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Retrieval of solar-induced fluorescence spectral shape of oil slicks from the infilling of solar Fraunhofer lines

机译:从太阳能Fraunhofer线路infilling的油诱导的太阳能荧光光谱形状检索

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In this paper we present the spectral behavior of the Solar Induced Fluorescence (SIF) of a crude oil, retrieved from its radiance spectrum acquired in eight selected spectral windows of the visible spectrum from about 389 nm to 659 nm. Each spectral window was chosen to cover one or more solar Fraunhofer Lines (FL) so as to retrieve the in-filling due to the oil fluorescence contribution induced by the solar irradiance. The selected Fraunhofer lines were chosen within the solar lines rather than the telluric ones since the former ones offer several advantages for the application from air- or space-borne platform. Solar FL, compared with telluric ones, require a simpler atmospheric model to evaluate ground solar irradiance. Besides, the signal measured at the sensor is not affected by re-absorption effects. For each spectral window, oil fluorescence contribution and reflectance were evaluated by comparing the measured total radiance of the oil with the incident sun irradiance spectrum measured in the same conditions. Fluorescence and reflectance spectral shapes were evaluated within each measured spectral window by applying a spectral fitting method (SFM) and polynomial modeling. Solar-induced fluorescence data were then used to evaluate the fluorescence spectrum of the oil. The SIF spectrum of the same oil was also simulated by using emission-excitation fluorescence data and a simulated solar irradiance. The measured and simulated spectra were then compared.
机译:本文介绍了从八个选定的光谱窗口中获得的辐射谱检出的原油的太阳诱导荧光(SIF)的光谱行为,从而在可见光谱的八个选定的光谱扫描仪中,从约389nm至659nm。选择每个光谱窗口以覆盖一个或多个太阳能FRAUNHOFER线(FL),以便由于太阳辐照度引起的油荧光贡献而导致填充。由于前者从空气或空间平台提供了额外的应用,所选的Fraunhofer线在太阳能线上而不是碲线提供了几个优点。与碲收集相比,太阳能FL需要更简单的大气模型来评估地面太阳辐照度。此外,在传感器上测量的信号不受再吸收效应的影响。对于每个光谱窗口,通过比较在相同条件下测量的入射太阳辐照度谱的测量的油的总辐射来评估油荧光贡献和反射率。通过施加光谱拟合方法(SFM)和多项式建模,在每个测量的光谱窗口内评估荧光和反射谱形状。然后使用太阳能诱导的荧光数据来评估油的荧光光谱。通过使用发射激励荧光数据和模拟的太阳辐照度,还模拟了相同油的SIF光谱。然后比较测量的和模拟光谱。

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