Opto-Electronic Engineering, Volume. 46, Issue 10, 180575(2019)
Theoretical research of point-measurement laser absorption spectroscopy
[1] [1] Wang S T, Wang C B, Pan Z, et al. Applications of optical technology in gas concentration detection[J]. Opto-Electronic Engineering, 2017, 44(9): 862–871.
[2] [2] Li L, Yang Y G, Chen W L, et al. Correction of influence conditions in TDLAS ammonia measuring based on hollow waveguide cell[J]. Opto-Electronic Engineering, 2015, 45(12):35–40.
[3] [3] Sun P S, Zhang Z R, Xia H, et al. Study on real-time temperature measurement based on wavelength modulation technology[J]. Acta Optica Sinica, 2015, 35(2): 0230001.
[4] [4] Yin K W, Xu D, Zhang L, et al. 2D reconstruction for gas temperature and concentration based on TDLAS[J]. Opto-Electronic Engineering, 2016, 43(12): 20–27.
[5] [5] Jia L Q, Liu W Q, Kan R F, et al. Oxygen mass flow detection method in supersonic flow based on TDLAS[J]. Acta Photonica Sinica, 2015, 44(7): 0730001.
[8] [8] Liu C, Xu L J, Cao Z, et al. One-dimensional tomography of axisymmetric temperature distribution with limited TDLAS data by using three-point Abel deconvolution[C]//Proceedings of 2014 IEEE International Conference on Imaging Systems and Techniques, 2014: 432–435.
[9] [9] Xu L J, Liu C, Jing W Y, et al. Tunable diode laser absorption spectroscopy-based tomography system for on-line monitoring of two-dimensional distributions of temperature and H2O mole fraction[J]. Review of Scientific Instruments, 2016, 87(1):013101.
[10] [10] Li J Y, Du Z H, Zhou T, et al. Non-uniform temperature distribution measurement of combustion field using temperature tuning multi-line thermometry[J]. Acta Optica Sinica, 2013, 33(S2): s212009.
[11] [11] Nadir Z, Brown M S, Comer M L, et al. Gaussian mixture prior models for imaging of flow cross sections from sparse hyperspectral measurements[C]//Proceedings of 2015 IEEE Global Conference on Signal and Information Processing, 2015:527–531.
[12] [12] Barone D L. Investigation of TDLAS measurements in a scramjet engine[D]. Cincinnati: University of Cincinnati, 2010.
[13] [13] Hannemann K. Hypersonic research in the high-enthalpy shock tunnel G ttingen[C]//Proceedings of the 30th International Symposium on Shock Waves 2, 2017: 1385–1390.
[14] [14] Ou D B, Chen L Z, Dong Y H, et al. Measurements of gas temperature and atomic oxygen density in the arc-heated wind tunnel based on TDLAS[J]. Journal of Experiments in Fluid Mechanics, 2015, 29(3): 62–67.
[15] [15] Kianvashrad N, Knight D. Effect of vibrational temperature boundary condition of isothermal wall on hypersonic shock wave laminar boundary layer interaction of a hollow cylinder flare[C]//Proceedings of the 7th European Conference for Aeronautics and Aerospace Sciences, 2017.
[16] [16] Matsudo T, Takahara Y, Hori H, et al. Pseudomomentum transfer from evanescent waves to atoms measured by saturated absorption spectroscopy[J]. Optics Communications,1998, 145(1–6): 64–68.
[17] [17] Jing Y F, Yan S B, Qin L, et al. Research of thin Rb vapor cell’s saturated absorption spectroscopy[J]. Laser & Infrared, 2010,40(7): 697–699.
[18] [18] Kumar P, Saini V K, Purbia G S, et al. Hyperfine structure studies of neutral europium transitions at 601.815 and 580.027 nm by saturation absorption spectroscopy[J]. Applied Optics,2017, 56(6): 1579–1584.
[19] [19] Zizak G, Cignoli F, Benecchi S. Spatially resolved saturated absorption measurements of OH in methane-air flames[J]. Applied Optics, 1987, 26(19): 4293–4297.
[20] [20] Goldsmith J E M. Spatially resolved saturated absorption spectroscopy in flames[J]. Optics Letters, 1981, 6(11):525–527.
[21] [21] Walters P E, Long G L, Winefordner J D. Spatially resolved concentration studies of ground state atoms and ions in an ICP:saturated absorption spectroscopic method[J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 1984, 39(1): 69–76.
[22] [22] Kychakoff G, Howe R D, Hanson R K. Spatially resolved combustion measurements using cross-beam saturated absorption spectroscopy[J]. Applied Optics, 1984, 23(9): 1303–1305.
[23] [23] Nomura S, Kaneko T, Komurasaki K. Development of highly sensitive and spatially resolved laser absorption spectroscopy for plasma wind tunnel measurement[C]//Proceedings of the 50th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, 2012.
[24] [24] Nomura S, Ito G, Fujita K, et al. Translational temperature measurements in a shock layer by point-measurement laser absorption spectroscopy[C]//Proceedings of the 52nd Aerospace Sciences Meeting, 2015.
[25] [25] Demtroder W. Laser Spectroscopy (Vol. 2): Experimental Techniques[M]. Ji Y, trans. Beijing: Science Press, 2012:121–124.
[26] [26] Wang J, Huang W, Gu H T, et al. Gas temperature measurement with tunable diode laser absorption spectroscopy[J]. Acta Optica Sinica, 2007, 27(9): 1639–1642.
[27] [27] Kim S. Development of tunable diode laser absorption sensors for a large-scale arc-heated-plasma wind tunnel[D]. Stanford:Stanford University, 2004.
[28] [28] Parks T, McClellan J. Chebyshev approximation for nonrecursive digital filters with linear phase[J]. IEEE Transactions on Circuit Theory, 1972, 19(2): 189–194.
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Chen Wei, Wu Yue, Luo Jie, Liu Jinbo, Wang Lei, Zhu Xinxin, Zhu Tao. Theoretical research of point-measurement laser absorption spectroscopy[J]. Opto-Electronic Engineering, 2019, 46(10): 180575
Category: Article
Received: Nov. 12, 2018
Accepted: --
Published Online: Nov. 19, 2019
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