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首页> 外文期刊>Geomorphology >Modeling grain size variations of aeolian gypsum deposits at White Sands, New Mexico, using AVIRIS imagery
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Modeling grain size variations of aeolian gypsum deposits at White Sands, New Mexico, using AVIRIS imagery

机译:使用AVIRIS影像模拟新墨西哥州白沙的风成石膏矿的粒度变化

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Visible and Near-Infrared (VNIR) through Short Wavelength Infrared (SWIR) (0.4-2.5 μm) AVIRIS data, along with laboratory spectral measurements and analyses of field samples, were used to characterize grain size variations in aeolian gypsum deposits across barchan-transverse, parabolic, and barchan dunes at White Sands, New Mexico, USA. All field samples contained a mineralogy of ~100% gypsum. In order to document grain size variations at White Sands, surficial gypsum samples were collected along three Transects parallel to the prevailing downwind direction. Grain size analyses were carried out on the samples by sieving them into seven size fractions ranging from 45 to 621 μm, which were subjected to spectral measurements. Absorption band depths of the size fractions were determined after applying an automated continuum-removal procedure to each spectrum. Then, the relationship between absorption band depth and gypsum size fraction was established using a linear regression. Three software processing steps were carried out to measure the grain size variations of gypsum in the Dune Area using AVIRIS data. AVIRIS mapping results, field work and laboratory analysis all show that the interdune areas have lower absorption band depth values and consist of finer grained gypsum deposits. In contrast, the dune crest areas have higher absorption band depth values and consist of coarser grained gypsum deposits. Based on laboratory estimates, a representative barchan-transverse dune (Transect 1) has a mean grain size of 1.16 φ (449 μm). The error bar results show that the error ranges from -50 to+50 μm. Mean grain size for a representative parabolic dune (Transect 2) is 1.51 φ (352 μm), and 1.52 φ (347 μm) for a representative barchan dune (Transect 3). T-test results confirm that there are differences in the grain size distributions between barchan and parabolic dunes and between interdune and dune crest areas. The t-test results also show that there are no significant differences between modeled and laboratory-measured grain size values. Hyperspectral grain size modeling can help to determine dynamic processes shaping the formation of the dunes such as wind directions, and the relative strengths of winds through time. This has implications for studying such processes on other planetary landforms that have mineralogy with unique absorption bands in VNIR-SWIR hyperspectral data.
机译:通过短波长红外(SWIR)(0.4-2.5μm)可见和近红外(VNIR)AVIRIS数据,以及实验室光谱测量和现场样品分析,用于表征Barchan横断面的风成石膏矿床的粒径变化美国新墨西哥州白沙的沙丘,抛物线和沙丘沙丘。所有田间样品的矿物学含量均为〜100%石膏。为了记录白沙的晶粒尺寸变化,沿平行于主要顺风方向的三个横断面收集了表面石膏样品。通过将样品筛分成45至621μm的七个粒度级分,对样品进行粒度分析,然后对其进行光谱测量。在对每个光谱应用自动连续去除过程后,确定尺寸级分的吸收带深度。然后,使用线性回归建立吸收带深度与石膏尺寸分数之间的关系。进行了三个软件处理步骤,以使用AVIRIS数据测量沙丘地区石膏的晶粒尺寸变化。 AVIRIS制图结果,现场工作和实验室分析均显示,中间区的吸收带深度值较低,并且由较细的石膏沉积物组成。相反,沙丘顶峰区域具有较高的吸收带深度值,并且由较粗的粒状石膏沉积物组成。根据实验室估计,代表性的横向横贯沙丘(横断面1)的平均晶粒尺寸为1.16φ(449μm)。误差线结果显示误差范围为-50至+50μm。代表性的抛物线沙丘(横断面2)的平均晶粒尺寸为1.51φ(352μm),代表性的沙丘沙丘(横断面3)的平均晶粒尺寸为1.52φ(347μm)。 T检验结果证实,巴坎沙丘和抛物线沙丘之间以及沙丘间和沙丘波峰区域之间的晶粒尺寸分布存在差异。 t检验结果还表明,模型化和实验室测量的晶粒度值之间没有显着差异。高光谱晶粒尺寸建模可以帮助确定影响沙丘形成的动态过程,例如风向以及随时间变化的风的相对强度。这对于研究具有矿物学特征且在VNIR-SWIR高光谱数据中具有独特吸收带的其他行星地貌上的此类过程具有重要意义。

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