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Discussion on Soil and Water Conservation Activities Hydrological Effects Simulation in the Loess Plateau

机译:黄土高原水土保持活动水文效应模拟的探讨。

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The Loess Plateau is the main water collection and the sediment production area of the Yellow River. The water resource crisis and the heavy flood inducing soil erosion coexist in this area. As a result the eco-environment is deteriorating rapidly. The Soil and Water Conservation Activities (SWCA) have taking place almost on every hill slope in the Loess Plateau almost three decades. SWCA, however, can change hydrological cycle strongly by intensifying the infiltration and weakening the overland runoff. Therefore, the research on the hydrological effects of SWCA is important to forecast the long-term hydrological and sediment situation changes trend of the Yellow River. The paper presents the progresses and the problems about recent research on this issue. Due to the structure of distributed hydrological models and the Loess Plateau hydrological effects characteristics, the distributed hydrological models promised a good way to simulate the hydrological effects of SWCA. Moreover, this paper indicates that the distributed hydrological models determine the flow direction(s) and the overland runoff quantity distribution on the hill slope by single factor, gradient. In order to accurately simulate the hydrological effects of SWCA, the distributed hydrological models should consider the impact of flow resistance factors to be more physically based.
机译:黄土高原是黄河的主要集水区和产沙区。该地区并存着水资源危机和洪灾造成的水土流失。结果,生态环境迅速恶化。水土保持活动(SWCA)几乎在黄土高原的每个山坡上都进行了近三十年。但是,SWCA可以通过增加入渗和减弱陆上径流来强烈改变水文循环。因此,SWCA的水文效应研究对于预测黄河的长期水文和泥沙情势变化趋势具有重要意义。本文介绍了有关该问题的最新研究进展和存在的问题。由于分布式水文模型的结构和黄土高原水文效应的特点,分布式水文模型有望成为模拟SWCA水文效应的好方法。此外,本文指出,分布式水文模型通过单因素梯度确定了山坡上的水流方向和陆上径流量分布。为了准确地模拟SWCA的水文影响,分布式水文模型应考虑流动阻力因素的影响是基于物理的。

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