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首页> 外文期刊>Acta astronautica >Effect of static shape deformation on aerodynamics and aerothermodynamics of hypersonic inflatable aerodynamic decelerator
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Effect of static shape deformation on aerodynamics and aerothermodynamics of hypersonic inflatable aerodynamic decelerator

机译:静态形状变形对高超声速充气气动减速器空气动力学和空气热力学的影响

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摘要

Abstract The inflatable aerodynamic decelerator (IAD), which allows heavier and larger payloads and offers flexibility in landing site selection at higher altitudes, possesses potential superiority in next generation space transport system. However, due to the flexibilities of material and structure assembly, IAD inevitably experiences surface deformation during atmospheric entry, which in turn alters the flowfield around the vehicle and leads to the variations of aerodynamics and aerothermodynamics. In the current study, the effect of the static shape deformation on the hypersonic aerodynamics and aerothermodynamics of a stacked tori Hypersonic Inflatable Aerodynamic Decelerator (HIAD) is demonstrated and analyzed in detail by solving compressible Navier-Stokes equations with Menter's shear stress transport (SST) turbulence model. The deformed shape is obtained by structural modeling in the presence of maximum aerodynamic pressure during entry. The numerical results show that the undulating shape deformation makes significant difference to flow structure. In particular, the more curved outboard forebody surface results in local flow separations and reattachments in valleys, which consequently yields remarkable fluctuations of surface conditions with pressure rising in valleys yet dropping on crests while shear stress and heat flux falling in valleys yet rising on crests. Accordingly, compared with the initial (undeformed) shape, the corresponding differences of surface conditions get more striking outboard, with maximum augmentations of 379 pa, 2224 pa, and 19.0W/cm2, i.e., 9.8%, 305.9%, and 101.6% for the pressure, shear stress and heat flux respectively. Moreover, it is found that, with the increase of angle of attack, the aerodynamic characters and surface heating vary and the aeroheating disparities are evident between the deformed and initial shape. For the deformable HIAD model investigated in this study, the more intense surface conditions and changed flight aerodynamics are revealed, which is critical for the selection of structure material and design of flight control system. Highlights Static deformation of the HIAD under mechanical loads is demonstrated. Hypersonic flowfield features of the deformed HIAD are numerically investigated. Forebody surface undulation induces regional flow expansion and compression. Surface pressure, shear stress and heat flux present remarkable fluctuations.
机译: 摘要 充气式气动减速器(IAD)可以承载更大和更大的有效载荷,并在更高的高度选择着陆点时具有灵活性,在下一代太空运输系统中具有潜在的优势。但是,由于材料和结构组装的灵活性,IAD不可避免地会在大气进入过程中发生表面变形,进而改变车辆周围的流场,并导致空气动力学和空气热力学的变化。在当前的研究中,通过用Menter的剪切应力传递(SST)求解可压缩的Navier-Stokes方程,详细展示并分析了静态形状变形对叠层托里高超声速充气气动减速器(HIAD)的高超声速空气动力学和空气动力学的影响。湍流模型。通过在进入过程中存在最大空气动力压力的情况下通过结构建模获得变形的形状。数值结果表明,波浪形变形对流场结构有明显的影响。特别地,前曲面的前曲面更弯曲会导致山谷中的局部流动分离和重新附着,因此会产生明显的表面条件波动,其中山谷中的压力升高而在波峰处下降,而山谷中的剪应力和热通量却下降而在波峰中上升。因此,与初始(未变形)形状相比,相应的表面条件差异更加明显,最大增加了379 pa,2224 pa和19.0 W / cm 2 ,即压力,剪切应力和热通量分别为9.8%,305.9%和101.6%。此外,发现随着迎角的增加,空气动力特性和表面加热发生变化,并且变形和初始形状之间的空气加热差异明显。对于本研究中研究的可变形HIAD模型,揭示了更剧烈的表面条件和变化的飞行空气动力学特性,这对于结构材料的选择和飞行控制系统的设计至关重要。 突出显示 < ce:label>• 在机械载荷下HIAD的静态变形得到了证明。 对变形HIAD的超人流场特征进行了数值研究。 前体表面起伏会引起区域流量扩展和压缩。 表面压力,剪切应力和热通量出现明显的波动。

著录项

  • 来源
    《Acta astronautica》 |2017年第7期|421-433|共13页
  • 作者单位

    Laboratory of Fundamental Science on Ergonomics and Environmental Control, School of Aeronautic Science and Engineering, Beihang University;

    Laboratory of Fundamental Science on Ergonomics and Environmental Control, School of Aeronautic Science and Engineering, Beihang University;

    Laboratory of Fundamental Science on Ergonomics and Environmental Control, School of Aeronautic Science and Engineering, Beihang University;

    Beijing Institute of Electronic System Engineering;

    Beijing Institute of Electronic System Engineering;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Inflatable aerodynamic decelerator; Deformation; Aerodynamics; Aerothermodynamics; Hypersonic;

    机译:充气式气动减速器;变形;气动;空气热力学;超人性;

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