以对给定的在用燃气轮机进行性能仿真代码的校准,并提供对其性能的正确预测。这是可靠的气路诊断和性能运行状况监视的基本前提。本文介绍了一种新的非设计性能自适应算法。克兰菲尔德大学的综合发动机性能仿真代码PYTHIA增强了非设计性能适应能力,可对可用的现场数据进行建模。该软件通过遗传算法将目标函数最小化,该目标函数通过改变某些特征的比例因子来测量初始发动机模型输出与实际发动机数据之间的误差。在这项研究中,多点自适应程序应用于两轴航空发动机。这样就产生了优化的发动机模型,该模型将其与一组试验台数据的偏差最小化。然后,针对不同的真实数据测试了调整后的模型,导致超过8个测量参数的平均误差小于0.35%。

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