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The overall design and full-aircraft aerodynamic simulation of the tilting rotor cargo UAV based on variable shaft angle gear drive

机译:基于变轴角齿轮驱动的倾斜旋翼货运无人机的总体设计和全机空气动力学仿真

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Traditional tilt rotor aircraft rely on turning the whole engine nacelle, to accomplish the transformation between vertical take-off and landing as well as flying. This scheme has a large rotational inertia and requires a heavy and complex tilting mechanism. the engine jet flow in the process of vertical take-off and landing directly spray down, and this flow could blow up the sand and stone, let engine suck it in or hurt people. So this paper designed a new rotated way based on variable shaft Angle gear transmission. The carrier aircraft design scheme referenced the data come from following software and website. The data of airfoils come from the software profili and the website Airfoil Investigation Database. The pressure distribution as well as air flow simulation and calculation is based on XFLR5. The mechanical, appearance and overall design is based on CATIA. The gear contour design is based on CAXA CAD and the full-aircraft aerodynamic simulation is based on ANSYS/FLUENT. The engine with this design is fixed, so it only needs rotate the tilting rotor shaft, and the mechanical structure is relatively simple, which make this aircraft can play an important role in the future logistics and transportation system.
机译:传统的倾斜旋翼飞机依靠转动整个发动机机舱来完成垂直起飞,着陆以及飞行之间的转换。该方案具有大的转动惯量,并且需要笨重且复杂的倾斜机构。垂直起降过程中,发动机喷流直接喷落而下,可能吹起沙子和石头,使发动机将其吸入或伤害人。因此本文设计了一种基于变轴角齿轮传动的新型旋转方式。舰载机设计方案参考的数据来自以下软件和网站。机翼数据来自软件配置文件和网站机翼调查数据库。压力分布以及气流模拟和计算均基于XFLR5。机械,外观和整体设计均基于CATIA。齿轮轮廓设计基于CAXA CAD,全飞机空气动力学仿真基于ANSYS / FLUENT。这种设计的发动机是固定的,因此只需要旋转倾斜的转子轴,机械结构就比较简单,这使得该飞机可以在未来的物流运输系统中发挥重要作用。

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