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Analysis and simulation on two types of thrust reversers in an aircraft engine

机译:飞机发动机两种推力逆向器的分析与仿真

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With rapid development of new composite material and manufacturing, innovative engineering solutions are supplied to the advanced nacelle, such as integrated propulsion system(IPS), carbon-fiber composite inner skin by single-piece molding process,which offers a reduction in fuel burn and less noise produced by engines. The advanced nacelle has an O-duct thrust reverser demonstrator whose composite structure is in the form of an “O” as opposed to the traditional “D-duct”. A comparative study is to be conducted to investigate the differences between the latest O-duct and conventional D-duct in numerical approaches. To focus on the quantitative analysis of thrust reverser’s operation, this paper mainly uses CATIA/Digital Mock Up(DMU) to simulate under deployment and stowed conditions of two different thrust reverser. After comparing the structural weight, the design models of blocker door are built for kinematic analysis of relevant mechanism and simulation. The results show that simplified design and elimination of multiple interfaces generates weight saving, O-duct improves airflows within the engine, meanwhile D-duct has excellent cost effective and maintainability.
机译:随着新型复合材料和制造的快速发展,创新的工程解决方案提供给先进的机舱,如集成推进系统(IPS),单件成型过程,碳纤维复合内皮肤,可减少燃料燃烧发动机产生的噪音较少。高级机舱具有O-Puct推力反向器示范器,其复合结构是“O”的形式,而不是传统的“D-D-Puct”。对比较研究进行了探讨了数值方法中最新O型管道和常规D型管道之间的差异。为了专注于推力反向器的运作的定量分析,本文主要使用CATIA / Digital Mock Up(DMU)在部署和两个不同推力反向器的收起条件下模拟。在比较结构重量之后,构建了阻塞门的设计模型,用于对相关机构和模拟的运动分析。结果表明,多个界面的简化设计和消除产生重量保存,O-管道改善发动机内的气流,同时D型管道具有优异的成本效益和可维护性。

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