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Assessment and Calibration of Semi-Empirical Models for Predicting Pollutant Emissions of the ERICA Tiltrotor Turboshaft Engine

机译:预测ERICA倾转式涡轮轴发动机污染物排放的半经验模型的评估和校准

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In this paper, the most meaningful EINOx and EICO zero-dimensional emission prediction methods from the literature are described and reviewed, while a selection of them are tuned and validated against publicly available experimental data. The equations of these models are implemented in TSHAFT, a proprietary engine simulator developed at the University of Padova which predicts the performance of turbojet engines in both design and off-design operation modes under variable ambient conditions. Then, TSHAFT is set up to predict the emissions of a generic turboshaft engine ranging in power from 1,800 shp to over 5,000 shp, and the results are compared to proprietary experimental data obtained during an aircraft landing and take-off cycle (LTO) at standard sea level conditions. Finally, the emissions of a turboshaft engine of 3000 SHP engine are calculated for two flight conditions (i.e. hover and forward flight cruise) of the ERICA tiltrotor. Finally, the paper presents the results of the comparison in terms of pollutant emissions between the engine emissions related to the baseline installation geometry, and the optimized intake/exhaust configuration.
机译:在本文中,描述并回顾了文献中最有意义的EINOx和EICO零维排放预测方法,并根据公开的实验数据对其中的一些方法进行了调整和验证。这些模型的方程式在TSHAFT中实现,TSHAFT是帕多瓦大学开发的专有发动机模拟器,可预测可变环境条件下设计和非设计运行模式下涡轮喷气发动机的性能。然后,设置TSHAFT来预测功率在1800 shp至5,000 shp以上的通用涡轮轴发动机的排放,并将结果与​​标准飞机降落和起飞周期(LTO)期间获得的专有实验数据进行比较。海平面条件。最后,针对ERICA倾转旋翼的两个飞行状态(即,悬停和前进飞行巡航),计算了3000 SHP发动机的涡轮轴发动机的排放量。最后,本文介绍了与基准安装几何形状有关的发动机排放与优化的进气/排气配置之间在污染物排放方面的比较结果。

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