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首页> 外文期刊>Journal of Hydrology >An integrated model coupling open-channel flow, turbidity current and flow exchanges between main river and tributaries in Xiaolangdi Reservoir, China
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An integrated model coupling open-channel flow, turbidity current and flow exchanges between main river and tributaries in Xiaolangdi Reservoir, China

机译:小浪底水库主河与支流明渠水流,浊流及流量交换的耦合模型

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摘要

The ever growing importance of sustainable management of reservoir sedimentation has promoted the development and applications of turbidity current models. However, there are few effective and practical models in literature for turbidity currents in a reservoir where the impounded area involves both the main river and its many tributaries. An integrated numerical model coupling open-channel flow, turbidity current and flow exchanges between main river and tributaries is proposed, which can simulate the complex flow and sediment transport in a reservoir where these three physical processes coexist. The model consists of two sets of governing equations for the open-channel flow and turbidity current, which are based on the modified St. Venant equations by taking into account the effect of lateral flow exchanges. These two sets of equations are solved in the finite volume method framework and the solutions are executed in an alternating calculation mode. Different methods are respectively proposed to calculate the discharge of flow exchange caused by free surface gradient and turbidity current intrusion. For the surface-gradient driven flow exchange, a storage cell method, which re-defines the relationship between water level and representative cross-sectional area, is used to update the water level at confluence. For the turbidity current intrusion, a discharge formula is proposed based on the analysis of the energy and momentum transformation in the intruding turbid water body. This formula differs from previous ones in that the effect of tributary bed slope is considered. Two events of water-sediment regulation conducted in the Xiaolangdi Reservoir in 2004 and 2006 were simulated to test the ability of this model. The predicted reservoir drawdown process, the turbidity current evolution and the sediment venting efficiency were in close agreement with the measurements. The necessity to couple the flow exchanges was demonstrated by comparing the performance of the proposed model with different intrusion discharge formulas and the common one-dimensional model neglecting the main river and tributary interaction. (C) 2016 Elsevier B.V. All rights reserved.
机译:可持续管理储层泥沙的重要性日益提高,促进了浊度模型的开发和应用。然而,在文献中很少有有效和实用的模型来模拟水库中的水流,其中蓄水区既涉及主要河流,也涉及许多支流。提出了一个综合数值模型,该模型耦合了主要河流和支流之间的明渠水流,浊流和水流交换,可以模拟这三个物理过程共存的水库中复杂的水流和泥沙输送。该模型由两套用于明渠流和浊流的控制方程式组成,这两个方程式是基于修正的St. Venant方程式,并考虑了侧向流动交换的影响。这两套方程在有限体积方法框架中求解,并且解决方案以交替计算方式执行。分别提出了不同的方法来计算自由表面梯度和浑浊电流侵入引起的换流流量。对于表面梯度驱动的流量交换,使用存储单元方法来重新定义水位与代表截面积之间的关系,以更新汇合处的水位。针对浑浊水流的入侵,在分析浑浊水体能量和动量变换的基础上,提出了一种排放公式。该公式与以前的公式不同之处在于考虑了支流床斜率的影响。模拟了2004年和2006年在小浪底水库进行的两次水沙调节事件,以检验该模型的能力。预测的储层回灌过程,浊流演变和沉积物排放效率与测量结果非常吻合。通过比较所提出的模型与不同的入侵排放公式的性能以及忽略主要河流和支流相互作用的通用一维模型的性能,证明了耦合流动交换的必要性。 (C)2016 Elsevier B.V.保留所有权利。

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