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Directional optical transmission through a sand layer: a preliminary laboratory experiment

机译:定向光学传输通过砂层:初步实验室实验

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Given the importance of penetration of light in the soil for seed germination, soil warming, and the photolytic degradation of pesticides, directional transmission of thin sand samples are studied in this paper under both dry and saturated conditions. The detector views upward through a glass-bottom sample holder, filled to 3 or 4 mm with a coarse, translucent, quartz sand sample. Transmission through the samples was measured as the illumination zenith angle moved from 0 to 70° in 5° intervals. In the most cases, transmission decreased monotonically, but slowly with increasing illumination angle at all wavelengths. A peak in transmission only appeared at 0° illumination for the low bulk density, dry sample at 3 mm depth. The 0° peak disappeared when the sample was wetted, when the bulk density increased, or when the depth of the sample increased, which indicates that the radiation transmitting through a sand layer can be diffused thoroughly with a millimeters-thin sand layer. For the saturated samples, water influences light transmission in contrasting ways in shorter and longer wavelength. Transmission increased in the VNIR when saturated relative to dry, while transmission decreased sharply after 1300 nm, with spectral absorption features characteristic of water absorption. In VNIR region, water absorption is low and the low relative index of refraction enhanced transmission through sand sample. In contrast, water absorption became dominant at longer wavelengths region leading to the strongly reduced transmission.
机译:鉴于渗透在土壤中的渗透到种子萌发,土壤变暖和农药的光解劣化,在干燥和饱和条件下,本文研究了薄砂样品的定向传递。检测器通过玻璃底样品架向上看,填充到3或4毫米,粗糙,半透明,石英砂样品。测量通过样品的传输,因为在5°间隔中的照明天顶角从0到70°移动。在大多数情况下,变速器单调地减小,但随着所有波长的照明角度慢慢地减小。透射峰的峰值仅出现在0°照明的低堆积密度,3mm深度的干燥样品。当样品被润湿时,0°峰消失,当堆积密度增加时,或者当样品的深度增加时,这表明通过砂层传递的辐射可以用毫米薄的砂层彻底扩散。对于饱和样品,水以比较较长且较长的波长的方式影响光传输。当相对于干燥时饱和时,传动在VNIR中增加,而在1300nm之后透射率急剧下降,具有频谱吸收特征的吸水性。在VNIR区域中,吸水率低,折射率低通过砂样的传输增强。相反,吸水率在更长的波长区域处变得显着,导致透射强度降低。

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