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A Review of Exhaust Gas Temperature Sensing Techniques for Modern Turbine Engine Controls

机译:现代涡轮发动机控制中的排气温度传感技术综述

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The exhaust gas temperature (EGT) is typically defined as the gas temperature at the exit of the turbine; the sensors used to measure this parameter are considered the most vulnerable elements of the entire turbine engine instrumentation. EGT measurement is considered a key parameter for optimizing fuel economy, diagnosis, and prognosis. The reason is that turbine blade temperature is a good indicator for normal life consumption of that blade. Currently, direct sensor measurements made on turbine modules are limited due to the extremely hot environment. Exhaust gas temperature (EGT) sensors located downstream from the highest temperature sections provide a means to roughly infer the temperatures seen by the turbine blades/disks. But these sensors, which themselves are subject to frequent failures, provide a fairly inaccurate indication of the actual metal temperature profiles. This is of particular importance for high performance military turbine engines where the margin between hot-section operating conditions and material limitations is shrinking. A future state is envisioned that would use emerging pyrometric, fiber optic, and laser-based sensing to accurately assess the condition and life usage of the hot section, on a blade-by-blade basis.
机译:废气温度(EGT)通常定义为涡轮机出口处的气体温度。用于测量该参数的传感器被认为是整个涡轮发动机仪表中最易受攻击的元素。 EGT测量被认为是优化燃油经济性,诊断和预后的关键参数。原因是涡轮叶片温度是该叶片正常寿命消耗的良好指标。当前,由于极端高温的环境,在涡轮模块上进行直接传感器测量受到限制。位于最高温度区域下游的废气温度(EGT)传感器提供了一种大致推断涡轮叶片/磁盘所见温度的方法。但是,这些传感器本身经常发生故障,它们不能提供实际金属温度曲线的相当不准确的指示。这对高性能军用涡轮发动机尤其重要,在高性能军用涡轮发动机中,热段运行条件和材料限制之间的余量正在缩小。设想了一个未来的状态,它将使用新兴的高温测量,光纤和基于激光的传感来逐个叶片地准确评估热段的状况和使用寿命。

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