Recent advances in aero-optics
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Smith, 1966
Sutton, 1969, Effects of turbulent fluctuations in an optically active fluid medium, AIAA J, 7, 1737, 10.2514/3.5384
Tatarski, 1961
Klein, 1970
Mahajan, 1983, Strehl ratio for aberration in terms of their aberration variance, J Opt Soc Am, 73, 860, 10.1364/JOSA.73.000860
Jumper EJ. Recent advances in the measurement and analysis of dynamic aero-optic interactions (review paper). AIAA Paper 97-2350, June 1997.
Hugo RJ. Quantifying the spatio-temporal effects of optically-active turbulent flowfields on a coherent optical wave. Ph.D. thesis, University of Notre Dame, Notre Dame, Indiana, April 1995.
Wall, 1999, ABL hopes advances will silence critics, Aviat Week Space Technol, 151, 62
Tyson, 1991
Tyson, 1994, The status of astronomical adaptive optics systems, O E Rep, 121, 11,13
Tyson RK. Introduction. In: Tyson RK, editor. Adaptive-optics engineering handbook, Optical engineering series, vol. 67. New York: Marcel Dekker, 2000. p. 1–25.
Hugo, 1996, Experimental measurement of a time-varying optical path difference by the small-aperture beam technique, Appl Opt, 35, 4436, 10.1364/AO.35.004436
Verhoff A. Prediction of optical propagation losses through turbulent boundary/shear layers. In: Gilbert KG, Otten LJ, editors. Aero-optical phenomena, Progress in astronautics and aeronautics series, vol. 80, American Institute of Aeronautics and Astronautics. 1982. p. 40–77.
Liepmann HW. Deflection and diffusion of a light ray passing through a boundary layer. Report SM-14397, Douglas Aircraft Company, Santa Monica Division, Santa Monica, California, May 1952.
Stine HA, Winovich W. Light diffusion through high-speed turbulent boundary layers. Research Memorandum A56B21, NACA, Washington, May 1956.
Baskins LL, Hamilton LE. Preliminary wind tunnel investigation on the optical transmission characteristics of a supersonic turbulent boundary layer. Report G.M.-1.27, Northrop Aircraft Company, April 1952.
Baskins LL, Hamilton LE. The effect of boundary layer thickness upon the optical transmission characteristics of a supersonic turbulent boundary layer. Report NAI-54-756, Northrop Aircraft Company, November 1954.
Booker HG, Gordon WE. A theory of radio scattering in the troposphere. Proceedings of the I.R.E., vol. 38, April 1950. p. 401–12.
Villars, 1954, The scattering of electromagnetic waves by turbulent atmospheric fluctuations, Phys Rev, 94, 232, 10.1103/PhysRev.94.232
Gilbert KG, Otten LJ, editors. Aero-optical phenomena, Progress in astronautics and aeronautics series, vol. 80. New York: American Institute of Aeronautics and Astronautics, 1982.
Trollinger JD. Aero-optical characterization of aircraft optical turrets by holography, interferometry and shadowgraph. In: Aero-optical phenomena, Gilbert KG, Otten LJ, editors. Progress in astronautics and aeronautics series, vol. 80. New York: American Institute of Aeronautics and Astronautics, 1982. p. 200–17.
Rose WC, Johnson DA. Unsteady density and velocity measurements in the 6× 6ft wind tunnel. In: Gilbert KG, Otten LJ, editors. Aero-optical phenomena, Progress in astronautics and aeronautics series, vol. 80. New York: American Institute of Aeronautics and Astronautics, 1982. p. 218–32.
Kelsall, 1973, Rapid interferometric technique for MTF measurements in visible or infrared region, Appl Opt, 12, 1398, 10.1364/AO.12.001398
Havener G. Optical wave front variance: a study on analytic models in use today. AIAA Paper 92-0654, January 1992.
de Jonckheere RK, Chou DC, Walker J, Miller DJ. Large-scale turbulence structuring in high Reynolds number flows. AIAA Paper 88-3671, July 1988.
Chou DC, de Jonckheere RK, Lynch G. Large-scale coherent structures in high speed turbulent shear flows. AIAA Paper 86-0028, January 1986.
Cassady, 1989, Aero-optical analysis of compressible flow over an open cavity, AIAA J, 27, 758, 10.2514/3.10176
Malley, 1992, Beam-jitter measurements of turbulent aero-optical path differences, Appl Opt, 31, 4440, 10.1364/AO.31.004440
Klein HH, Malley MM, Sapp O, Shough D, Sutton GW, Yu JH-Y. Experimental measurements of the optical path difference of a four-meter dual aerocurtain. Proceedings of the High Power Laser Optical components Conference, Boulder, Colorado, October 1989.
Malacara, 1978
Geary JM. Introduction to wavefront sensors, Tutorial texts in optical engineering, vol. TT18. Bellingham, WA: SPIE Optical Engineering Press, 1995.
Olivier SS, Max CE, Friedman HW, An J, Avicola K, Beeman BV, Bissinger HD, Brase JM, Erbert GV, Gavel DT, Kanz K, Macintosh B, Neeb KP, Waltjen KE. First significant image improvement from a sodium-layer laser guide star adaptive optics system at Lick Observatory. In: Tyson RK, Fugate RQ, editors. Adaptive optics and applications, vol. 3126. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1997. p. 240–8.
Dekany R, Wallace K, Brack G, Oppenheimer BR, Palmer D. Initial test results from the Palomar 200, adaptive optics system. In: Tyson RK, Fugate, RQ, editors. Adaptive optics and applications, vol. 3126. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1997. p. 269–76.
Olympus America Inc., Industrial Products Group. EncoreTM digital, high-speed video camera system. Product Literature, 1998.
Neal DR, O'Hern, TJ, Torczynski JR, Warren ME, Shul R, McKechnie TS. Wavefront sensors for optical diagnostics in fluid mechanics: Application to heated flow, turbulence and droplet evaporation. In: Cha SS, Trollinger JD, editors. Optical diagnostics in fluid and thermal flow, vol. 2005. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1993. p. 194–203.
Jumper EJ, Hugo RJ. Optical phase distortion due to turbulent-fluid density fields: quantification using the small-aperture beam technique. AIAA Paper 92-3020, July 1992.
Jumper, 1995, Quantification of aero-optical phase distortion using the small-aperture beam technique, AIAA J, 33, 2151, 10.2514/3.12960
Hugo, 1997, Time-resolved wave front measurements through a compressible free shear layer, AIAA J, 35, 671, 10.2514/2.156
Fitzgerald EJ, Jumper EJ. Two-dimensional, optical wavefront measurements using a small-aperture beam technique-derivative instrument. Proceedings of the International Conference on Optical Technology and Image Processing in Fluid, Thermal, and Combustion Flow (VSJ-SPIE 98), December 1998.
Fitzgerald, 2000, Two-dimensional, optical wavefront measurements using a small-aperture beam technique-derivative instrument, Opt Eng, 39, 3285, 10.1117/1.1327838
Masson B, Wissler J, McMackin L. Aero-optical study of a NC-135 fuselage boundary layer. AIAA Paper 94-0277, January 1994.
Craig JE, Trolinger JD, Rose WC. Propagation diagnostic technique for turbulent transonic flow. AIAA Paper 84-0104, January 1984.
Gilbert KG. KC-135 aero-optical boundary-layer/shear-layer experiments. In: Gilbert KG, Otten LJ. editors. Aero-optical phenomena, Progress in astronautics and aeronautics series, vol. 80. New York: American Institute of Aeronautics and Astronautics, 1982, p. 306–24.
McMackin L, Wissler J, Clark N, Chen E, Bishop K, Pierson R, Stavely B. Hartmann sensor and dynamic tomographical analysis of organized structure in flow fields. AIAA Paper 94-2548, June 1994.
Masson B, McMackin L, Wissler J, Bishop K. Study of a round jet using a Shack-Hartmann wavefront sensor. AIAA Paper 95-0644, January 1995.
McMackin, 1995, Hartmann wave front sensor studies of dynamic organized structure in flowfields, AIAA J, 33, 2158, 10.2514/3.12961
Ho CM, Huerre P. Perturbed free shear layers. In: Lumley JL, Dyke MV, Wehausen JV, editors. Annual review of fluid mechanics, vol. 16. Palo Alto, CA: Annual Reviews Inc., 1984, p. 365–424.
Hugo RJ, Jumper EJ. Experimental measurement of a time-varying optical path difference using the small-aperture beam technique. In: Cha SS, Trollinger JD, editors. Optical diagnostics in fluid and thermal flow, vol. 2005. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1993. p. 116–28.
Dimotakis PE. Personal communication, August 1993.
Jumper EJ, Hugo RJ, Cicchiello JM. Turbulent-fluid-induced optical wavefront dynamics: Near- and far-field implications (invited paper). AIAA Paper 94-2547, June 1994.
Husain, 1995, Experiments on subharmonic resonance in a shear layer, J Fluid Mech, 304, 343, 10.1017/S0022112095004459
Hugo RJ, Jumper EJ. Constant current anemometry and its impact on aero-optical measurements. AIAA Paper 95-1986, June 1995.
Hugo RJ, Jumper EJ. Constant current anemometry applied to aero-optical measurements. AIAA Paper 99-3616, June 1999.
Yu, 1993, Oscillations in the near field of a heated two-dimensional jet, J Fluid Mech, 255, 323, 10.1017/S0022112093002502
Wisniewski C, Scruggs B, Masson B, Kyrazis D, Truman C. Calibration of constant current anemometer probes for aircraft based atmospheric turbulence measurements. AIAA Paper 95-1985, June 1995.
Hugo RJ, Jumper EJ. Implications of the homogeneous turbulence assumption on the aero-optic linking equation. In: Cha SS, Trollinger JD, editors. Optical techniques in fluid, thermal, and combustion flow, vol. 2546. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1995. 189–200.
Hugo RJ, Jumper EJ. Applicability of the aero-optic linking equation to a highly-coherent, transitional shear layer. Appl Opt 2000;39.
Wissler JB, Roshko A. Transmission of thin light beams through turbulent mixing layers. AIAA Paper 92-0658, January 1992.
Lumley JL. The structure of inhomogeneous turbulence. In: Atmospheric turbulence and wave propagation. (AM Yaglom and VI Tartarsky, eds) Moscow: Nauka, 1967. p. 166–78.
Berkooz, 1994, The proper orthogonal decomposition, wavelets and modal approaches to the dynamics of coherent structures, Appl Sci Res, 53, 321, 10.1007/BF00849108
Arndt, 1997, Proper orthogonal decomposition of pressure fluctuations surrounding a turbulent jet, J Fluid Mech, 340, 1, 10.1017/S0022112097005089
Luna T, Truman CR, Masson BS. Linear stochastic estimation of optical beam deflection through a heated jet. AIAA Paper 97-0072, January 1997.
Truman CR, Barsun H, Luna T, Zadoks RI. Dynamics of a passive scalar in a turbulent jet. AIAA Paper 95-1981, June 1995.
Truman CR, Zadoks RI, Staveley B, Barsun H. Predictions and measurement of aero-optic effects through the dynamics of a passive scalar in turbulent shear flow. AIAA Paper 94-2549, June 1994.
Cicchiello JM, Jumper EJ. Low-order representation of fluid-optic interactions associated with a shear layer. AIAA Paper 2001-0952, January 2001.
Pierson RE, Chen EY, Bishop KP, McMackin L. Modeling and measurement of optical turbulence by tomographic imaging of a heated air flow. In: Idell PS, Schulz TJ, editors. Digital image recovery and synthesis III, vol. 2827. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1996. p. 130–41.
Hugo RJ, McMackin L. Conditionally sampled two-dimensional optical wavefront measurements in the near-nozzle region of a heated axisymmetric jet. In: Dainty JC, Bissonnette LR, editors. Image propagation through the atmosphere, vol. 2828. SPIE—International Society of Optical Engineering, 1996. p. 50–61.
Pierson RE, Chen EY, Bishop KP, McMackin L. Evaluating effective resolution of an optical tomography system using a narrow band correlation metric. Proceedings of the International Conference on Image Processing, IEEE, 1996.
McMackin L. Aero-optics research. Proceedings of the AFOSR Image Reconstruction and Aero-Optic Metrology in Turbulence Workshop, Air Force Office of Scientific Research, Westin Peachtree Plaza Hotel, Atlanta, GA, September 1996.
Carpenter, 1996, Simulation of extraction of velocity from passive scalar data in a two-dimensional diverging channel flow, Phys Fluids, 8, 2447, 10.1063/1.869030
Brooke MA, Glezer A, Jokerst NM, Pearlstein AJ. Neural network determination of optical phase correction in a plane shear layer using parallel optoelectronic image processing and global optical flow diagnostics. Proceedings of the AFOSR Image Reconstruction and Aero-Optic Metrology in Turbulence Workshop, Air Force Office of Scientific Research, Westin Peachtree Plaza Hotel, Atlanta, GA, September 1996.
Oljaca M, Glezer A. Measurements of aero-optical effects in a plane shear layer. AIAA Paper 97-2352, 1997.
Cicchiello, 1997, Far-field optical degradation due to near-field transmission through a turbulent heated jet, Appl Opt, 36, 6441, 10.1364/AO.36.006441
Goodman, 1968
Sawyer, 1999, Unveiling the universe, Nat Geogr Mag, 196, 14
Brown, 1974, On density effects and large structure in turbulent mixing layers, J Fluid Mech, 64, 775, 10.1017/S002211207400190X
Papamoschou D, Roshko A. Observations of supersonic free shear layers. AIAA Paper 86-0162, January 1986.
Havener G, Heltsley F. Design aspects and preliminary holographic-PIV measurements for a subsonic free shear layer flow channel. AIAA Paper 94-2550, June 1994.
Smits, 1996
Papamoschou, 1988, The compressible turbulent layer: an experimental study, J Fluid Mech, 197, 453, 10.1017/S0022112088003325
Fitzgerald EJ, Jumper EJ. Aperture effects on the aero-optical distortions produced by a compressible shear layer. AIAA J, 2000, in review.
Hugo RJ, Jumper EJ, Havener G, Stepanek C. Time-resolved aero-optical measurements of a wavefront aberrated by a compressible free shear layer. AIAA Paper 95-1979, June 1995.
Fourguette DC, Dimotakis PE, Ching WK. Index-of-refraction imaging and aero-optics effects in a fully-developed axisymmetric turbulent jet. AIAA Paper 95-1980, June 1995.
Dimotakis PE, Catrakis HJ, Fourguette DCL. Beam propagation and wavefront-phase integrals in high Reynolds number shear layers and jets. AIAA Paper 98-2833, June 1998.
Gardner PJ, Roggemann MC, Welsh BM, Bowersox RD. Statistical assessment of optical phase fluctuations through turbulent mixing layers. In: Cha SS, Trollinger JD, editors. Optical techniques in fluid, thermal and combustion flow, vol. 2546. SPIE—International Society of Optical Engineering, Bellingham, Washington, USA. 1995.
Chew, 1991, Coherent structure effects on the optical performance of plane shear layers, AIAA J, 29, 76, 10.2514/3.10547
Chew, 1993, Experimental investigation of transitional free shear layer optics, AIAA J, 31, 2290, 10.2514/3.11927
Tsai, 1990, Two-dimensional numerical simulation of shear-layer optics, AIAA J, 28, 2092, 10.2514/3.10526
Fitzgerald EJ, Jumper EJ. The shear layer compressibility mechanism and the creation of optical distortions. J Fluid Mech 2001, in review.
Fitzgerald EJ, Jumper EJ. Further consideration of compressibility effects on shear-layer optical distortion. AIAA Paper 99–3617, June 1999.
Fitzgerald EJ. The shear layer compressibility mechanism and its role in creating aero-optical distortions. Ph.D. thesis, University of Notre Dame, Notre Dame, Indiana, April 2000.
Leep, 1993, Three-dimensional simulations of compressible mixing layers: visualizations and statistical analysis, AIAA J, 31, 2039, 10.2514/3.49119
Sandham, 1990, Compressible mixing layer: linear theory and direct simulation, AIAA J, 28, 618, 10.2514/3.10437
Sandham, 1991, Three-dimensional simulations of large eddies in the compressible mixing layer, J Fluid Mech, 224, 133, 10.1017/S0022112091001684
Vreman, 1997, Large-eddy simulation of the turbulent mixing layer, J Fluid Mech, 339, 357, 10.1017/S0022112097005429
Hedges, 1993, Comparison of confined, compressible, spatially developing mixing layers with temporal mixing layers, AIAA J, 31, 1977, 10.2514/3.11880
Oh, 1995, Unstructured grid simulations of spatially evolving supersonic shear layers, AIAA J, 33, 1229, 10.2514/3.12675
Liou, 1995, Compressibility effects and mixing enhancement in turbulent free shear flows, AIAA J, 33, 2332, 10.2514/3.12988
Rose, WC, Johnson DA, Otten LJ. Summary of ALL Cycle II.5 aerodynamic shear- and boundary-layer measurements. In: Gilbert KG, Otten LJ, editors. Aero-optical phenomena, Progress in astronautics and aeronautics series, vol. 80, New York: American Institute of Aeronautics and Astronautics, Inc., 1982, p. 295–305.
Rose WC. Measurements of aerodynamic parameters affecting optical performance. Technical Report AFWL-TR-78-191, Air Force Weapons Laboratory, Kirtland AFB, NM, May 1978.
Fitzgerald EJ, Jumper EJ. Shear layer optical distortions due to compressibility vs. passive scalars. AIAA Paper 98-2834, June 1998.
Goldstein RJ, 1983
Weston CP. Influence of periodic compressible vortices on laser beam intensity. Master's thesis, AFIT/GAE/AA/82D-32, Air Force Institute of Technology, December 1982.
Kuethe, 1998
Kistler, 1959, Fluctuation measurements in a supersonic turbulent boundary layer, Phys Fluids, 2, 290, 10.1063/1.1705925
Kistler, 1963, The fluctuating pressure field in a supersonic turbulent boundary layer, J Fluid Mech, 16, 41, 10.1017/S0022112063000574
Gross, 1987, Measurements of temperature, density, pressure, and their fluctuations in supersonic turbulence using laser-induced fluorescence, Exp Fluids, 5, 372, 10.1007/BF00264400
Morkovin MV. Effects of compressibility on turbulent flows. In: Favre A, editor. Mécanique de la Turbulence. Paris: CNRS, 1962. p. 367–80.
Lutz, 1989, Modeling of density fluctuations in supersonic turbulent boundary layers, AIAA J, 27, 822, 10.2514/3.10185
Smith, 1993, Simultaneous measurement of velocity and temperature fluctuations in the boundary layer of a supersonic flow, Exp Thermal Fluid Sci, 7, 221, 10.1016/0894-1777(93)90005-4
Lele SK. Compressibility effects on turbulence. In: Lumley JL, Dyke MV, Reed HL, editors. Annual review of fluid mechanics, vol. 26. Palo Alto, CA: Annual Reviews Inc., 1994. p. 211–54.
Cantwell, 1983, An experimental study of entrainment and transport in the turbulent near wake of a circular cylinder, J Fluid Mech, 136, 321, 10.1017/S0022112083002189
Chacín J, Cantwell B. Study of turbulence structure using the invariants of the velocity gradient tensor. Report TF-70, FPC Division, Dept. of Mechanical Engineering, Stanford University, Stanford, California, August 1997.
Shyy, 1997, Compressibility effects in modeling complex turbulent flows, Prog Aerosp Sci, 33, 587, 10.1016/S0376-0421(97)00005-5
Southwell, 1980, Wave-front estimation from wave-front slope measurements, J Opt Soc Am, 70, 998, 10.1364/JOSA.70.000998
Anderson Jr. JD. Modern compressible flow. 2nd ed. New York: McGraw-Hill, 1990.
Hilsch, 1946, The use of the expansion of gases in a centrifugal field as cooling process, The Rev Sci Instrum, 18, 108, 10.1063/1.1740893
Kurosaka, 1982, Acoustic streaming in swirling flow and the Ranque–Hilsch (vortex-tube) effect, J Fluid Mech, 124, 139, 10.1017/S0022112082002444
Gad-el-Hak, 1987, Simulation of large-eddy structures in a turbulent boundary layer, AIAA J, 25, 1207, 10.2514/3.9769