首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Relationship between the periodicity of soil and water loss and erosion-sensitive periods based on temporal distributions of rainfall erosivity in the Three Gorges Reservoir Region, China
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Relationship between the periodicity of soil and water loss and erosion-sensitive periods based on temporal distributions of rainfall erosivity in the Three Gorges Reservoir Region, China

机译:基于三峡水库地区降雨腐蚀性时间分布的土壤和水分损失和腐蚀时期的周期性关系

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摘要

More variable or extreme rainfall caused by global climate change is likely to cause much uncertainty in soil erosion. Exploring the effects of changes in the timing and magnitude of rainfall erosivity on soil erosion allows to better understand the sensitivity of soil erosion to rainfall. The aim of this study was to investigate the relationships between the periodicity of soil and water loss and erosion-sensitive periods based on the temporal distributions of rainfall erosivity in the Three Gorges Reservoir Region, China. A daily rainfall erosivity model and field runoff plot monitoring were used to achieve these goals. We found that extreme rainfall has a great effect on the distributions of rainfall erosivity. The average annual erosive rainfall frequency accounts for only 21.2% of the average annual total rainfall frequency, but the average annual erosive rainfall amount accounts for 70.4% of the average annual total rainfall amount. The monthly runoff yields and sediment yields show synchronization with variations in rainfall erosivity to some extent, but the former are closer to the changes in monthly rainfall erosivity. The annual runoff yields and soil loss rates do not show synchronization, but the changes in annual soil loss rates are closer to the interannual variations of rainfall erosivity. The annual soil erosion in the study area can be divided into three periods, namely, highly sensitive periods, moderately sensitive periods and slightly sensitive periods, which indicate the erosion risks from high to low, respectively. Additionally, low vegetation coverage in highly sensitive periods and human activities in moderately sensitive periods can aggravate soil erosion.
机译:全球气候变化导致的更为多变或极端的降雨可能会对土壤侵蚀造成很大的不确定性。探索降雨侵蚀力的时间和大小变化对土壤侵蚀的影响,有助于更好地理解土壤侵蚀对降雨的敏感性。本研究的目的是根据三峡库区降雨侵蚀力的时间分布,探讨水土流失的周期性与侵蚀敏感期之间的关系。为了实现这些目标,采用了日降雨侵蚀力模型和田间径流小区监测。我们发现极端降雨对降雨侵蚀力的分布有很大影响。年均侵蚀性降雨频率仅占年均总降雨频率的21.2%,而年均侵蚀性降雨量占年均总降雨量的70.4%。月径流产沙量与降雨侵蚀力的变化在一定程度上是同步的,但前者更接近于月降雨侵蚀力的变化。年径流量和土壤流失率不同步,但年土壤流失率的变化更接近降雨侵蚀力的年际变化。研究区年度土壤侵蚀可分为三个阶段,即高度敏感期、中度敏感期和轻度敏感期,分别表示侵蚀风险从高到低。此外,高度敏感期的低植被覆盖率和中度敏感期的人类活动会加剧土壤侵蚀。

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