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Impact of vegetation restoration on hydrological processes in the middle reaches of the Yellow River,China 被引量:4
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作者 XIN Zhong-bao YU Xin-xiao 《Forestry Studies in China》 CAS 2009年第4期209-218,共10页
Sediment discharge from the Yellow River originates mainly from the drainage area between Hekouzhen and Longmen, i.e., the Helong area. Spatial-temporal variations of the vegetation cover in this area during the 1981-... Sediment discharge from the Yellow River originates mainly from the drainage area between Hekouzhen and Longmen, i.e., the Helong area. Spatial-temporal variations of the vegetation cover in this area during the 1981-2007 period have been investigated using GIMMS and SPOT VGT NDVI data. We have also analyzed the interannual variations in vegetation cover and changes in annual runoff and sediment discharge, the consequences from precipitation change and the Grain for Green Project (GGP). The results show that vegetation cover of the Helong area has increased during the 1981-2007 period. The northwestern part the Helong area, where the flat sandy lands are covered by grass, has experienced the largest increase. The region where the vegetation cover has declined is largely found in the southern and southeastern Helong area, which is a gullied hilly area or forested. Although precipitation was relatively low during the 1999-2007 period, the vegetation cover showed a significant increase in the Helong area, due to the implementation of the GGP. During this period, the most significant improvement in the vegetation cover occurred mainly in the gullied hilly areas of the Loess Plateau, such as the drainage basins of the Kuyehe and Tuweihe rivers and the middle and lower reaches of the Wudinghe and Yanhe rivers. A comparison of the average annual maximum NDVI between the earlier (1998-2002) stage and the next five years (2003-2007) of the GGP indicates that the areas with increases of 10% and 20% in NDVI account for 72.5% and 36.4% of the total area, respectively. Interannual variation of annual runoff and sediment discharge shows a declining trend, especially since the 1980s, when the decrease became very obvious. Compared with the 1950-1969 period, the average runoff during the 1980-2007 period was reduced by 34.8 × 10^8 m3 and the sediment discharge by 6.4 ×10^8 t, accounting for 49.4% and 64.9% of that in the 1950-1969 period, respectively. There is a positive correlation between the annual maximum NDVI and annual runoff and sediment discharge. This correlation was reversed since the implementation of the GGP in 1999 and vegetation cover in the He- long area has increased, associated with the decrease in runoff and sediment discharge. Less precipitation has been an important fac- tor driving the decrease in runoff and sediment discharge during 1999 2007. However, restoration and improvement of the vegetation cover may also have played a significant role in accelerating the decrease in annual runoff and sediment discharge by enhancing evapotranspiration and alleviating soil erosion. 展开更多
关键词 middle reaches of the Yellow River Hekouzhen to Longmen area helong area) vegetation restoration Grain forGreen Project (GGP) runoff and sediment
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黄河河龙区间洪水泥沙关系分析 被引量:5
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作者 王婧 那巍 《灌溉排水学报》 CSCD 北大核心 2019年第S1期107-110,共4页
【目的】深入了解近年来黄河泥沙变化规律,保障引黄工程的安全运行。【方法】对2006—2015年黄河吴堡、龙门水文站洪水特征资料进行了分析研究,【结果】月最大含沙量大于10 kg/m^3时段集中在3月桃花汛和汛期(6—9月),汛期泥沙量远大于3... 【目的】深入了解近年来黄河泥沙变化规律,保障引黄工程的安全运行。【方法】对2006—2015年黄河吴堡、龙门水文站洪水特征资料进行了分析研究,【结果】月最大含沙量大于10 kg/m^3时段集中在3月桃花汛和汛期(6—9月),汛期泥沙量远大于3月水平,同期龙门站最大含沙量水平高于吴堡站;洪水过程径流总量与含沙量相关性并不显著;河龙区间上下游泥沙输移过程存在一定相关性,但龙门站较吴堡站更多呈现自然河道属性。【结论】黄河突发增沙原因不只局限于洪水激增,黄河调水调沙等人类活动对水流携沙突增影响不容忽视。不同水文站局部性暴雨所形成的短历时增沙现象的水文系列过程呈现随机性。 展开更多
关键词 灌溉 河龙区间 洪水特征 沙峰
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