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Polychromatic transmissometer for in situ measurements of suspended particles and gelbstoff in water

机译:多色透射仪,用于现场测量水中的悬浮颗粒和gelbstoff

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摘要

The beam attenuation coefficient is an optical parameter that sensitively depends on suspended and dissolved substances in water. Its measurement is not only of interest for an understanding of the radiative transfer in a water column. With appropriate algorithms for data interpretation, it also allows a fast determination of absorbing and scattering matter as time-series measurements or depth profiles that cannot easily be obtained with other methods. An instrument has been developed for measuring spectral attenuation coefficients over st wavelength range from 340 to 785 nm. The optical path length can be set between 0 and 400 min. This allows application in a wide range of turbidity in coastal and inland (case 2 and case 3) waters and a calibration of the instrument during in-situ measurements. This makes the instrument suitable for long-term applications in which signals from conventional instruments would degrade owing to the biofouling of optical windows. From the data, the amount and the size distribution of suspended particles and the specific absorption of dissolved organic matter are derived in real time. Algorithms based on Monte Carlo methods are available for a classification of transparent particles and phytoplankton. (C) 1997 Optical Society of America.
机译:光束衰减系数是一个光学参数,敏感地取决于水中的悬浮和溶解物质。它的测量不仅对于了解水柱中的辐射传递感兴趣。利用适当的数据解释算法,它还可以快速确定吸收和散射物质,这是其他方法无法轻松获得的时间序列测量值或深度剖面。已经开发了一种用于测量从340到785 nm的st波长范围内的光谱衰减系数的仪器。可以在0到400分钟之间设置光程长度。这样可以在沿海和内陆(案例2和案例3)水域中的各种浊度中应用,并且可以在现场测量期间对仪器进行校准。这使得该仪器适用于长期应用,在这些应用中传统仪器的信号会由于光学窗的生物污染而降低。根据这些数据,可以实时得出悬浮颗粒的数量和大小分布以及溶解的有机物的比吸收率。基于蒙特卡洛方法的算法可用于对透明粒子和浮游植物进行分类。 (C)1997年美国眼镜学会。

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