首页> 外文会议>SAE AeroTech Europe >Hypersonic Flow Simulation towards Space Propulsion Geometries
【24h】

Hypersonic Flow Simulation towards Space Propulsion Geometries

机译:空间推进几何形状的超声波流动模拟

获取原文

摘要

This work aims to expand the applicability of an open-source numerical tool to solve hypersonic gas dynamic flows for space propulsion geometries. This is done by validating the code using two well-known hypersonic test cases, the double cone and the hollow cylinder flare, used by the NATO Research and Technology Organization for the validation of hypersonic flight for laminar viscous-inviscid interactions (D. Knight, “RTO WG 10 - Test cases for CFD validation of hypersonic flight,” in 40th AIAA Aerospace Sciences Meeting & Exhibit, 2002). The Computational Fluid Dynamic (CFD) simulation is conducted using the two-temperature solver hy2Foam that is capable to study external aerodynamics in re-entry flows. In the present work the assessment of hy2Foam to solve hypersonic complex flow features with strong interactions including non-equilibrium effects was demonstrated. Freestream conditions with stagnation enthalpy of 5.44 MJ/kg and Mach number of 12.2, for the double cone case, and stagnation enthalpy of 5.07 MJ/kg and Mach number of 11.3 for the hollow cylinder case were considered. Comparison with newer existing numerical data and experimental data from LENS XX (Large Energy National Shock Expansion Tunnel Version 2) was also performed. Special attention was taken to the phenomenon of vibrational excitation of the molecules. Different vibrational non-equilibrium models were used and compared with the available data. Hy2Foam showed consistent results, with the vibrational non-equilibrium models reducing the discrepancies between numerical and experimental results.
机译:这项工作旨在扩大开源数字工具的适用性来解决空间推进几何形状的超声波气体动态流动。这是通过验证使用两个众所周知的超音速测试案例,双锥和空心圆柱喇叭口的代码来完成的,用于北约研究和技术组织用于验证Laminar粘性反应互动的超声波飞行(D. Knight, “RTO WG 10 - 超音速飞行的CFD验证测试案例,”在第40届AIAA航空航天科学会议&展览,2002年)。使用能够在重新进入流动中研究外部空气动力学的两个温度求解器Hy2Foam进行计算流体动态(CFD)模拟。在本工作中,对Hy2Foam的评估求解具有强烈相互作用的高超声音复杂流特征。 FreeStream条件具有5.44 MJ / kg和Mach数量的停滞焓和12.2的Mach数,对于双锥形案例,并且考虑了5.07 MJ / kg和Hach数为11.3的滞留焓。还执行了与较新的现有数值数据和来自镜头XX(大能量国家震荡扩展隧道版2)的实验数据的比较。特别注意分子振动激发的现象。使用不同的振动非平衡模型并与可用数据进行比较。 HY2FOAM显示结果一致,振动非平衡模型降低了数值和实验结果之间的差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号