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Evaluating the Scale Effect of Soil Erosion Using Landscape Pattern Metrics and Information Entropy: A Case Study in the Danjiangkou Reservoir Area, China

机译:基于景观格局度量和信息熵的土壤侵蚀规模效应评价-以丹江口库区为例

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摘要

The regular patterns of soil erosion tend to change at different scales of observation, affecting the mechanism of soil erosion and its evolution characteristics. This phenomenon has essential scientific significance for the rational allocation of land resources and for studies on sustainable ecosystems. As an important agricultural area in China, Danjiangkou reservoir is threatened by severe soil erosion. In this study, we selected four kinds of landscape pattern metrics, including patch density, fractal dimension, Shannon diversity index, and connectivity, to analyze soil erosion intensity in the Danjiangkou reservoir area at different scales based on landscape ecological principles. In addition, we determine the optimum research scale of the experimental area by calculating the information entropy value of soil patches at different scales. The findings suggest that: (1) the landscape pattern of soil erosion in the experimental area is obviously scale-dependent, and the responses to scale differ from index to index; (2) as the scale of observation increases, the fragmentation of soil patches is weakened, the stability of different landscape components is enhanced, and the soil becomes less vulnerable to erosion; and (3) based on information entropy theory, 60 m is confirmed to be the optimum scale of this study.
机译:土壤侵蚀的规律性模式倾向于在不同的观测尺度上变化,从而影响土壤侵蚀的机理及其演变特征。这种现象对于合理分配土地资源和可持续生态系统研究具有重要的科学意义。作为中国重要的农业区,丹江口水库受到严重水土流失的威胁。在这项研究中,我们选择了斑块密度,分形维数,香农多样性指数和连通性这四种景观格局指标,根据景观生态学原理分析了丹江口库区不同规模的水土流失强度。另外,通过计算不同尺度下土壤斑块的信息熵值,确定实验区的最佳研究规模。研究结果表明:(1)试验区水土流失的景观格局具有明显的尺度依赖性,尺度对尺度的响应因指数而异。 (2)随着观测规模的增加,土壤斑块的破碎化减弱,不同景观成分的稳定性增强,土壤不易遭受侵蚀; (3)基于信息熵理论,确定60m是本研究的最佳规模。

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