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不同治理模式下黄河河口段冲淤演变的数值模拟

  

  • 出版日期:2018-04-25 发布日期:2018-04-25

Numerical simulations of Yellow River estuary evolution in different governance modes

  • Online:2018-04-25 Published:2018-04-25

摘要: 黄河河口为弱潮陆相河口,具有区间来水量少、来沙量高、河口延伸速度快的特征,进入河口的沙量对特定流路河口冲淤演变起主导作用。在前人研究基础上,认为预测河口段河长延伸值必须考虑陆上和滨海淤积量的共同影响,再基于1958年汛后—2000年汛后利津以下实测资料建立了河口段各部分累计淤积量与利津站累计来沙量的相关关系,利用准二维水沙数学模型对黄河下游及河口段进行耦合模拟,在年均来沙3亿t、6亿t和8亿t这3种设计水沙系列条件下, 计算了黄河下游小浪底—河口段现状治理模式和“两道防线”治理模式对黄河河口各部分累计冲淤量、西河口以下河长延伸值等特征量的影响。其结果表明:黄河河口段未来50年在现状治理模式和“两道防线”治理模式下均呈淤积趋势,在三种水沙条件下“两道防线”治理模式的河口段淤积量较之现状模式增淤量分别为2.10亿t、3.48亿t和4.20亿t;同时,“两道防线”治理方案中设置的防护堤对西河口以下河长有明显影响,与现状模式相比河长延伸值分别增加1.27 km、2.07 km、2.49 km。

Abstract: The Yellow River estuary refers to the section below Lijin, characterized by weak tides, less tributary water, high sediment load, and rapid floodplain extension, where sediment inflow plays a leading role in the evolution of its specific flow paths. Based on previous studies, this paper considers the joint effect of land and coastal deposits as a necessary factor in determination of the increase in river length, and develops a relationship of cumulative sediment deposition versus sediment transport at Lijin using the estuary filed measurements from 1958 to 2000. Coupled simulations of the river’s lower reaches and estuary section are carried out using a quasi two-dimensional flow and sediment transport numerical model, including calculations of the erosion and deposition of sediment and the river length of the estuary under three design flow-sediment conditions ? annual sediment inflows of 300, 600 and 800 million tons. And two river training modes, the current management mode and the “two defensive lines” mode, are compared. Results show that in either of these two modes, the estuary will take a cumulative deposition trend over the next 50 years. In the same flow and sediment conditions, more sediment will be deposited in the “two defensive lines” mode, by 2.10?108 t, 3.48?108 t and 4.20?108 t in the three design conditions respectively. And this mode will result in an extra river length increases of 1.27 km, 2.07 km and 2.49 km respectively.

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