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Submersible Unmanned Aerial Vehicle Concept Design Study

机译:潜水无人驾驶空中车概念设计研究

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A submersible UAV is a hybrid aerial-underwater vehicle which can fly in the air and navigate in the water. Survival in the two contradictory fluids needs particular shape, fuselage and wing structure, propulsion. In this paper, a concept of an amphibious UAV with the air-to-water transition of plunge-diving and the water-to-air transition of vertical take-off from the water surface is proposed. The structure characteristics that are adaptive to both of the air and the water, including the grider erection fuselage and the hollow and no-rib wings for the rapid water injection and drainage to adjust its average density, the foldable device for the wing to fold back to reduce drag in the water, are described and analyzed in detail. The estimation and design of the propulsions for the air and the water voyage and the balloon upright system are introduced. The impact accleration experienced by the whole structure of the UAV is calculated by the CFD method. Finally, the design and performance analysis of the wings are presented. The preliminary work carried out in this paper can provide some feasible proposals for the the ultimate realization of a submersible UAV.
机译:的潜水UAV是混合空中-水下航行器,其可以在水中的空气和导航飞行。生存在两个相互矛盾的需要的流体特定的形状,机身和机翼结构,推进力。在本文中,与切入潜水和从水表面垂直起飞的水 - 空气过渡的空气 - 水过渡水陆两用UAV的概念提出。的结构特点是自适应到两个空气和水,包括grider勃起机身和中空和无肋翼的快速注水和排水调整其平均密度,对于翼向后折叠的折叠机器的以减少水的阻力,描述和详细分析。该propulsions对空气和水的航程和气球直立系统的评估和设计进行了介绍。由UAV的整体结构所经历的冲击accleration由CFD方法计算。最后,机翼的设计和性能分析介绍。在本文中进行的前期工作可以提供潜水无人机的最终实现一些可行的建议。

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