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二维地效翼气动力的计算和性能研究 被引量:13
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作者 张亮 陈萌萌 吴德铭 《船舶力学》 EI 2000年第2期2-5,共4页
本文基于势流边界元理论(BEM)和边界层动量积分关系式数值求解二维地效翼的气动力 ,研究了升力正负地效问题及粘性对地效翼升力、俯仰力矩及焦点的影响 。
关键词 势流边界元 BEM 地效翼船 二维地效翼 气动力
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地效飞行器波浪环境下气动特性分析
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作者 王芳丽 张恒珲 +1 位作者 王明振 童明波 《计算机仿真》 2024年第3期33-40,共8页
基于计算流体力学与海洋波浪理论,非定常不可压RANS方程采用有限体积法求解,采用VOF液面捕捉法、整体动网格法、速度入口造波法,探究波浪环境以及无动力地效飞行器姿态对其气动性能影响。结果表明,在规则波浪情况下,无动力地效飞行器最... 基于计算流体力学与海洋波浪理论,非定常不可压RANS方程采用有限体积法求解,采用VOF液面捕捉法、整体动网格法、速度入口造波法,探究波浪环境以及无动力地效飞行器姿态对其气动性能影响。结果表明,在规则波浪情况下,无动力地效飞行器最佳巡航角度为4°左右,在上行波时,升阻比下降,气动力性能相对减弱;在下行波时,升阻比上升,气动力性能相对增强,2°攻角变化规律相反。对于相同姿态角,波浪位置对地效飞行器机翼的气动性能影响较小,上翼面压力系数变化较小,在上行波时,机翼下表面压力增加,正压区范围扩大;在下行波时则相反。地效飞行器处于同一波浪位置时,上翼面前缘负压区随攻角增大而增大,下翼面前缘正压区随攻角增大而减小,压力系数快速增加。 展开更多
关键词 地效飞行器 地面效应 两相流 规则波 数值模拟
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地效飞机的纵向稳定性和气动布局特点研究 被引量:11
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作者 乐挺 王立新 《飞行力学》 CSCD 北大核心 2007年第3期5-8,共4页
分析了地面效应对飞机气动力特性的影响,以及地效飞机不同于常规飞机的纵向稳定性准则,包括重心与迎角焦点和高度焦点的位置关系、影响其纵向稳定性的主要气动导数等。研究结果表明,地效区内飞机的气动力随高度呈非线性变化,而重心必须... 分析了地面效应对飞机气动力特性的影响,以及地效飞机不同于常规飞机的纵向稳定性准则,包括重心与迎角焦点和高度焦点的位置关系、影响其纵向稳定性的主要气动导数等。研究结果表明,地效区内飞机的气动力随高度呈非线性变化,而重心必须位于迎角焦点与高度焦点之间并且靠近高度焦点才能保证地效飞机的纵向稳定性。最后根据地效飞机的稳定性准则,讨论了保证地效飞机良好飞行品质的气动布局要求。 展开更多
关键词 地效飞机 气动特性 纵向稳定性 气动布局
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The future and technique challenges of high-speed ground effect vehicle enrolled in maritime transportation
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作者 Jianhong Sun Chenlu Wang +5 位作者 Daren Zheng Zhi Sun Hao Liu Zhuoran Sheng Shengrun Zhang Weidong Zhao 《Aerospace Traffic and Safety》 2024年第1期43-54,共12页
This paper presents a high-speed ground effect vehicle(HS-GEV)used specifically for maritime transportation.Given the limitations of current vessels,including various types of watercraft and high-speed boats,in fulfil... This paper presents a high-speed ground effect vehicle(HS-GEV)used specifically for maritime transportation.Given the limitations of current vessels,including various types of watercraft and high-speed boats,in fulfilling of needs in different maritime transportation scenarios,the HS-GEV emerges as a promising solution to address unmet requirements.To efficiently accomplish maritime transportation missions with quickness and safety,several critical features are emphasized,including short take-off on water,flight maneuverability and flight stability.The key techniques required to achieve these features,as well as recent progress highlights,are introduced.Following and promoting these crucial techniques is also suggested as a future step to improve HS-GEV performance.With its predominant features,the HS-GEV holds immense application value in enhancing a high-speed maritime transportation system that aligns with the evolving needs of the real world. 展开更多
关键词 HS-GEV Maritime Transportation Drag Reduction Combined Power Wing-in-Ground(wig)effect Ground effect Vehicle(GEV)
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Numerical Simulation of Seaplane Wave Ground Effect with Crosswind 被引量:3
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作者 LI Yanghui FU Xiaoqin +1 位作者 CHEN Jichang TONG Mingbo 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第S01期1-9,共9页
Under the absolute coordinate system, the unsteady Reynolds averaged Navier-Stokes(URANS)equations and the k-ω SST turbulence model are solved using the finite volume method to simulate the aerodynamic characteristic... Under the absolute coordinate system, the unsteady Reynolds averaged Navier-Stokes(URANS)equations and the k-ω SST turbulence model are solved using the finite volume method to simulate the aerodynamic characteristics of large seaplane flying with the ground-effect above wavy surface. The velocity inlet wave-making method and the volume of fluid model are used to accurately simulate the linear regular waves and to precisely capture the free surface. This paper studies the influence of the sideslip angle on the aerodynamic characteristics of large seaplane when it is cruising above wavy water. The results show that the wave surface mainly affects the pressure distribution on the lower surface of the wing. When the sideslip angle varies from 0° to 8°,the varying of frequency of aerodynamic forces is consistent with the wave encounter frequency,and both periods are 0.6 s. With the increase of the sideslip angle,the lift coefficient and the pitching moment coefficient decrease. However,when the sideslip angle is smaller than 4°,the decrease amplitude is small,and the significant decrease occurs above 4° and during the whole process of the change of sideslip angle,the aerodynamic fluctuation amplitude is almost unchanged. As the drag coefficient increases with the increase of sideslip angle,significant increase also occurs when the value is greater than4°,and the fluctuation amplitude does not show any correlations. The rolling moment coefficient and yaw moment coefficient increase with the increase of the sideslip angle,and the fluctuation amplitudes of both increase linearly with the increase of the sideslip angle. 展开更多
关键词 two-phase flow wing-in-ground(wig)effect volume of fluid(VOF)model velocity-inlet boundary wave maker
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