Experimental and numerical investigation on the unsteady interaction in longitudinal stage separation for parallel-staged two-body configuration
Wang Y(王粤)1,2; Wang YP(汪运鹏)1,2; Jiang ZL(姜宗林)1,2
刊名Physics of Fluids
2024-01-09
卷号36页码:016116
关键词Two-stage-to-orbit Wind tunnel test Numerical simulation Stage separation Hypersonic Shock waves
DOI10.1063/5.0184293
英文摘要

Hypersonic stage separation is a significant process, probably involving complex aerodynamic interaction, which determines the survival of two-stage-to-orbit (TSTO) vehicles. The longitudinal stage separation (LSS) scheme is proposed to improve the safety of the parallel-staged TSTO vehicle, where a small interstage gap may result in weak interference. Therefore, an experimental and numerical study of LSS for the parallel-staged TSTO vehicle at Mach 7 with different angles of attack (AoA) is carried out. The dynamic interaction, including variations in the shock structure, wall pressure distribution, and unsteady aerodynamics, is investigated by testing and numerical simulation. The LSS experiments for the TSTO vehicle were performed using a high-speed pneumatic ejection launch system in the JF-12 shock tunnel, and the method was developed using high-speed visualization and image processing techniques to capture the separating trajectory. The numerical simulations were carried out using the overset grid method and solving the Navier–Stokes equations coupled with the rigid body dynamics equations to obtain the laminar flows over the TSTO vehicle during LSS. The qualitative and quantitative comparison of the test and numerical results showed good agreement in terms of aerodynamic performance, flowfield pattern, wall pressure, and separation trajectory. They show that the small interstage gap of the LSS leads to weak type I and VI shock–shock interactions, with short-duration weak shock reflection at a higher AoA. Furthermore, no shock reflection or interstage gap is observed at lower AoA. Moreover, no stage recontact is observed, and the safety and feasibility of LSS for parallel-staged TSTO vehicles are demonstrated.

学科主题气体动力学 ; 计算流体力学 ; 实验流体力学 ; 应用力学 ; 大气层飞行力学 ; 航天器地面试验
分类号一类/力学重要期刊
语种英语
其他责任者汪运鹏
内容类型期刊论文
源URL[http://dspace.imech.ac.cn/handle/311007/93683]  
专题力学研究所_高温气体动力学国家重点实验室
通讯作者Wang YP(汪运鹏)
作者单位1.School of Engineering Science, University of Chinese Academy of Sciences, Beijing 100049, China
2.State Key Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190,
推荐引用方式
GB/T 7714
Wang Y,Wang YP,Jiang ZL. Experimental and numerical investigation on the unsteady interaction in longitudinal stage separation for parallel-staged two-body configuration[J]. Physics of Fluids,2024,36:016116.
APA Wang Y,Wang YP,&Jiang ZL.(2024).Experimental and numerical investigation on the unsteady interaction in longitudinal stage separation for parallel-staged two-body configuration.Physics of Fluids,36,016116.
MLA Wang Y,et al."Experimental and numerical investigation on the unsteady interaction in longitudinal stage separation for parallel-staged two-body configuration".Physics of Fluids 36(2024):016116.
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