Sizing of Irregular Particles Using a Phase Doppler System
Response of a phase Doppler system to irregularly shaped particles is examined and shown to deviate qualitatively as well as quantitatively from the spherical particles. Nevertheless, the measured phase distributions based on an ensemble of particles exhibit a high degree of order and simplicity. Th...
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Veröffentlicht in: | Particle & particle systems characterization 1996-12, Vol.13 (6), p.343-349 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Response of a phase Doppler system to irregularly shaped particles is examined and shown to deviate qualitatively as well as quantitatively from the spherical particles. Nevertheless, the measured phase distributions based on an ensemble of particles exhibit a high degree of order and simplicity. The experimental data and the stochastic modeling of the process have shown that the phase Doppler technique can be used successfully for in‐situ sizing and velocimetry of irregular particles. In the case of irregular crystalline particles, mean size and standard deviation can be deduced without requiring any assumptions regarding the functional form of the size distribution. As opposed to other optical techniques, phase Doppler can be used, in principle, near the backscattering location, so that a single optical window would be employed for transmission of laser light and collection of the scattered signals. Furthermore, size measurements can be velocity‐resolved, i.e. a size distribution can be associated with each bin of the velocity histogram. |
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ISSN: | 0934-0866 1521-4117 |
DOI: | 10.1002/ppsc.19960130603 |