Abstract
Abstract
Gas path fault diagnosis is key to improving the reliability and safety of gas turbine engines. Flexible operating conditions bring obstacles to performing accurate gas path performance analysis. Most of the existing methods are developed for specific operating conditions, which are difficult to adapt to fully operating regions. The operating mode identification and targeted diagnostic model matching are effective technologies to solve the gas path fault diagnosis under fully operating regions, which improves diagnostic accuracy and efficiency. The fully operating regions are classified into four typical operating modes, and the targeted diagnostic models are matched according to the mode features. For the typical start-stop state and high dynamic state, the small deviation diagnostic model and transient diagnostic model are established and verified by real fault cases. The small deviation diagnostic model based on boundary parameters reduces the influences of operating conditions on diagnostic results, it accurately monitors the health states. The transient diagnostic model driven by the dynamic model and a designed hybrid solution algorithm markedly improves diagnostic accuracy and efficiency. It shows better performance for the mixed gas path fault modes, more stable diagnostic results, and higher diagnostic efficiency. The proposed technical framework provides an effective way for the fault diagnosis of gas turbine engines under fully operating regions.
Funder
Chinese-German Center for Research Promotion
Science and Technology Department of Ningxia
Subject
Applied Mathematics,Instrumentation,Engineering (miscellaneous)
Reference52 articles.
1. A review on gas turbine gas-path diagnostics: state-of-the-art methods, challenges and opportunities;Fentaye;Aerospace,2019
2. Global commercial aircraft gas turbine engine market will grow by almost $16 billion during 2020-2024| advancements in engine technologies to drive growth
3. Gas engine market by fuel type (natural gas and special gas), application (power generation, co-generation, & mechanical drive), end-user (utilities, manufacturing, oil and gas), power output, and region-global forecast to 2022,2017
4. A new method for fault detection of aero-engine based on isolation forest;Wang;Measurement,2021
5. Investigations of hot corrosion resistance of HVOF coated Fe based superalloy A-286 in simulated gas turbine environment;Muthu;Eng. Fail. Anal.,2020
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