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- W2053174465 abstract "Theoretical analysis for recently developed particulate scintillation monitoring technique is presented. The technique makes use of a light beam passing through a stack to the opposite detector. The detector measures not only the average light intensity, but also the temporal variation in the light intensity, which is different from conventional opacity systems. The significant advantage of scintillation monitors is their insensitivity to lens contamination. However, until now theories relevant to the technique have not been found in the literature. In this article, it is first assumed that the number of particles in a light beam passing through stack airflow is a Poisson random variable. Then, by use of Mie's theory and stochastic process theory, a mathematical model for output light intensity, the mathematical expectation and the variance of output light intensity are derived. Finally, an equation for calculating particulate mass concentration is obtained. Theoretical analysis shows that scintillation monitors are insensitive to lens contamination but dependent on particle size distribution. Experiments verified the theoretical results." @default.
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- W2053174465 date "1999-08-01" @default.
- W2053174465 modified "2023-10-16" @default.
- W2053174465 title "Theoretical solutions for particulate scintillation monitors" @default.
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- W2053174465 doi "https://doi.org/10.1016/s0030-4018(99)00271-0" @default.
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