• The relationship between the turbidity maximum and the river mouth bar is discussed.

    据此讨论了最大浑浊拦门沙关系

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  • Phenomenon of estuarine turbidity maximum zone is modeled by 2-dimensional numerical model.

    利用平面二维数值模型模拟河口最大浑浊带现象

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  • The results suggest that non steady current and boundary conditions are important to producing the estuarine turbidity maximum zone.

    结果表明河口地形边界恒定潮流作用对河口最大浑浊的悬沙富集重要贡献。

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  • The sediment concentrations of turbidity maximum zone tends to be higher, but the sediment concentration at sand bar tends to be lower.

    最大浑浊中心处泥沙浓度趋于增大,口门拦门沙处泥沙浓度趋于减小。

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  • The variation of the river mouth shape has obvious impact on the estuarine circulation, the salinity intrusion and the turbidity maximum zone.

    河口形状河口环流盐水入侵最大浑浊影响明显

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  • Computation shows that the "tidal pumping" effect has a significant role in the suspended sediment transport within the turbidity maximum of the Changjiang Estuary.

    计算表明效应长江河口最大浑浊带沙输移重要的作用

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  • The suspended sediment concentration at the center of the turbidity maximum zone and near the sand bar tends to increase because of the sediment addition from upstream.

    上游增加最大浑浊中心河口拦门沙处悬浮泥沙浓度趋于增加。

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  • Using the improved ECOM model and coupling the sediment transport equation, the impacts of change of river discharge and sea level on estuarine turbidity maximum zone are studied.

    应用改进ECOM模式耦合泥沙输方程研究径流量海平面变化河口最大浑浊影响

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  • Results suggest that the dominant dynamic processes responsible for the formation of the turbidity maximum are tidal asymmetry and gravitational circulation at the mouth of the North Passage.

    研究结果表明槽口内,最大浑浊形成主要动力过程潮汐不对称性河口重力环流

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  • Using the improved ECOM model and coupling the sediment transport model, the dynamic mechanism of estuarine maximum turbidity zone in an idealized estuary is studied in this paper.

    应用改进ECOM模式耦合泥沙输模型研究理想河口最大浑浊形成的动力机制

    youdao

  • Using the improved ECOM model and coupling the sediment transport model, the dynamic mechanism of estuarine maximum turbidity zone in an idealized estuary is studied in this paper.

    应用改进ECOM模式耦合泥沙输模型研究理想河口最大浑浊形成的动力机制

    youdao

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