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首页> 外文期刊>Landscape and Urban Planning >Application of airborne LiDAR and GIS in modeling trail erosion along the Appalachian Trail in New Hampshire, USA
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Application of airborne LiDAR and GIS in modeling trail erosion along the Appalachian Trail in New Hampshire, USA

机译:机载激光器和GIS在美国新罕布什尔州新罕布什尔径沿安巴拉契亚径造型落后侵蚀的应用

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摘要

Recreational activities can negatively affect protected area landscapes and resources and soil erosion is frequently cited as the most significant long-term impact to recreational trails. This study applied extensive multiple regression modeling of trail soil loss to identify influential factors that managers can manipulate to improve the sustainability of trail design and management. Field measurements assessed soil loss as the mean vertical depth along 135 trail transects across the Appalachian Trail sampled along three 5 km trail segments in New Hampshire's White Mountains National Forest, chosen due to its exceptionally high use and impact. GIS and LiDAR data were used to create many new variables reflecting terrain characteristics that were expected to influence trail erosion and improve predictive models of trail system soil loss. A variety of terrain and hydrology characteristics were applied to model trail soil loss at three spatial scales: transect, trail corridor, and watershed. The model for each spatial scale and a combined model are presented. The adjusted R-2 explaining variation in soil loss is 0.57 using variables from all spatial scales, improving on predictive modeling from earlier studies. Environmental and trail design factors such as slope and watershed flow length were found to be significantly correlated to soil loss and have implications for improved sustainable trail design and management.
机译:娱乐活动可以对保护区产生负面影响,景观和资源和土壤侵蚀经常被认为是对娱乐道路的最重要的长期影响。本研究采用了广泛的土壤损失的广泛多元回归建模,以确定管理人员可以操纵的影响因素,以提高TRAIL设计和管理的可持续性。现场测量评估了土壤损失,因为沿着135次横跨新罕布什尔新罕布什尔州的白色森林森林的三个5公里小径段采样的Appalachian轨迹的平均垂直深度横断面。 GIS和LIDAR数据用于创造许多反映地形特征的新变量,这些特征预期会影响痕迹侵蚀,提高迹线系统土壤损失的预测模型。应用各种地形和水文特征在三个空间秤上模拟迹线污垢损失:横断管道,走廊和水域。提出了每个空间刻度和组合模型的模型。使用来自所有空间尺度的变量,调整后的R-2解释了土壤损失的变化是0.57,从早期研究改善预测建模。发现坡度和流域流动长度等环境和小径设计因素与土壤损失显着相关,并对改进的可持续小径设计和管理有影响。

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