Assessing the effects of changes in land use and climate on runoff and sediment yields from a watershed in the Loess Plateau of China

环境科学 地表径流 沉积物 水文学(农业) SWAT模型 分水岭 气候变化 黄土 土地利用 降水 土地利用、土地利用的变化和林业 流域 水土评价工具 水资源 水流 地质学 地理 生态学 地貌学 机器学习 海洋学 生物 地图学 气象学 岩土工程 计算机科学
作者
Depeng Zuo,Zongxue Xu,Wenyi Yao,Shuangyan Jin,Peiqing Xiao,Ran Da-chuan
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:544: 238-250 被引量:271
标识
DOI:10.1016/j.scitotenv.2015.11.060
摘要

The changes in runoff and sediment load in the Loess Plateau of China have received considerable attention owing to their dramatic decline during recent decades. In this paper, the impacts of land-use and climate changes on water and sediment yields in the Huangfuchuan River basin (HFCRB) of the Loess Plateau are investigated by combined usage of statistical tests, hydrological modeling, and land-use maps. The temporal trends and abrupt changes in runoff and sediment loads during 1954–2012 are detected by using non-parametric Mann–Kendall and Pettitt tests. The land-use changes between 1980 and 2005 are determined by using transition matrix analysis, and the effects of land-use and climate changes on water and sediment yields are assessed by using the Soil and Water Assessment Tool (SWAT) hydrological model and four scenarios, respectively. The results show significant decreasing trends in both annual runoff and sediment loads, whereas slightly decreasing and significantly increasing trends are detected for annual precipitation and air temperature, respectively. 1984 is identified as the dividing year of the study period. The land-use changes between 1980 and 2005 show significant effects of the Grain for Green Project in China. Both land-use change and climate change have greater impact on the reduction of sediment yield than that of water. Water and sediment yields in the upstream region show more significant decreases than those in the downstream region under different effects. The results obtained in this study can provide useful information for water resource planning and management as well as soil and water conservation in the Loess Plateau region.

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