Title :
Influence of multiple scattering on the measurement of light attenuation by water filled with bubbles
Author :
Sun Chunsheng ; Zhang Xiaohui ; Zhang Shuang
Author_Institution :
Dept. of Weaponry Eng., Naval Univ. of Eng., Wuhan, China
Abstract :
Using a solution of the radiation transfer equation in the small angle approximation, we examine the effect of multiple scattering on the measurement of the light beam attenuation in an aquatic environment abundant in bubbles created by movement of ship or sea animals. According to the measurement condition, the correction coefficient denoting the extent of multiple scattering is introduced, which is a function of detector field of view (FOV), beam transfer distance, beam size and energy-received section size. Given a typical bubble clouds´ distribution function, numerical computations and the analysis between the correction coefficient and its four parameters are provided. The results show that the multiple scattering is obvious when measuring the light attenuation by water filled with large numbers of bubbles, and the degree of multiple scattering changes along with measurement parameters.
Keywords :
bubbles; light scattering; oceanographic techniques; radiative transfer; underwater optics; aquatic environment; beam size; beam transfer distance; bubble clouds distribution function; correction coefficient; detector field of view; energy-received section size; light beam attenuation measurement; multiple scattering; radiation transfer equation; small angle approximation; Attenuation; Attenuation measurement; Detectors; Equations; Optimized production technology; Scattering; Sea measurements; bubbles; light beam attenuation; multiple scattering; radiative transfer equation;
Conference_Titel :
Electronic Measurement & Instruments (ICEMI), 2013 IEEE 11th International Conference on
Conference_Location :
Harbin
Print_ISBN :
978-1-4799-0757-1
DOI :
10.1109/ICEMI.2013.6743228