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ARTÍCULO
TITULO

Concentration Measurement of Uniform Particles Based on Backscatter Sensing of Optical Fibers

Rui Huang    
Qinghe Zhang    
Pengfei Qi and Weiwei Liu    

Resumen

A set of miniature optical fiber particle concentration measuring instruments is designed and applied to develop a unified expression for the concentration measurement of uniform particles in tap water. By measuring the concentrations of six uniform silicon carbide particles in the size range of 38?250 µm, the unified relationship between particle size, particle concentration, and optical scattering intensity is proposed. The unified expression is verified by the concentration measurements of silicon carbide particles with three other sizes. The results show that the measurement error is less than 10%, and the unified expression is satisfactory considering the large measuring range of 0?50 kg/m3. The effects of light intensity on the concentration measurement are discussed based on the results of 150 µm silicon carbide particles under three different light intensities. It is shown that a low light intensity can be applied for high-concentration measurement with relatively low accuracy, while a high light intensity can be adopted for low-concentration measurement with higher accuracy.

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