Acta Optica Sinica, Volume. 26, Issue 3, 383(2006)
Particle Sizing with Spectral Analysis on the Transmission Fluctuations
[2] [2] J. Gregory. Turbidity fluctuations in flowing suspensions[J]. J. Colloid and Interface Science, 1985, 105(2): 357~371
[3] [3] U. Riebel. An estimate on some statistical properties of extinction signals in dilute and concentrated suspensions[J]. Particle & Particle System Characterization, 1991, 8(1~4): 95~99
[4] [4] U. Krauter. Grundlagen zur in-situ Partikelgrenanalyse mit licht und ultraschall in konzentrierten partikelsystemen[D]. Karlsruhe, 1995
[5] [5] M. A. Breitenstein. Grundlagnuntersuchung zur statistischen Partikelgrenspektrometrie mittels Auswertung der Transmissionsfluktuation von Licht in Dispersen Systemen[D]. Cottbus 2000
[6] [6] J. Shen. Particle size analysis by transmission fluctuation spectrometry: Fundamentals and case studies[D]. Cuvillier Verlag Gttingen, 2003
[7] [7] J. Shen, U. Riebel, X. Guo. Transmission fluctuation spectrometry with spatial correlation[J]. Particle & Particle System Characterization, 2005, 22(1): 24~37
[8] [8] J. Shen, U. Riebel, X. Guo. Measurements on particle size distribution and concentration by transmission fluctuation spectrometry with temporal correlation[J]. Opt. Lett., 2005, 30(16): 2098~2100
[9] [9] U. Riebel, U. Kruter. Extinction of radiations in sterically interacting systems of monodisperse spheres. Part 1: theory[J]. Particle and Particle System Characterization, 1994, 11(3): 212~221
[10] [10] J. Shen. Particle Sizing by Spectral Analysis on Transmission Fluctuations: Theory and Simulation. (Unpublished work)
[11] [11] M. S. Ripoll, C. F. Tejero. Approximate analytical expression for the direct correlation function of hard discs within the Percus-Yevick equation[J]. Molecular Physics, 1995, 85(2): 423~428
[12] [12] J. K. Percus, G. J. Yevick. Analysis of classical statistical mechanics by means of collective coordinates[J]. Phys. Rev., 1958, 110(1): 1~13
[13] [13] J. Shen, U. Riebel. Transmission fluctuation spectrometry in concentrated suspensions. Part One: Effects of the monolayer structure[J]. Particle & Particle System Characterization, 2004, 21(6): 429~439
[14] [14] M. Kandlikar, G. Ramachandran. Inverse methods for analysing aerosol spectrometry measurements: A critical review[J]. J. Aerosol Science, 30(4): 413~437
[15] [15] S. Twomey. Introduction to the Mathematics of Inversion in Remote Sensing and Indirect Measurements[M]. New York: Elsevier Scientific Publishing Company, 1977
[16] [16] F. Ferri, A. Bassini, E. Paganini. Modified version of chahine algorithm to invert spectral extinction data for particle sizing[J]. Appl. Opt., 1995, 34(25): 5829~5839
[17] [17] J. Shen, U. Riebel. Extinction by a large spherical particle located in a narrow Gaussian beam[J]. Particle & Particle System Characterization, 2001, 18(5/6): 254~261
[18] [18] U. Riebel, J. Shen. Transmission fluctuation spectrometry in concentrated suspensions. Part 2: Particle overlapping[J]. Particle & Particle System Characterization, 2004, 21(6): 440~454
[19] [19] J. Shen, U. Riebel. Transmission fluctuation spectrometry in concentrated suspensions. Part three: measurements[J]. Particle & Particle System Characterization, 2005, 22(1): 14~23
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese]. Particle Sizing with Spectral Analysis on the Transmission Fluctuations[J]. Acta Optica Sinica, 2006, 26(3): 383