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Remotely sensed dune celerity and sand flux measurements of the world's fastest barchans (Bodele, Chad)

机译:遥感沙丘的速度和沙尘通量的测量,世界上最快的巴坎(Bodele,乍得)

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摘要

Quantifying sand flux with field measurements is an expensive and time-consuming process. We here present an alternative approach using the COSI-Corr software package for Earth surface deformation detection. Using pairs of ASTER satellite images, we detected dune migration in the Bodélé depression of northern Chad over time intervals of one month to 6.5 years. The displacement map can be used to automatically distinguish dunes from interdunes, which is a crucial step towards calculating sand flux. We interpolated a surface between the interdune areas and subtracted it from a digital elevation model, thus obtaining dune heights and volumes. Multiplying height with celerity yields a pixel-by-pixel estimate of the sand flux. We applied this method to large diatomite dunes in the Bodélé, confirming that these are some of the world's fastest moving barchans. Plotting dune height against inverse celerity reveals sand flux at the dune crest of >200 m3/m/yr. Average dune sand flux values for the eastern and western Bodélé are 76 and 99 m3/m/yr, respectively. The contribution of the dunes to the total area-averaged sand flux is 24–29 m3/m/yr, which is ∼10% of the saltation flux determined by previously published field measurements.
机译:通过现场测量来量化砂通量是一个昂贵且耗时的过程。我们在这里提出使用COSI-Corr软件包进行地球表面变形检测的另一种方法。利用成对的ASTER卫星图像,我们在一个月至6.5年的时间间隔内检测到了乍得北部Bodélé洼地的沙丘迁移。位移图可用于自动区分沙丘和沙丘,这是计算沙流量的关键步骤。我们在中间区域之间插入表面,并从数字高程模型中减去该表面,从而获得沙丘的高度和体积。将高度与速度相乘可得出砂通量的逐像素估算。我们将此方法应用于Bodélé中的大型硅藻土沙丘,确认这些是世界上移动速度最快的Barchans。绘制沙丘高度与反向速度的关系图,可以发现沙丘顶部的沙通量> 200 m3 / m / yr。东部和西部Bodélé的平均沙丘通量分别为76和99 m3 / m / yr。沙丘对总面积平均沙通量的贡献为24-29 m3 / m / yr,约为以前公布的现场测量结果确定的盐分通量的10%。

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  • 作者

    Vermeesch Pieter; Drake N.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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