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Absorption and attenuation of visible and near-infrared light in water: dependence on temperature and salinity

机译:可见光和近红外光在水中的吸收和衰减:取决于温度和盐度

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摘要

We have measured the absorption Coefficient of pure and salt water at 15 wavelengths in the visible and near-infrared regions of the spectrum using WETLabs nine-wavelength absorption and attenuation meters and a three-wavelength absorption meter. The water temperature was varied between 15 and 30 ℃, and the salinity was varied between 0 and 38 PSU to study the effects of these parameters on the absorption coefficient of liquid water. In the near-infrared portion of the spectrum the absorption coefficient of water was confirmed to be highly dependent on temperature. In the visible region the temperature dependence was found to be less than 0.001 m↑(-1)/℃ except for a small region around 610 nm. The same results were found for the temperature dependence of a saltwater solution. After accounting for index-of-refraction effects, the salinity dependence at visible wavelengths is negligible. Salinity does appear to be important in determining the absorption coefficient of water in the near-infrared region. At 715 nm, for example, the salinity dependence was -0.00027 m↑(-1)/PSU. Field measurements support the temperature and salinity dependencies found in the laboratory both in the near infrared and at shorter wavelengths. To make estimates of the temperature dependence in wavelength regions for which we did not make measurements we used a series of Gaussian curves that were fit to the absorption spectrum in the visible region of the spectrum. The spectral dependence on temperature was then estimated based on multiplying the Gaussians by a fitting factor. # 1997 Optical Society of America
机译:我们使用WETLabs的九波长吸收和衰减仪以及三波长吸收仪,测量了光谱的可见和近红外区域中15个波长处的纯盐水和盐水的吸收系数。为了研究这些参数对液态水吸收系数的影响,水温在15至30℃之间变化,盐度在0至38 PSU之间变化。在光谱的近红外部分,证实了水的吸收系数高度依赖于温度。在可见光区域,除610 nm附近的小区域外,温度依赖性小于0.001 m↑(-1)/℃。对于盐水的温度依赖性发现了相同的结果。考虑到折射率效应后,可见光波长下的盐度依赖性可以忽略不计。盐度对于确定近红外区域中的水吸收系数似乎确实很重要。例如,在715 nm下,盐度依赖性为-0.00027 m↑(-1)/ PSU。现场测量支持在实验室中发现的近红外和较短波长下的温度和盐度依赖性。为了估算我们未进行测量的波长区域中的温度依赖性,我们使用了一系列高斯曲线,这些曲线与光谱的可见光区域的吸收光谱拟合。然后,通过将高斯值乘以拟合因子来估算光谱对温度的依赖性。 #1997美国眼镜学会

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