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Optimal Subdivision for Treatment and Management of Catastrophic Landslides in a Watershed Using Topographic Factors

机译:利用地形因子对流域灾难性滑坡进行处理和管理的最佳细分

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摘要

Recent extreme rainfall events led to many landslides due to climate changes in Taiwan. How to effectively promote post-disaster treatment and/or management works in a watershed/drainage basin is a crucial issue. Regarding the processes of watershed treatment and/or management works, disaster hotspot scanning and treatment priority setup should be carried out in advance. A scanning method using landslide ratio to determine the appropriate outlet of an interested watershed, and an optimal subdivision system with better homogeneity and accuracy in landslide ratio estimation were developed to help efficient executions of treatment and/or management works. Topography is a key factor affecting watershed landslide ratio. Considering the complexity and uncertainty of the natural phenomenon, multivariate analysis was applied to understand the relationship between topographic factors and landslide ratio in the interested watershed. The concept of species-area curve, which is usually adopted at on-site vegetation investigation to determinate the suitable quadrate size, was used to derive the optimal threshold in subdivisions. Results show that three main component axes including factors of scale, network and shape extracted from Digital Terrain Model coupled with areas of landslide can effectively explain the characteristics of landslide ratio in the interested watershed, and a relation curve obtained from the accuracy of landslide ratio classification and number of subdivisions could be established to derive optimal subdivision of the watershed. The subdivision method promoted in this study could be further used for priority rank and benefit assessment of landslide treatment in a watershed.
机译:由于台湾的气候变化,近期的极端降雨事件导致许多山体滑坡。如何有效促进流域/流域的灾后处理和/或管理工作是至关重要的问题。关于流域处理和/或管理工作的过程,应事先进行灾难热点扫描和处理优先级设置。开发了一种使用滑坡比确定感兴趣的流域的适当出口的扫描方法,以及在滑坡比估算中具有更好的同质性和准确性的最优细分系统,以帮助有效执行处理和/或管理工作。地形是影响流域滑坡率的关键因素。考虑到自然现象的复杂性和不确定性,运用多变量分析法了解了感兴趣流域地形因子与滑坡比之间的关系。通常在现场植被调查中采用物种-面积曲线的概念来确定合适的四边形大小,该概念用于推导细分中的最佳阈值。结果表明,从数字地形模型中提取的比例尺,网络和形状三个主要成分轴与滑坡面积相结合,可以有效地解释感兴趣流域滑坡率的特征,并根据滑坡率分类的准确性获得一条关系曲线。可以建立细分的数量,以得出流域的最佳细分。本研究中提倡的细分方法可进一步用于流域滑坡治理的优先等级和效益评估。

著录项

  • 来源
    《Environmental Management》 |2016年第5期|833-842|共10页
  • 作者单位

    Department of Soil and Water Conservation, National Chung Hsing University, 250, Kuo-Kuang Rd., Taichung 40227, Taiwan, ROC;

    Department of Soil and Water Conservation, National Chung Hsing University, 250, Kuo-Kuang Rd., Taichung 40227, Taiwan, ROC;

    Department of Soil and Water Conservation, National Chung Hsing University, 250, Kuo-Kuang Rd., Taichung 40227, Taiwan, ROC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Subdivision; Topographic factors; Landslide; Multivariate analysis;

    机译:细分;地形因素;滑坡;多元分析;

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