黄河内蒙古河段冲淤演变及其影响因素(英文)

被引:14
作者
秦毅 [1 ]
张晓芳 [2 ]
王凤龙 [3 ]
颜恒 [1 ]
韩海军 [1 ]
机构
[1] Key Laboratory of North-West Water Resources and Ecology Environment of Ministry of Education, Xi'an University of Technology
[2] Zhoushan Water Conservancy Survey and Design Institute
[3] Harbin Water Conservancy Plan and Design
关键词
Inner Mongolian Reach of the Yellow River; erosion-deposition area indicator; evolution; equilibrium;
D O I
暂无
中图分类号
TV147 [河道演变];
学科分类号
摘要
Rivers with fluvial equilibrium are characterized by bed deformation adjustment. The erosion-deposition area in cross-section reflects this characteristic, which is a base of researching the river scour and deposition evolution by time series analysis. With an erosion-deposition area indicator method proposed in this paper, the time series of erosion-deposition area quantity at Bygl and Shhk stations were obtained with the series duration of 31 years from 1976 to 2006. After analysis of its trend and mutation, three different ten- dencies about the evolution were observed in general from the quasi-equilibrium phase through a rapid shrinkage to the final new quasi-equilibrium. It is also found that the trend of erosion-deposition area series will change once a big flood occurred in some of the tributaries, and its ever greater influence is due to the decrease of deluge with the completion of upstream reservoirs. Almost all the turning points were coincident with the time when hyper-concentrated sediment flood occurred in some tributaries. With the time series of clear mutations since the late 1990s, the Inner Mongolian Reach has been in a new equilibrium phase. This can be concluded in two aspects. 1. The absence of big floods and sediment transportation from tributaries result in the river shrinkage, and to regain the channel flow-carrying capacity in Inner Mongolian Reach a large flood is needed both of high peak discharge and of lengthy interval to destroy the new equilibrium. 2. The proposed method of erosion-deposition area indicator is of great help to channel scoureposition evolution analysis because it can demonstrate real time deformation of cross section in quantity.
引用
收藏
页码:1037 / 1046
页数:10
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[1]   黄河内蒙古河段河床演变特征分析 [J].
侯素珍 ;
常温花 ;
王平 ;
田勇 ;
伊晓燕 .
泥沙研究, 2010, (03) :44-50
[2]   黄河内蒙古头道拐断面河道变化及其对上游水库的响应(英文) [J].
冉立山 ;
王随继 ;
范小黎 .
Journal of Geographical Sciences, 2010, 20 (02) :231-247
[3]   内蒙古河段淤积再探讨 [J].
王凤龙 ;
秦毅 ;
张晓芳 ;
韩海军 ;
颜恒 .
水资源与水工程学报, 2010, 21 (01) :148-150
[4]   黄河内蒙古河段主槽萎缩原因和对策 [J].
刘晓燕 ;
侯素珍 ;
常温花 .
水利学报, 2009, (09) :1048-1054
[5]   水文时间序列突变点分析的启发式分割方法 [J].
汪丽娜 ;
陈晓宏 ;
李粤安 ;
林凯荣 .
人民长江 , 2009, (09) :15-17+106
[6]   黄河内蒙古段防凌对策研究 [J].
冯国华 ;
朝伦巴根 ;
高瑞忠 ;
闫新光 .
水文, 2009, 29 (01) :47-49
[7]   大型水库运行下内蒙古河道泥沙侵蚀淤积过程 [J].
王海兵 ;
贾晓鹏 .
中国沙漠, 2009, 29 (01) :189-192
[8]   凌期气温变化对河段封开河的影响分析 [J].
方立 ;
冯相明 .
水电能源科学, 2007, (06) :4-6
[9]   黄河宁蒙河段凌情特性研究 [J].
姚惠明 ;
秦福兴 ;
沈国昌 ;
董雪娜 .
水科学进展, 2007, (06) :893-899
[10]   河床演变的均衡稳定理论及其在黄河下游的应用 [J].
陈绪坚 ;
胡春宏 .
泥沙研究, 2006, (03) :14-22