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Research on the Aerodynamic Characteristics of Leading Edge and Bulge of Ram-Air Parafoil Based on CFD
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作者 Lei Ding Lingrui Chen +2 位作者 Yalei Bai Huimin Yao Chuanyu Gao 《World Journal of Engineering and Technology》 2023年第4期989-999,共11页
This study focuses on the aerodynamic characteristics and flow mechanism of three different configurations of ram-air parafoil with open/closed air inlet and bulges. Firstly, we designed a special parafoil configurati... This study focuses on the aerodynamic characteristics and flow mechanism of three different configurations of ram-air parafoil with open/closed air inlet and bulges. Firstly, we designed a special parafoil configuration for this study. Then we used numerical simulation to obtain the aerodynamic data of three parafoils at different angles of attack, and studied the influence of the bulge and the leading edge open/closed inlet on the aerodynamic performance of the ram-air parafoil. Finally, we study the flow mechanism of the ram-air parafoil through the pressure distribution and flow field. The results of the study show that compared with the aerodynamic parameters of the parafoil without bulges, the optimal angle of attack of the two parafoils with bulges is increased by 4?, the maximum lift to drag ratio of the parafoil with closed leading edge is reduced by about 4.3% and the optimal angle of attack is reduced by about 2?. The maximum lift to drag ratio of the parafoil with open leading edge is reduced by about 23.6% and the stalling angle of attack is reduced by about 4?. The pressure on the surface of a ram-air parafoil with open leading edge inlet is the highest. . 展开更多
关键词 ram-air parafoil Numerical Simulation Aerodynamic Characteristics Flow Mechanism
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基于预处理方法的冲压式翼伞非定常气动特性数值研究 被引量:3
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作者 李扬 夏刚 秦子增 《航天返回与遥感》 2004年第2期1-4,共4页
开展绕冲压式翼伞内外一体化流场的二维、不可压、非定常数值模拟。采用预处理的双时间步长方法 ,研究了冲压式翼伞在有攻角飞行时阻力、升力的瞬态特性和非定常旋涡脱落对翼伞气动力的影响问题。气动力特性的计算值与实验结果吻合较好 ... 开展绕冲压式翼伞内外一体化流场的二维、不可压、非定常数值模拟。采用预处理的双时间步长方法 ,研究了冲压式翼伞在有攻角飞行时阻力、升力的瞬态特性和非定常旋涡脱落对翼伞气动力的影响问题。气动力特性的计算值与实验结果吻合较好 ,并观察到升力和阻力在大攻角飞行中的周期性变化规律。同时流场的瞬态特性证实上翼面旋涡的发展与运动是导致翼伞气动力脉动的主要原因。计算发现在前缘切口的冲压作用下 ,翼伞内部的压力较高 ,气流几乎保持滞止 ,这是维持翼伞充气外形的主要原因。 展开更多
关键词 冲压式翼伞 非定常 降落伞 空气动力学 预处理方法 不可压流动
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