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首页> 外文期刊>Remote Sensing >Impact of Environmental Factors on the Spectral Characteristics of Lava Surfaces: Field Spectrometry of Basaltic Lava Flows on Tenerife, Canary Islands, Spain
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Impact of Environmental Factors on the Spectral Characteristics of Lava Surfaces: Field Spectrometry of Basaltic Lava Flows on Tenerife, Canary Islands, Spain

机译:环境因素对熔岩表面光谱特征的影响:西班牙加那利群岛特内里费岛的玄武岩熔岩流场光谱法

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摘要

We report on spectral reflectance measurements of basaltic lava flows on Tenerife Island, Spain. Lava flow surfaces of different ages, surface roughness and elevations were systematically measured using a field spectroradiometer operating in the range of 350–2500 nm. Surface roughness, oxidation and lichen coverage were documented at each measured site. Spectral properties vary with age and morphology of lava. Pre-historical lavas with no biological coverage show a prominent increase in spectral reflectance in the 400–760 nm range and a decrease in the 2140–2210 nm range. Pāhoehoe surfaces have higher reflectance values than ʻaʻā ones and attain a maximum reflectance at wavelengths 760 nm. Lichen-covered lavas are characterized by multiple lichen-related absorption and reflection features. We demonstrate that oxidation and lichen growth are two major factors controlling spectra of Tenerife lava surfaces and, therefore, propose an oxidation index and a lichen index to quantify surface alterations of lava flows: (1) the oxidation index is based on the increase of the slope of the spectral profile from blue to red as the field-observed oxidation level strengthens; and (2) the lichen index is based on the spectral reflectance in the 1660–1725 nm range, which proves to be highly correlated with lichen coverage documented in the field. The two spectral indices are applied to Landsat ETM+ and Hyperion imagery of the study area for mapping oxidation and lichen coverage on lava surfaces, respectively. Hyperion is shown to be capable of discriminating different volcanic surfaces, i.e., tephra vs. lava and oxidized lava vs. lichen-covered lava. Our study highlights the value of field spectroscopic measurements to aid interpretation of lava flow characterization using satellite images and of the effects of environmental factors on lava surface evolution over time, and, therefore, has the potential to contribute to the mapping as well as dating of lava surfaces.
机译:我们报告了西班牙特内里费岛上玄武岩熔岩流的光谱反射率测量结果。使用在350-2500 nm范围内运行的光谱仪,系统地测量了不同年龄,表面粗糙度和海拔的熔岩流表面。在每个测量位置记录表面粗糙度,氧化和地衣覆盖率。光谱性质随熔岩的年龄和形态而变化。没有生物覆盖的史前熔岩在400–760 nm范围内光谱反射率显着增加,而在2140–2210 nm范围内光谱反射率则明显下降。 Phoehoehoe表面的反射率值高于a'ā反射率,并且在<760 nm的波长下具有最大反射率。地衣覆盖的熔岩的特征是与地衣有关的多种吸收和反射特征。我们证明氧化和地衣生长是控制特内里费岛熔岩表面光谱的两个主要因素,因此,提出了氧化指数和地衣指数来量化熔岩流的表面变化:(1)氧化指数基于光谱分布从蓝色到红色的斜率随着现场观察到的氧化水平的增强而增加; (2)地衣指数基于1660–1725 nm范围内的光谱反射率,这被证明与该领域中记录的地衣覆盖率高度相关。这两个光谱指数分别应用于研究区域的Landsat ETM +和Hyperion影像,以分别绘制熔岩表面的氧化和地衣覆盖率。已显示Hyperion能够区分不同的火山表面,即特非拉火山与熔岩以及氧化熔岩与地衣覆盖的熔岩。我们的研究强调了现场光谱测量的价值,有助于利用卫星图像解释熔岩流特征以及环境因素随时间推移对熔岩表面演变的影响,因此,有可能有助于制图和测年熔岩表面。

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