首页> 外文会议>30th Asian conference on remote sensing 2009 >Investigating relationship of nephelometric turbidity unit and total suspended solids with the inherent optical properties parameters derived from spectra reflectance
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Investigating relationship of nephelometric turbidity unit and total suspended solids with the inherent optical properties parameters derived from spectra reflectance

机译:比浊法浊度单位和总悬浮物与光谱反射率固有光学性质参数的关系研究

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In this project, the relationships between the turbidity of water measured by its total suspended solids (TSS), Nephelometric Turbidity Units (NTU) and the inherent optical properties computed from the spectral reflectance using the bio-optical model were investigated. It is hope that the results obtained could allow one to compute the water turbidity without needing to physically visit the site and take measurements. This could be extended to estimating the turbidity from remote sensing satellite imagery.Control experiments were initially carried out with a 1m deep by 0.5m × 0.5m tank. The tank was first filled with clean water. Various types of common soil (e.g. burnt soil, riverbed and silt) were then added progressively and the TSS, NTU and reflectance measured. The different types of soils were used to study the variability of the relationships across different soil types.The experiment results were very encouraging. Linear relationships between NTU and TSS, backscattering coefficient and TSS, backscattering coefficient and NTU were obtain. More interesting, the relationship between backscattering coefficient and NTU is independent of soil type. Field verification measurements were also conducted to confirm the findings of the lab experiments.
机译:在该项目中,研究了通过水的总悬浮固体(TSS),浊度浊度单位(NTU)测得的水的浊度与使用生物光学模型从光谱反射率计算出的固有光学性质之间的关系。希望所获得的结果能够使人们无需亲自到现场进行测量就可以计算出水的浊度。这可以扩展到通过遥感卫星图像估算浊度。 对照实验最初是在1m深x 0.5m×0.5m的水箱中进行的。首先将水箱装满干净的水。然后逐渐添加各种类型的常见土壤(例如,烧过的土壤,河床和淤泥),并测量TSS,NTU和反射率。使用不同类型的土壤来研究不同土壤类型之间关系的变异性。 实验结果令人鼓舞。得到了NTU与TSS,后向散射系数与TSS,后向散射系数与NTU之间的线性关系。更有趣的是,反向散射系数与NTU之间的关系与土壤类型无关。还进行了现场验证测量,以确认实验室实验的结果。

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