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A Physics-Based Modeling Approach for Performance Monitoring in Gas Turbine Engines

机译:基于物理的燃气轮机性能监测建模方法

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Performance deterioration monitoring is an essential part of the prognostics and health management (PHM) of gas turbine engines (GTEs). This paper proposes a physics-based modeling approach for performance deterioration monitoring with two model-based performance indicators, heat loss index and power deficit index, for GTE PHM applications. A comprehensive nonlinear thermodynamic model for a single shaft GTE is developed to establish the relation between the operating conditions and the cycle parameters. The model, once properly calibrated, is able to predict the GTE cycle parameters in a healthy condition as the baseline, while in reality, the measured parameters gradually deviate from the baseline, which reflects the performance deterioration of the GTE. To represent the degradation level, the heat loss index is defined as the normalized measure of the thermal power that is being wasted in the GTE compared to the healthy condition. Similarly, the power deficit index is defined as the deficiency ratio of the GTE output power due to the performance deterioration. The effectiveness of the performance indicators in monitoring performance deterioration and their robustness to the variations of the operating conditions are examined by using three years of typical operating data of an industrial GTE. The results clearly reveal the trends of both the short term recoverable deterioration due to fouling effects in the compressor, and the long term non-recoverable deterioration caused by structural degradation. The technique is especially advantageous for prognostic applications where there is no access to internal cycle parameters of a GTE, and only the operating data are available, hence no additional sensors are required.
机译:性能恶化监控是燃气涡轮发动机(GTE)的预测和健康管理(PHM)的重要组成部分。本文针对GTE PHM应用,提出了一种基于物理的建模方法,用于性能劣化监控,具有两个基于模型的性能指标,即热损失指数和功率亏空指数。建立了单轴GTE的综合非线性热力学模型,以建立工况与循环参数之间的关系。该模型一旦正确校准,就能够预测健康状况下的GTE周期参数作为基线,而实际上,所测得的参数逐渐偏离基线,这反映了GTE的性能下降。为了表示降解水平,将热损失指数定义为与健康状况相比在GTE中浪费的热功率的标准化度量。类似地,功率不足指数定义为由于性能下降而导致的GTE输出功率的不足率。通过使用工业GTE的三年典型运行数据来检查性能指标在监视性能下降及其对运行条件变化的鲁棒性方面的有效性。结果清楚地表明了由于压缩机结垢效应而引起的短期可恢复性恶化以及由于结构退化而引起的长期不可恢复性恶化的趋势。该技术对于无法访问GTE的内部循环参数且仅可使用操作数据的预后应用特别有利,因此不需要其他传感器。

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