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Inherent optical properties and remote sensing reflectance of Pomeranian lakes (Poland)

机译:博美犬湖(波兰)的固有光学性质和遥感反射率

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This paper describes the results of comprehensive empirical studies of theinherent optical properties (IOPs), the remote sensing reflectance R_(rs)(λ) and the contents of the principal optically active components (OAC) i.e. coloured dissolved organic matter (CDOM), suspended particulate matter (SPM) and chlorophyll a, in the waters of 15 lakes in Polish Pomerania in 2007-2010. It presents numerous spectra of the total absorption a(λ) and scattering b(λ) b_p(λ) of light in the visible band (400-700 nm) for surface waters, and separately,spectra of absorption by CDOM aCDOM(λ) and spectra of the mass-specific coefficients of absorption a&z.ast;_p~((SPM)) p (λ) and scattering b&z.ast;_p~((SPM)) p (λ) by SPM. The properties of these lake waters are highly diverse, but all of them can be classified as Case 2 waters (according to the optical classification by Morel & Prieur 1977) and they all have a relatively high OAC content. The lakes were conventionally divided into three types: Type I lakes have the lowest OAC concentrations (chlorophyll concentration C_a= (8.76±7.4) mg m~(-3) and CDOM absorption coefficients a _(CDOM)(440)=(0.57±0.22) m~(-1) (i.e. mean and standard deviation), and optical properties (including spectra of R_(rs)(λ)) resembling those of Baltic waters. Type II waters have exceptionally high contents of CDOM (a_(CDOM)(440)=(15.37±1.54) m~(-1)), and hence appear brown in daylight and have very low reflectances R_(rs)(λ) (of the order of 0.001 sr~(-1)). Type III waters are highly eutrophic and contain large amounts of suspended matter, including phytoplankton (CSPM =(47.0±39.4) g m~(-3), C_a =(86.6±61.5) mg m~(-3); a_(CDOM)(440)=(2.77±0.86) m~(-1)). Hence the reflectances R_(rs)(λ) of these type of waters are on average one order of magnitude higher than those of the other natural waters, reaching maximum values of 0.03 sr~(-1) in λ bands 560-580 nm and 690-720 nm (see Ficek et al. 2011). The article provides a number of empirical formulas approximating the relationships between the properties of these lake waters.
机译:本文描述了对固有光学性质(IOP),遥感反射率R_(rs)(λ)和主要光学活性成分(OAC)的含量(即有色溶解有机物(CDOM))进行了综合经验研究的结果2007-2010年波兰波美拉尼亚15个湖泊的水域中的颗粒物(SPM)和叶绿素a。它显示了地表水在可见带(400-700 nm)中光的总吸收a(λ)和散射b(λ)b_p(λ)的众多光谱,以及CDOM的吸收光谱aCDOM(λ)的质量比吸收系数a&z.ast; _p〜((SPM))p(λ)和光谱,通过SPM散射b&z.ast; _p〜((SPM))p(λ)。这些湖水的特性非常多样,但所有湖水都可以归类为案例2水(根据Morel&Prieur 1977年的光学分类),并且它们都具有相对较高的OAC含量。传统上将湖泊分为三种类型:I型湖泊的OAC浓度最低(叶绿素浓度C_a =(8.76±7.4)mg m〜(-3),CDOM吸收系数a _(CDOM)(440)=(0.57± 0.22)m〜(-1)(即均值和标准偏差),并且光学特性(包括R_(rs)(λ)的光谱)类似于波罗的海。II型水的CDOM含量极高(a_(CDOM )(440)=(15.37±1.54)m〜(-1)),因此在日光下呈棕色,反射率R_(rs)(λ)非常低(约为0.001 sr〜(-1))。 III型水是高度富营养化的,并且包含大量悬浮物,包括浮游植物(CSPM =(47.0±39.4)gm〜(-3),C_a =(86.6±61.5)mg m〜(-3); a_(CDOM) (440)=(2.77±0.86)m〜(-1)),因此,这类水的反射率R_(rs)(λ)平均比其他天然水要高一个数量级,达到最大值λ波段560-580 nm和690-720 nm中的0.03 sr〜(-1)值(参见Ficek等人2011)。文章提供了许多经验公式,这些公式近似了这些湖泊水域之间的关系。

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