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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Influences of human activities on sediment discharge from devastated weathered granite hills of southern China: effects of 4-year elimination of human activities
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Influences of human activities on sediment discharge from devastated weathered granite hills of southern China: effects of 4-year elimination of human activities

机译:人类活动对中国南方风化花岗岩山遭受泥沙排放的影响:人类活动四年消除的影响

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摘要

Sediment discharge is a serious problem in the weathered granite mountains of southern China. Human activities, such as the harvesting of ferns and litter for fuel, are the main source of sediment, but the details of the processes and mechanisms leading to sediment discharge are unclear. Data on sediment yields, percentages of peak storm runoff and fern undergrowth and litter cover extent in the two basins-one a control from which people have been excluded since 1997, and the other where normal harvesting practices are permitted-were used to evaluate how human activity affects sediment discharge. The annual sediment discharge decreased immediately after implementing control practice, despite no marked changes in the 4 years after 1997 in the percentages of peak storm turnoff and the fern and litter cover extent and density. The 4-year period of control practice was too short to affect the relationship between peak rainfall and peak storm runoff and the fern and litter covers and their amounts, but long enough to contribute to the reductions in sediment discharge in the control basin by decreasing erodibility. Thus, sediment discharge was probably reduced to some extent by the elimination of human impacts even though a well-developed vegetation layer did not develop.
机译:在中国南方风化的花岗岩山区,泥沙排放是一个严重的问题。人类活动,例如收获蕨类植物和枯枝落叶作为燃料,是沉积物的主要来源,但导致沉积物排放的过程和机制的细节尚不清楚。关于两个盆地的沉积物产量,最大暴雨径流百分比,蕨类植物不足和杂草覆盖率的数据,其中一个是自1997年以来就被排除在外的人,另一个是允许正常收割的人。活动影响沉积物的排放。尽管实施了1997年后的4年中,风暴高峰关闭的百分比以及蕨类和凋落物的覆盖程度和密度没有明显变化,但实施控制措施后,年沉积物排放量立即减少了。四年的控制实践时间太短,无法影响峰值降雨和峰值暴雨径流量与蕨类和凋落物覆盖物及其含量之间的关系,但足够长的时间可以通过减少侵蚀性来减少控制盆地的沉积物排放。因此,即使没有形成发达的植被层,消除人类影响也可能在一定程度上减少了沉积物的排放。

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