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58149207881
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Simultaneous 2D single-shot imaging of OH concentrations and temperature fields in an SI engine simulator
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(Combustion Institute, Pittsburgh, Pa
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A. Orth, V. Sick, J. Wolfrum, R. Maly, and M. Zahn, “Simultaneous 2D single-shot imaging of OH concentrations and temperature fields in an SI engine simulator,” in Proceedings of the Combustion Institute (Combustion Institute, Pittsburgh, Pa., 1994), Vol. 25, pp. 143–150.
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Quasi instantaneous 2 dimensional temperature measurements in a spark ignition engine using 2-line atomic fluorescence
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Combustion Institute, Pittsburgh, Pa
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C. F. Kaminski, J. Engstrom, and M. Alden, “Quasi instantaneous 2 dimensional temperature measurements in a spark ignition engine using 2-line atomic fluorescence,” in Proceedings of the Combustion Institute (Combustion Institute, Pittsburgh, Pa., 1998), Vol. 27, pp. 85–93.
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High repetition rate planar laser induced fluorescence of OH in a turbulent non-premixed flame
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Preprint No. 1 (Slovak University of Technology, Bratislava
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Spark ignition of turbulent methane/air mixtures revealed by time resolved planar laser induced fluorescence and direct numerical simulations
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Combustion Institute, Pittsburgh, Pa
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C. F. Kaminski, J. Hult, M. Alden, S. Lindenmaier, A. Dreizler, and U. Maas, “Spark ignition of turbulent methane/air mixtures revealed by time resolved planar laser induced fluorescence and direct numerical simulations,” in Proceedings of the Combustion Institute (Combustion Institute, Pittsburgh, Pa., 2000), Vol. 28.
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Characterization of a spark ignition system by planar laser induced fluorescence of OH at high repetition rates and comparison with chemical kinetic calculations
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A. Dreizler, S. Lindenmaier, U. Maas, J. Hult, M. Alden, and C. F. Kaminski, “Characterization of a spark ignition system by planar laser induced fluorescence of OH at high repetition rates and comparison with chemical kinetic calculations,” Appl. Phys. B 70, 287–294 (2000).
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Heat and Mass Transfer, Y. Nagano, K. Hanjalic, and T. Tsuji, eds. (Aichi Shuppan, Tokyo
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Flame growth and wrinkling in a turbulent flow
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C. F. Kaminski, X. S. Bai, J. Hult, A. Dreizler, S. Lindenmaier, and L. Fuchs, “Flame growth and wrinkling in a turbulent flow,” Appl. Phys. B (to be published).
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