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Modeling and control schedule design of a two-dimensional thrust-vectoring nozzle and aeroengine

机译:二维推力矢量喷嘴和航空发动机的建模与控制时间表设计

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For advanced operational aircraft, the two-dimensional (2-D) thrust-vectoring (TV) nozzle effectively improves the flight mobility and post-stall manoevrability. However, its flow capacity decreases when deflecting and cooling air is injected, which impacts the engine's operating state, including decreasing the fan surge margin and increasing the turbine inlet temperature. Therefore, in order to improve engine performance in the whole flight envelope, this paper studies the matching mechanism of the engine and the cooled 2-D TV nozzle, performance characterisation and control schedule of the nozzle, and an integrated aeroengine/nozzle modeling method is put forward. Based on these, an engine performance simulation model is modified to include a cooled 2-D TV nozzle. The testing results show that applying the nozzle control schedules recommended in this paper avoids the performance degradation when the nozzle deflects. This work advances the field of engine/nozzle integrated modeling, and helps to instruct the simulation and experimentation to better fit the needs of engine modeling and engineering applications.
机译:对于先进的操作飞机,二维(2-D)推力矢量(TV)喷嘴有效地改善了飞行移动性和失去术后摩擦力。然而,当注射偏转和冷却空气时,其流量降低,这会影响发动机的运行状态,包括降低风扇浪涌裕度并增加涡轮机入口温度。因此,为了提高整个飞行信封中的发动机性能,本文研究了发动机和冷却的2-D电视喷嘴的匹配机制,喷嘴的性能表征和控制时间表,以及集成的航空发动机/喷嘴建模方法是提出。基于这些,修改了发动机性能仿真模型以包括冷却的2-D电视喷嘴。测试结果表明,在本文中推荐的喷嘴控制计划避免了喷嘴偏转时的性能下降。这项工作推进了发动机/喷嘴集成建模领域,并有助于指示模拟和实验,以更好地符合发动机建模和工程应用的需求。

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