Design and Development of a Transition Propulsion System for Bimodal Unmanned Vehicles

D. Guo, Antonio Bacciaglia, A. Ceruti, P. Marzocca, C. Bil
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引用次数: 6

Abstract

An impulsive thruster propulsion system that could be used in a multi-modal UAV capable of sustained aerial flight, locomotion in water and deployment from a tube filled with compressed air is under development. This paper covers the design and optimisation process of the propulsive system, as well as its modelling with analytical and CFD simulations to predict the performances. The system is designed to fulfil vehicle mission requirements in terms of altitude and velocity after water/air transition. The thruster uses a common CO2 cartridge available off-the-shelf to accelerate water stored inside a water chamber along with an inflator to activate and regulate the mechanism remotely for efficient and sustained thrust. Water is chosen as vectorial fluid since it is available from the surroundings. Water chamber sizing process uses an analytical model calibration through CFD approach to refine an analytical model and predict propulsion performances. After thruster sizing, an experimental prototype was fabricated and tested for model validation. A comparison and discussion of the results as future work is also proposed with areas for improvement and development.
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双峰无人驾驶飞行器过渡推进系统的设计与开发
一种脉冲推进器推进系统可以用于多模式无人机,能够持续空中飞行,在水中运动和从充满压缩空气的管道中展开,目前正在开发中。本文涵盖了推进系统的设计和优化过程,以及用分析和CFD模拟来预测其性能的建模。该系统设计用于在水/空气过渡后的高度和速度方面满足车辆任务要求。该推进器使用现成的普通二氧化碳筒来加速储存在水室中的水,并使用充气器远程激活和调节机制,以实现高效和持续的推力。之所以选择水作为矢量流体,是因为它可以从周围环境中获得。水室定尺过程采用CFD方法对分析模型进行校准,以完善分析模型并预测推进性能。推力器定型后,制作了实验样机并进行了模型验证。对结果进行了比较和讨论,并提出了改进和发展的领域。
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