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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Application of Silicon Carbide Photodiode Flame Temperature Sensors in an Active Combustion Pattern Factor Control System
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Application of Silicon Carbide Photodiode Flame Temperature Sensors in an Active Combustion Pattern Factor Control System

机译:碳化硅光电二极管火焰温度传感器在主动燃烧模式因子控制系统中的应用

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This paper describes the development and initial application studies for an active combustion pattern factor controller (APFC)for gas turbines. The system is based around the use of a novel silicon carbide optical ultraviolet dual diode flame temperature sensor (FTS) developed by General Electric Co. The APFC system determines combustion flame temperatures, validates the values, and integrates an assessment of signal and combustion hardware health to determine how to trim the fuel flow to individual fuel nozzles. Key aspects of the system include the following: determination of each flame's bulk temperature using the FTS, assessment of the reliability of the flame temperature data and physical combustion hardware health through analysis of the high-frequency output of the sensor, validation of the flame temperature signal using a data-driven approach, fusion of sensor "health indices " into the APFC to alter the trim control signal based on the health (or "believability") of each sensor and fuel nozzle/combustor, fault-tolerant peak/valley detection and control module that selects individual fuel valves to target for reducing pattern factor while simultaneously balancing the overall fuel flow. The authors demonstrated feasibility of the approach by performing simulations using a quasi-2D T700 turbine engine model. Tests were run on the simulated platform with no faults, simulated sensor faults, and on a system with underlying combustion hardware issues. The final APFC system would be applicable for aviation, naval, and land-based commercial gas turbines, and can be used in closed-loop control or adapted as an open-loop advisory/ diagnostic system.
机译:本文介绍了用于燃气轮机的主动燃烧模式因子控制器(APFC)的开发和初步应用研究。该系统基于由通用电气公司开发的新型碳化硅光学紫外线双二极管火焰温度传感器(FTS)的使用。APFC系统确定燃烧火焰温度,验证值并整合对信号和燃烧硬件运行状况的评估确定如何调整流向各个燃油喷嘴的燃油。该系统的关键方面包括:使用FTS确定每个火焰的体温,通过分析传感器的高频输出,评估火焰温度数据的可靠性和物理燃烧硬件的健康状况,验证火焰温度使用数据驱动的方法发出信号,将传感器“健康指数”融合到APFC中,以基于每个传感器和燃料喷嘴/燃烧器的健康(或“可信度”)更改修整控制信号,容错峰/谷检测控制模块选择单个燃料阀作为目标,以减少模式因子,同时平衡总体燃料流量。作者通过使用准2D T700涡轮发动机模型进行仿真,证明了该方法的可行性。测试在没有故障,没有模拟传感器故障的模拟平台上运行,并且在存在潜在燃烧硬件问题的系统上运行。最终的APFC系统将适用于航空,海军和陆基商用燃气轮机,并且可用于闭环控制或用作开环咨询/诊断系统。

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