首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.4 pt.B; 20070514-17; Montreal(CA) >EXERGY ANALYSIS FOR THE PERFORMANCE EVALUATION OF DIFFERENT SETUPS OF THE SECONDARY AIR SYSTEM OF AIRCRAFT GAS TURBINES
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EXERGY ANALYSIS FOR THE PERFORMANCE EVALUATION OF DIFFERENT SETUPS OF THE SECONDARY AIR SYSTEM OF AIRCRAFT GAS TURBINES

机译:飞机燃气轮机二次空气系统不同设置性能评估的效能分析。

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摘要

Secondary Air System related losses in aircraft gas turbines cannot be directly assessed and quantified as possible for other sub-systems of the engine. If a particular setup is to be evaluated and compared to other, competing designs, it is required to have a distinct understanding of the loss mechanisms and the way these losses appear in the cycle. The relevant loss phenomena are therefore discussed in detail and are quantified with regard to the respective specific entropy increase. The exergy method is found to be the method of choice, since it holds some important advantages compared to other loss accounting methods like gas horsepower or thrust work potential. An exergy analysis is carried out for a high TET, two shaft engine of the medium thrust range. A comparison of setups with different compressor offtake positions is performed. It is found that the contribution of Air System related losses to overall engine efficiency deficits is significant, but may be reduced by careful design.
机译:对于发动机的其他子系统,无法直接评估和量化飞机燃气轮机中与二次空气系统相关的损失。如果要评估特定的设置并将其与其他竞争设计进行比较,则需要对损耗机制以及这些损耗在周期中出现的方式有清晰的了解。因此,将详细讨论相关的损耗现象,并根据各自的特定熵的增加对其进行量化。发现火用法是一种选择方法,因为与其他损失核算方法(例如天然气功率或推力功)相比,它具有一些重要的优势。对中等推力范围的高TET,两轴发动机进行了火用分析。进行了具有不同压缩机排量位置的设置比较。发现与空气系统有关的损失对整体发动机效率不足的贡献很大,但是可以通过精心设计来减少。

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