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COMPARATIVE ANALYSIS OF PROPULSIVE SYSTEM IN MULTI-ROTOR UNMANNED AERIAL VEHICLE

机译:多旋翼无人飞行器专用系统的比较分析

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In an advanced Multi-rotor Unmanned Aerial Vehicle (UAV), the existing methodology of the propeller and its parametric modification leads to provide the various performance characteristics by inducing the operating efficiency. The subsisting solution for obtaining the thrust, rate of climb and forward speed by proliferating the propeller configuration and modification the design aspects in propeller by varying the pitch angle and consisting parameters in a Multi-rotor UA V. Instead of adding or modifying the design aspects, this article recommends the propeller with attaching Convergent-Divergent (C-D) Nozzle duct, which leads to producing the augmented thrust efficiency than the normal functioning system. And the comparison of the propeller with and without attaching the convergent nozzle duct, divergent nozzle duct, C-D nozzle duct has been analyzed using the numerical simulation and scrutinizing the optimized conceptual design of propeller is done with the help of ANSYS Workbench, where the design methodology is modeled by CATIA. By the result of the simulation, it leads to provide the efficient characteristics and design aspects of the Multi-rotor Unmanned Aerial Vehicle.
机译:在先进的多旋翼无人机(UAV)中,螺旋桨的现有方法及其参数修改导致通过提高运行效率而提供各种性能特征。通过增加螺旋桨配置并通过改变桨距角和多旋翼UA V中的参数来修改螺旋桨设计方面的方法来获得推力,爬升率和前进速度的基本解决方案。无需添加或修改设计方面,本文推荐了螺旋桨,该螺旋桨带有会聚-发散(CD)喷嘴导管,与正常功能的系统相比,该导管可产生更大的推力效率。并使用数值模拟分析了螺旋桨有无附接会聚喷嘴导管,发散喷嘴导管,CD喷嘴导管的比较,并借助ANSYS Workbench仔细研究了螺旋桨的优化概念设计,其中设计方法由CATIA建模。通过仿真结果,可以提供多旋翼无人机的高效特性和设计方面。

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