Experimental study on the water entry of a vehicle with a single canard wing at an initial angle of attack

IF 3.6 2区 工程技术 Q1 MECHANICS
Wenpeng Li, Cong Wang, Haiyu Xu, Yanyi Ding
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Abstract

The use of flow control techniques is important to enhance vehicle motion stability during water entry. This paper introduces a method that applies a canard wing to the water entry problem, and the vertical water-entry process of a vehicle with a single canard wing at an initial angle of attack was experimentally studied. The cavity evolution and vehicle kinematics during water entry at various impact velocities and initial angles of attack were investigated. The results indicate that the fore-end cavity and the attached cavity on the wing are features of a vehicle with a canard wing during water entry. Unlike a wingless vehicle, the canard-wing configuration provides a restoring moment that corrects the deflection of the trajectory and attitude. As the impact velocity increased, the vehicle trajectory gradually corrected to a vertical straight-line trajectory before deflecting in the direction opposite to the side without a wing. As the initial angle of attack increased, the vehicle trajectory gradually shifted towards the side with the wing; however, the attitude remained stable without continuous deflection. The canard wing prevents a continuous change in attitude deflection caused by the initial angle of attack.

Abstract Image

关于单鸭翼飞行器在初始攻角下入水的实验研究
使用流量控制技术对于提高飞行器在入水时的运动稳定性非常重要。本文介绍了一种将鸭翼应用于入水问题的方法,并对带有单鸭翼的飞行器在初始攻角下的垂直入水过程进行了实验研究。研究了在不同冲击速度和初始攻角条件下的入水过程中的空腔演变和飞行器运动学特性。结果表明,前端空腔和机翼上的附着空腔是带鸭翼飞行器在入水时的特征。与无翼飞行器不同,鸭翼结构提供了一个恢复力矩,可以修正飞行器的轨迹和姿态偏差。随着撞击速度的增加,飞行器的轨迹逐渐修正为垂直直线轨迹,然后向与无翼侧相反的方向偏转。随着初始攻角的增大,飞行器的轨迹逐渐向有机翼的一侧偏移;然而,姿态保持稳定,没有持续偏转。鸭翼防止了由初始攻角引起的姿态偏转的持续变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.30
自引率
10.50%
发文量
244
审稿时长
4 months
期刊介绍: The International Journal of Multiphase Flow publishes analytical, numerical and experimental articles of lasting interest. The scope of the journal includes all aspects of mass, momentum and energy exchange phenomena among different phases such as occur in disperse flows, gas–liquid and liquid–liquid flows, flows in porous media, boiling, granular flows and others. The journal publishes full papers, brief communications and conference announcements.
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