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Modelling Dunes from Len?óis Maranhenses National Park (Brazil): Largest dune field in South America

机译:从Len?óisMaranhenses国家公园(巴西)建模沙丘:南美最大的沙丘场

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This paper presents a digital elevation model (DEM) of the dunes found in the Len?óis Maranhenses National Park, an environmental protection area located in the Maranh?o state (Brazil). The DEM supports the modeling studies of sand-dune evolution using multi-temporal satellite images and ground truth data, obtained through the post-processed kinematic Global Navigation Satellite System (GNSS) positioning. The study area is located at the border of three major neotropical ecosystems: the Amazonia, Caatinga, and Brazilian savanna. It is located in the northeastern state of Maranh?o and encompasses the largest dune fields in the country. Wide shrubby areas (restingas, in Portuguese), lakes, mangroves, and a multitude off reshwater lagoons compose the park's natural environments. The objective of the present study is to create an DEM that can evidence the complex dynamics of dune formation in the study area with use of GNSS. Geodetic techniques and precision mapping were employed to monitor the short-term coastal dynamics. The use of GNSS receivers is justified by the difficulty of mapping the dune's features using conventional methods such as theodolite, level, and total station systems, due to their high cost, time restriction sand low data precision. Surface surveys were carried out annually between December 2015 and January 2017 to create a DEM. The study results reveal that the area has a negative volumetric balance of erosion and a preferential direction of sediment transport by wind, which may justify the pattern of advancement and retraction observed in the dunes of the studied area.
机译:本文介绍了在Len?óisMaranhenses国家公园中发现的沙丘的数字高程模型(DEM),该公园位于Maranh?o州(巴西)的环境保护区。 DEM支持使用多时相卫星图像和地面真实数据对沙丘演化进行建模研究,这些数据是通过后处理的运动学全球导航卫星系统(GNSS)定位获得的。研究区域位于三个主要的新热带生态系统的边界:亚马逊河,卡廷加和巴西热带稀树草原。它位于东北部的Maranh?o州,包括该国最大的沙丘场。公园的自然环境包括广阔的灌木丛地区(葡萄牙语中的restingas),湖泊,红树林和大量的淡水泻湖。本研究的目的是创建一个DEM,以使用GNSS来证明研究区内沙丘形成的复杂动态。大地测量技术和精确测绘被用来监测短期沿海动力。 GNSS接收器的使用是合理的,因为它们使用高成本,时间限制和低数据精度,因此难以使用经纬仪,水平仪和全站仪系统等常规方法来绘制沙丘的特征。在2015年12月至2017年1月之间,每年进行一次表面调查以创建DEM。研究结果表明,该地区的侵蚀量为负值,风向的泥沙运移方向为优先方向,这可以证明在研究区域的沙丘中观察到的进退模式是合理的。

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