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Aerodynamic performances of cruise missile flying above local terrain

机译:巡航导弹飞行在当地地形上方的空气动力学性能

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Cruise missile can be classified as a smart bomb and also Unmanned Aerial Vehicle (UAV) due to its ability to move and manoeuvre by itself without a pilot. Cruise missile flies in constant velocity in cruising stage. Malaysia is one of the consumers of cruise missiles that are imported from other nations, which can have distinct geographic factors including their local terrains compared to Malaysia. Some of the aerodynamic performances of missile such as drag and lift coefficients can be affected by the local geographic conditions in Malaysia, which is different from the origin nation. Therefore, a detailed study must be done to get aerodynamic performance of cruise missiles that operate in Malaysia. The effect of aerodynamic angles such as angle of attack and side slip can be used to investigate the aerodynamic performances of cruise missile. Hence, subsonic wind tunnel testings were conducted to obtain the aerodynamic performances of the missile at various angle of attack and sideslip angles. Smoke visualization was also performed to visualize the behaviour of flow separation. The optimum angle of attack found was at α=21° and side slip, β=10° for optimum pitching and yawing motion of cruise missile.
机译:巡航导弹可以被归类为智能炸弹,并且由于其在没有飞行员的情况下自行移动和机动的能力,也可以归类为智能炸弹和无人驾驶飞行器(UAV)。巡航导弹在巡航阶段的恒定速度下脱离。马来西亚是从其他国家进口的巡航导弹的消费者之一,这可以有不同的地理因素,包括与马来西亚相比的当地地形。导弹的一些空气动力学性能,如阻力和升力系数可能受马来西亚局部地理条件的影响,这与原始国家不同。因此,必须进行详细研究以获得在马来西亚运营的巡航导弹的空气动力学性能。空气动力学角度如攻击角度和侧滑的影响可用于研究巡航导弹的空气动力学性能。因此,进行亚源隧道试验以在各种迎角和侧滑角获得导弹的空气动力学性能。还进行了烟雾可视化以可视化流动分离的行为。发现的最佳攻角位于α= 21°和侧滑,β= 10°,用于巡航导弹的最佳俯仰和偏航运动。

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