电弧风洞中基于TDLAS的气体温度和氧原子浓度测试
Measurements of gas temperature and atomic oxygen density in the arc-heated wind tunnel based on TDLAS
查看参考文献16篇
文摘
|
电弧风洞是对防热材料/结构进行地面考核的关键设备,其流场参数是评估设备性能和品质的关键数据。由于高温气流的恶劣环境,尚无有效诊断手段。本文使用可调谐二极管吸收光谱技术(TDLAS),针对气流中氧原子,选用氧原子特征吸收谱线(λ=777.2nm),测量了电弧风洞中水冷平头圆柱体模型脱体激波后的气体温度和氧原子数密度,试验测量与工程计算结果较为一致。试验显示出TDLAS具有高温电弧风洞应用的潜在优势。 |
其他语种文摘
|
Large-scale,high-enthalpy arc heated wind tunnels are the most reliable ground test facilities to test thermal protection materials and heat shield structures for space vehicles. Flow conditions in the facility need to be monitored.Currently,the facility conditions are defined using either the anticipated surface temperature with an assuming emissivity or the expected heat flux level.While this is useful to evaluate relative performance of the facility,it is not sufficient for quantitative measurement of the flow conditions.Temperature is one of the most important thermodynamic quantities in determining arc heated wind tunnel because it is a key parameter in determining arc-heater operating status and chemical reactions.Therefore,the development of accurate quantitative diagnostic techniques is necessary for better understanding the complex physics involved in the arc heated wind tunnel.The design of a tunable diode laser absorption spectroscopy (TDLAS) system to probe gas parameters during a bow shock wave ahead of a water cooled copper cylinder is presented in this paper.TDLAS is an effective method for measuring gas temperature and concentration in many fields due to its advantage of non-intrusive,high sensitivity, gas-specific and quick response.In our studies,an atomic oxygen absorption line near 777.2 nm is utilized for detecting the arc-heated plasma using scanned-wavelength direct absorption mode with 100 Hz repetition rate.The value of temperature is inferred directly from the Doppler broadening component of the absorption lineshape.Moreover,the number density of atomic oxygen is also determined through the integrated absorbance assuming local thermal equilibrium conditions.The agreement of the experimental observations and theoretical calculations shows that the thermal equilibrium assumption is valid.The current experimental results of this study illustrate the high potential of TDLAS measurements for routine and economical monitoring of arc heated wind tunnel operating status (gas temperature) as well as the time-resolved flow conditions in front of the model. |
来源
|
实验流体力学
,2015,29(3):62-67 【核心库】
|
DOI
|
10.11729/syltlx20140071
|
关键词
|
TDLAS
;
电弧风洞
;
流场参数
;
气体温度
;
氧原子浓度
|
地址
|
1.
中国航天空气动力技术研究院, 北京, 100074
2.
中国科学院力学研究所, 高温气体动力学国家重点实验室, 北京, 100190
|
语种
|
中文 |
文献类型
|
研究性论文 |
ISSN
|
1672-9897 |
学科
|
航天(宇宙航行) |
文献收藏号
|
CSCD:5468994
|
参考文献 共
16
共1页
|
1.
Cipullo A. Temperature measurements of air plasma flow using optical emission spectroscopy.
Journal of Thermophysics and Heat Transfer,2011,25(3):354-360
|
CSCD被引
2
次
|
|
|
|
2.
Filippis F D. Chemical species and nonequilibrium temperatures for airflows in a plasma wind tunnel.
Journal of Thermophysics and Heat Transfer,2012,24(2):271-280
|
CSCD被引
1
次
|
|
|
|
3.
Takayanagi H. Arc wind-tunnel flow diagnostics by cavity-enhanced absorption spectroscopy.
AIAA Journal,2009,47(5):1195-1198
|
CSCD被引
1
次
|
|
|
|
4.
岳斌.
非平衡电弧等离子体光谱学诊断方法的研究,2003
|
CSCD被引
1
次
|
|
|
|
5.
赵文华. 电弧加热发动机尾流的光谱诊断.
光谱学与光谱分析,2004,24(8):897-901
|
CSCD被引
3
次
|
|
|
|
6.
Hanson R K. Applications of quantitative laser sensors to kinetics, propulsion and practical energy systems.
Proceedings of the Combustion Institute,2011(33):1-40
|
CSCD被引
41
次
|
|
|
|
7.
李飞. TDLAS测量甲烷/空气预混平面火焰温度和H_2O浓度.
实验流体力学,2009,23(2):40-44
|
CSCD被引
17
次
|
|
|
|
8.
Kim S.
Measurements of gas temperature in the arc-heater of a large scale arcjet facility using tunable diode laser absorption.AIAA-2005-900
|
CSCD被引
1
次
|
|
|
|
9.
Takayanagi H.
Development of high sensitive laser absorption spectroscopy for arc-heater flow diagnostics.AIAA-2006-3447
|
CSCD被引
1
次
|
|
|
|
10.
Li F. Simultaneous measurements of multiple flow parameters for scramjet characterization using tunable diode-laser sensors.
Applied Optics,2011,50(36):6697-6707
|
CSCD被引
17
次
|
|
|
|
11.
余西龙. 可调谐二极管激光吸收光谱诊断燃烧参数.
空气动力学学报,2009,27(z1):95-100
|
CSCD被引
1
次
|
|
|
|
12.
Lin X. CO concentration and temperature measurements in a shock tube for Martian mixtures by coupling OES and TDLAS.
Applied Physics B,2013,100:401-409
|
CSCD被引
5
次
|
|
|
|
13.
Matsui M. Sensitivity enhancement of laser absorption spectroscopy for atomic oxygen measurement in microwave air plasma.
Vacuum,2009,83:21-24
|
CSCD被引
1
次
|
|
|
|
14.
Chao X. Absorption sensor for CO in combustion gases using 2.3μm tunable diode lasers.
Measurement Science and Technology,2009,20:115201
|
CSCD被引
11
次
|
|
|
|
15.
Riek G B.
Wavelength-modulation spectroscopy for measurements of gas temperature and concentration in harsh environments,2009
|
CSCD被引
1
次
|
|
|
|
16.
潘锦珊.
气体动力学基础,1995
|
CSCD被引
28
次
|
|
|
|
|