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首页> 外文期刊>Research journal of applied science, engineering and technology >Design Optimization of a Micro Air Vehicle (MAV) Fixed Wing
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Design Optimization of a Micro Air Vehicle (MAV) Fixed Wing

机译:微型空气车辆(MAV)固定翼设计优化

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air vehicles are gaining attention due to their wide range of applications in civilian and defense fields. The wings of these vehicles generate a particular flow regime which is to be explored further. Since the theories on the aerodynamics of all affects are still to be investigated, simulation based computational fluid dynamics is a good approach rather than wind tunnel experiments which involves cost and long periods of experimentation. This study mainly emphasize on the lift, lift coefficient, drag and drag coefficient with respect to Reynold's number and angle of attack, by modelling and analyzing the fixed wing of a micro air vehicle. The analysis has been done selecting NACA25411 air foil. Modelling has been done in Gambit and analysis is taken up using Fluent. Angle of attack and Reynold's number have been optimized to increase the lift and decrease the drag.
机译:由于他们在平民和国防领域的广泛应用,空气汽车正在引起关注。这些车辆的翅膀产生了特定的流动制度,该流动制度将进一步探索。由于仍然需要研究所有影响的空气动力学的理论,因此基于模拟的计算流体动力学是一种良好的方法而不是风洞实验,涉及成本和长时间的实验。本研究主要通过建模和分析微型空气车辆的固定翼来强调雷诺数和攻角的升力,提升系数,阻力和拖曳系数。分析已经完成了选择Naca25411空气箔。在Gambit中已经在Gambit中进行了建模,并使用流利的分析进行了分析。攻击角度和雷诺数已被优化以增加升力并减少阻力。

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