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The effect of reference-environment models on the accuracy of exergy analyses of aerospace engines

机译:参考环境模型对航空航天发动机的高度分析准确性的影响

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An exergy analysis is applied to a turbojet engine over a range of flight altitudes ranging from sea level to 15,000 m (~50,000 ft) to examine the effects of using different reference-environment models. The results of this analysis using a variable reference environment (equal to the operating environment at all times) are compared to the results obtained using two constant reference environments (sea level and 15,000 m). The actual rational efficiency of the turbojet decreases with increasing altitude, ranging from a value of 16.9% at sea level to 15.3% at 15,000 m. The percentage of the total exergy loss due to the exhaust emissions increases from 65% at sea level to 70% at 15,000 m, while the composition of this loss remains nearly constant with altitude. In the most extreme cases considered, the rational efficiency value calculated using a constant reference environment varies by approximately 2% from the variable reference environment value. However, the accuracy of the loss analysis provided by an exergy analysis is shown to depend strongly on the choice of reference environment. The magnitude of the predicted exhaust loss (which is the single major source of exergy loss in a turbojet) varies by as much as 18% from the actual value when using a constant reference environment. The breakdown of this loss when using a constant reference environment is shown to be dependent on the altitude chosen and can be in error by as much as 28%.
机译:在一系列飞行高度范围内的涡轮喷气发动发动机范围内,从海拔15,000米(〜50,000英尺)范围内的涡轮喷气发动发动机应用于涡轮喷气发动发动机,以检查使用不同参考环境模型的影响。将该分析的结果使用可变参考环境(始终等于操作环境)与使用两个恒定的参考环境(海平面和15,000米)获得的结果进行比较。涡轮喷气喷嘴的实际合理效率随高度的增加而降低,从海平面的值为16.9%,达15.3%,达15,000米。由于废气排放引起的总丧失损失的百分比从海平面的65%增加到每年的70%,而这种损失的组成仍然仍然恒定。在考虑最极端的情况下,使用恒定的参考环境计算的合理效率值从变量参考环境值变化大约2%。然而,通过Deerteny分析提供的损失分析的准确性被证明是在参考环境的选择中强烈依赖。预测排气损失的大小(涡轮喷射器中的低级损失的单个主要来源)在使用恒定的参考环境时,从实际值变化多达18%。使用恒定参考环境时,这种损失的崩溃显示在所选择的高度,并且可以误差高达28%。

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