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Advances in Structural Damage Diagnostic Research: Architectural Design, Modeling and Validation

机译:结构损伤诊断研究进展:建筑设计,建模与验证

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Physical damages like thermally grown oxide (TGO) layer develop in the coated gas turbine blade during the aeroengine operation and severely limits the life and performance. This life critical damage data has been considered for the validation of a diagnostic fault analysis. High level architecture, statistical algorithm and experimental modeling of oxide growth data are discussed. Experimental measurement of the damage growth has been carried out under different time, temperature and processing conditions in coated blade to generate large volume of input data. Wilcoxon rank sum analysis is carried out to check its effectiveness. The proposed method appears to yield consistent result in operational data anomaly and damage diagnosis. The algorithm for prognostic analysis using exponential smoothing of damage data from gas turbine engine and nonlinear regression method will be applied for future work.
机译:在航空发动机操作期间,在涂覆的燃气涡轮机叶片中产生热生长氧化物(TGO)层的物理损坏,并且严重限制了寿命和性能。这一生命危急损坏数据被认为是验证诊断故障分析。讨论了高级架构,统计算法和氧化物生长数据的实验建模。在涂布刀片中的不同时间,温度和加工条件下进行了损伤生长的实验测量,以产生大量的输入数据。威尔Coxon等级分析进行了检查其有效性。所提出的方法似乎产生一致的结果在运营数据异常和损伤诊断中。使用来自燃气轮机发动机和非线性回归法的损伤数据指数平滑的预后分析算法将应用于未来的工作。

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