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胡丹阳. 南方红壤区不同管理模式下的马尾松林水沙特征与植被作用[J]. 四川林业科技, 2019, 40(4): 45-50. DOI: 10.16779/j.cnki.1003-5508.2019.04.009
引用本文: 胡丹阳. 南方红壤区不同管理模式下的马尾松林水沙特征与植被作用[J]. 四川林业科技, 2019, 40(4): 45-50. DOI: 10.16779/j.cnki.1003-5508.2019.04.009
HU Dan-yang. Characteristics of Slope Runoff and Sediment and Vegetation of Pinus massoniana Forests under Different Management in Red Soil Regions of Southern China[J]. Journal of Sichuan Forestry Science and Technology, 2019, 40(4): 45-50. DOI: 10.16779/j.cnki.1003-5508.2019.04.009
Citation: HU Dan-yang. Characteristics of Slope Runoff and Sediment and Vegetation of Pinus massoniana Forests under Different Management in Red Soil Regions of Southern China[J]. Journal of Sichuan Forestry Science and Technology, 2019, 40(4): 45-50. DOI: 10.16779/j.cnki.1003-5508.2019.04.009

南方红壤区不同管理模式下的马尾松林水沙特征与植被作用

Characteristics of Slope Runoff and Sediment and Vegetation of Pinus massoniana Forests under Different Management in Red Soil Regions of Southern China

  • 摘要: 基于标准坡面径流小区观测,比较不同雨量水平植被对地表径流量的贡献,同时利用水文功能连通性原理和灰色关联法对相关土壤和植被参数进行比较。结果表明:①小区减流减沙效果为"林下流" < 封禁管理 < 马尾松纯林 < 人工乔灌草混交;②地上和地下的植被特征对坡面水文过程阻抗明显;③相关参数的影响程度为土壤含水量 < 植被盖度 < 植被高度 < 有机质含量。不同雨量下小区水沙过程不相一致,小区尺度上植被特征对坡面水土保持起重要作用。

     

    Abstract: Based on the observation of runoff plots, vegetation's contributions to the surface runoff were compared under different precipitations, the functional connectivity and the gray correlation method were explored for relevant soil and vegetation parameters. The results were as follows:(1) the flow and sediment reduction effect in different plots were understorey flow, closed management, pure forest, artificial arbor with mixed shrub and grass in ascending order; (2) vegetation characteristics above and below the ground had obvious impedance to slope hydrological process; (3) the relevant parameters influences were listed as soil moisture content, vegetation coverage, vegetation height, organic matter content in ascending order. It could be seen that the water and sediment processes were not consistent with changing precipitation in plots, and the vegetation played an important role in slope soil and water conservation in the plot scale.

     

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