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首页> 外文期刊>The Science of the Total Environment >Rainfall simulation and Structure-from-Motion photogrammetry for the analysis of soil water erosion in Mediterranean vineyards
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Rainfall simulation and Structure-from-Motion photogrammetry for the analysis of soil water erosion in Mediterranean vineyards

机译:降雨模拟和动态结构摄影测量法分析地中海葡萄园的土壤水蚀

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摘要

Soil water erosion is a serious problem, especially in agricultural lands. Among these, vineyards deserve attention, because they constitute for the Mediterranean areas a type of land use affected by high soil losses. A significant problem related to the study of soil water erosion in these areas consists in the lack of a standardized procedure of collecting data and reporting results, mainly due to a variability among the measurement methods applied. Given this issue and the seriousness of soil water erosion in Mediterranean vineyards, this works aims to quantify the soil losses caused by simulated rainstorms, and compare them with each other depending on two different methodologies: (ⅰ) rainfall simulation and (ⅱ) surface elevation change-based, relying on high-resolution Digital Elevation Models (DEMs) derived from a photogrammetric technique (Structure-from-Motion or SfM). The experiments were carried out in a typical Mediterranean vineyard, located in eastern Spain, at very fine scales. SfM data were obtained from one reflex camera and a smartphone built-in camera. An index of sediment connectivity was also applied to evaluate the potential effect of connectivity within the plots. DEMs derived from the smartphone and the reflex camera were comparable with each other in terms of accuracy and capability of estimating soil loss. Furthermore, soil loss estimated with the surface elevation change-based method resulted to be of the same order of magnitude of that one obtained with rainfall simulation, as long as the sediment connectivity within the plot was considered. High-resolution topography derived from SfM revealed to be essential in the sediment connectivity analysis and, therefore, in the estimation of eroded materials, when comparing them to those derived from the rainfall simulation methodology. The fact that smartphones built-in cameras could produce as much satisfying results as those derived from reflex cameras is a high value added for using SfM.
机译:土壤水蚀是一个严重的问题,尤其是在农业用地中。其中,葡萄园值得关注,因为它们构成了地中海地区受高土壤流失影响的土地利用类型。与这些地区水土流失研究有关的一个重要问题在于缺乏标准化的数据收集和报告程序,这主要是由于所采用的测量方法之间存在差异。考虑到这个问题以及地中海葡萄园水土流失的严重性,本工作旨在量化模拟暴雨造成的土壤流失,并根据两种不同的方法将它们相互比较:(ⅰ)降雨模拟和(ⅱ)地表高程基于变化,依赖于从摄影测量技术(运动结构或SfM)派生的高分辨率数字高程模型(DEM)。实验是在西班牙东部的典型地中海葡萄园中进行的,规模非常小。 SfM数据是从一台反光相机和一部智能手机内置相机获得的。沉积物连通性指数也用于评估样地内连通性的潜在影响。从智能手机和反光相机获得的DEM在准确性和估算土壤流失能力方面彼此可比。此外,只要考虑了样地内的泥沙连通性,用基于表面高程变化的方法估算的土壤流失量就相当于通过降雨模拟获得的土壤流失量级。从SfM得出的高分辨率地形在将沉积物的连通性分析与从降雨模拟方法中获得的侵蚀材料进行比较时,对于沉积物连通性分析以及因此在侵蚀材料的估计中至关重要。智能手机内置相机可以产生与反光相机一样令人满意的结果,这是使用SfM的高附加值。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|204-215|共12页
  • 作者单位

    Department of Land, Environment, Agriculture and Forestry, University of Padova, Agripolis, Viale dell'Universita 16,35020 Legnaro, PD, Italy;

    Soil Erosion and Degradation Research Group, Department of Geography, University of Valencia, Blasco Ibanez, 28,46010, Valencia, Spain;

    Dipartimento di Agraria. Universita degli Studi di Sassari, Viale Italia 39,07100 Sassari, Italy;

    Department of Land, Environment, Agriculture and Forestry, University of Padova, Agripolis, Viale dell'Universita 16,35020 Legnaro, PD, Italy;

    Department of Cartographic Engineering, Geodesy and Photogrammetry, Universitat Politecnica de Valencia, Camino de Vera, s, 46022 Valencia, Spain;

    Physical Geography, Trier University, 54286 Trier, Germany ,Instituto de Geomorfologia y Suelos, University of Malaga, 29071 Malaga, Spain;

    Soil Erosion and Degradation Research Group, Department of Geography, University of Valencia, Blasco Ibanez, 28,46010, Valencia, Spain ,Soil Physics and Land Management Group, Wageningen University, Droevendaalsesteeg 4,6708PB Wageningen, The Netherlands;

    Department of Land, Environment, Agriculture and Forestry, University of Padova, Agripolis, Viale dell'Universita 16,35020 Legnaro, PD, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil water erosion; Mediterranean vineyards; Rainfall simulation; Structure from motion; Sediment connectivity;

    机译:土壤水蚀;地中海葡萄园;降雨模拟运动的结构;泥沙连通性;

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