Stagnation heat flux estimation in spherically blunt axisymmetric hypersonic models

被引:1
|
作者
Irimpan, Kiran J. [1 ]
Menezes, Viren [2 ]
机构
[1] Adi Shankara Inst Engn & Technol, Dept Mech Engn, Kalady 683574, Ernakulam, India
[2] Indian Inst Technol, Dept Aerosp Engn, Mumbai, Maharashtra, India
关键词
heat flux; shock standoff distance; hypersonic; shock tunnel; shadowgraph;
D O I
10.1177/09544100221124799
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Hypersonic flows have high heat transfer rates, and their management is essential to avoid detrimental effects. Since accurate prediction and measurement of heat flux in hypersonic test facilities are complicated, heat flux at the stagnation point is mostly estimated using Fay and Riddell formulation with Newtonian tangential velocity gradient approximation. Although it is relatively accurate and reliable, some errors creep in due to incompetent modelling of the tangential velocity gradient. This article studies the applicability of Olivier's tangential velocity gradient formulation for a sphere in the estimation of stagnation heat flux for spherically blunt axisymmetric hypersonic models. Oliver's estimation accurately models the tangential velocity gradient of spherically blunt axisymmetric hypersonic models as the heat flux estimates deviated only by approx. 2%-4% from the measured heat flux. A simplified model for tangential velocity gradient using Shock Standoff Distance and density ratio is also derived and tested for accuracy.
引用
收藏
页码:1369 / 1375
页数:7
相关论文
共 50 条
  • [21] COMPARISON OF THEORY WITH EXPERIMENT ON A BLUNT AXISYMMETRIC BODY IN HYPERSONIC FLOW
    HORSTMAN, CC
    AIAA JOURNAL, 1963, 1 (07) : 1688 - 1689
  • [22] AXISYMMETRIC STAGNATION-POINT FLOW AND HEAT TRANSFER OF NANOFLUID IMPINGING ON A CYLINDER WITH CONSTANT WALL HEAT FLUX
    Mohammadiun, Hamid
    Amerian, Vahid
    Mohammadiun, Mohammad
    Khazaee, Iman
    Darabi, Mohsen
    Zahedi, Mohammadreza
    THERMAL SCIENCE, 2019, 23 (05): : 3153 - 3164
  • [23] Axisymmetric stagnation-point flow and heat transfer of a viscous, compressible fluid on a cylinder with constant heat flux
    Mohammadiun, H.
    Rahimi, A. B.
    Kianifar, A.
    SCIENTIA IRANICA, 2013, 20 (01) : 185 - 194
  • [24] STAGNATION POINT HEAT TRANSFER FOR HYPERSONIC FLOW
    ROMIG, MF
    JET PROPULSION, 1956, 26 (12): : 1098 - 1101
  • [25] SIMILITUDE TREATMENT OF HYPERSONIC STAGNATION HEAT TRANSFER
    ROSNER, DE
    ARS JOURNAL, 1959, 29 (03): : 215 - 216
  • [26] Heat flux distribution and deviation of stagnation point on blunt body under atmospheric dense environment
    Xu, Bin
    Huang, Tianchen
    Jing, Jianbin
    Zhang, Chuanxia
    Li, Kang
    Wang, Yangliang
    Ye, Taohong
    ENERGY, 2025, 319
  • [27] EXPERIMENTAL EFFECT OF BLUNTNESS AND GAS RAREFACTION ON DRAG COEFFICIENTS AND STAGNATION HEAT TRANSFER ON AXISYMMETRIC SHAPES IN HYPERSONIC FLOW
    BLOXSOM, DE
    RHODES, BV
    JOURNAL OF THE AEROSPACE SCIENCES, 1962, 29 (12): : 1429 - 1432
  • [28] RADIATION FROM NONISOTHERMAL GASES TO THE STAGNATION POINT OF A HYPERSONIC BLUNT BODY
    KOH, JCY
    ARS JOURNAL, 1962, 32 (09): : 1374 - 1377
  • [29] HYPERSONIC FLOW NEAR THE FORWARD STAGNATION POINT OF A BLUNT BODY OF REVOLUTION
    OGUCHI, H
    JOURNAL OF THE AEROSPACE SCIENCES, 1958, 25 (12): : 789 - 790
  • [30] ON CATALYTIC RECOMBINATION RATES IN HYPERSONIC STAGNATION HEAT TRANSFER
    GOULARD, R
    JET PROPULSION, 1958, 28 (11): : 737 - 745