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Skyglow effects in UV and visible spectra: Radiative fluxes

机译:紫外线和可见光谱中的天花效应:辐射通量

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Several studies have tried to understand the mechanisms and effects of radiative transfer under different night-sky conditions. However, most of these studies are limited to the various effects of visible spectra. Nevertheless, the invisible parts of the electromagnetic spectrum can pose a more profound threat to nature. One visible threat is from what is popularly termed skyglow. Such skyglow is caused by injudiciously situated or designed artificial night lighting systems which degrade desired sky viewing. Therefore, since lamp emissions are not limited to visible electromagnetic spectra, it is necessary to consider the complete spectrum of such lamps in order to understand the physical behaviour of diffuse radiation at terrain level. In this paper, the downward diffuse radiative flux is computed in a two-stream approximation and obtained ultraviolet spectral radiative fluxes are inter-related with luminous fluxes. Such a method then permits an estimate of ultraviolet radiation if the traditionally measured illuminance on a horizontal plane is available. The utility of such a comparison of two spectral bands is shown, using the different lamp types employed in street lighting. The data demonstrate that it is insufficient to specify lamp type and its visible flux production independently of each other. Also the UV emissions have to be treated by modellers and environmental scientists because some light sources can be fairly important pollutants in the near ultraviolet. Such light sources can affect both the living organisms and ambient environment.
机译:多项研究试图了解不同夜空条件下辐射传输的机理和影响。但是,大多数这些研究仅限于可见光谱的各种影响。然而,电磁频谱的不可见部分可能对自然构成更深远的威胁。一种明显的威胁来自通常被称为“天辉”的东西。此类天窗是由于设置或设计不当的人造夜照明系统造成的,从而降低了所需的天空视野。因此,由于灯的发射不限于可见的电磁光谱,因此有必要考虑此类灯的完整光谱,以便了解地形水平的漫射辐射的物理行为。在本文中,以两个流近似计算向下扩散辐射通量,并且获得的紫外光谱辐射通量与光通量相互关联。然后,如果可获得传统上在水平面上测得的照度,则这种方法可以估算紫外线辐射。显示了使用街道照明中使用的不同灯类型来比较两个光谱带的效用。数据表明,单独指定灯类型及其可见光通量是不够的。此外,建模人员和环境科学家还必须处理紫外线辐射,因为某些光源可能是近紫外线中相当重要的污染物。这样的光源可以影响生物体和周围环境。

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