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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Determination of complex refractive indices and optical properties of volcanic ashes in the thermal infrared based on generic petrological compositions
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Determination of complex refractive indices and optical properties of volcanic ashes in the thermal infrared based on generic petrological compositions

机译:基于通用岩石化组成的热红外线中火山灰的复杂折射率和光学性质的测定

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摘要

The spaceborne detection of volcanic ash clouds at infrared wavelengths helps to avoid regions with enhanced volcanic ash concentrations that pose a threat to aviation. Current volcanic ash data retrievals require detailed information on microphysical properties and the refractive index of volcanic ash, which are highly variable. Uncertainties in the latter currently limit the quality of volcanic ash nowcasts. Here, we introduce a novel method to calculate the complex refractive indices of volcanic ashes at wavelengths from 5 to 15 pm from measurements of their individual components based on generic petrological ash compositions. Thereby the refractive indices for volcanic glasses and bulk volcanic ashes of different chemical compositions are derived. The variability of the latter is mainly influenced by the silica content and the porosity and to a minor degree by the glass-to crystals ratio. Calculating optical properties exhibits an equally large impact of bulk composition and grain size distribution, whereas particle shape is considered less important for particle sizes of the order 1 pm. Using these optical properties to determine brightness temperature differences between the 11 pm and 12 pm channels we show that the effect of ash composition is non-negligible for modern satellite instruments. Particularly, the dependence of the volcanic ash on the silica content (and to a much smaller extent on the glass-to-crystals ratio) is observable in its refractive index, its optical properties and the brightness temperature difference, indicating that composition might be retrievable to some degree by remote sensing methods.(c) 2021 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http:// creativecommons.org/licenses/by/4.0/).
机译:红外波长的火山灰云的星空播种有助于避免具有增强的火山灰浓度的区域,这对航空构成了威胁。目前的火山灰数据检索需要有关微神科性质和火山灰的折射率的详细信息,这是高度可变的。后者的不确定性目前限制了火山灰的质量。在这里,我们介绍一种新的方法,以根据普通灰病组合物从其各个组分的测量计算波长下的波长的复合折射率。由此,衍生出不同化学组合物的火山玻璃和散装火山灰的折射率。后者的可变性主要受二氧化硅含量和孔隙率的影响,并通过玻璃至晶体比对少度影响。计算光学性质表现出块状组合物和粒度分布的同等较大影响,而颗粒形状被认为对命令1μm的粒度不太重要。使用这些光学性质来确定晚上11点和12 PM通道之间的亮度温度差,我们表明现代卫星仪器的灰色组成的效果是不可忽略的。特别地,在其折射率,其光学性质和亮度温度差异中可观察到粘附在二氧化硅含量上的依赖性(以及玻璃晶比的小规模),其光学性质和亮度温度差异,表明该组合物可能可检索通过遥感方法到某种程度。(c)2021作者。由elsevier b.v发布。这是CC下的开放式访问文章,由许可证(http:// creativecommons.org/licenses/by/4.0/)。

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