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首页> 外文期刊>Hydrological sciences journal >Understanding flow dynamics and density currents in a river-reservoir system under upstream reservoir releases
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Understanding flow dynamics and density currents in a river-reservoir system under upstream reservoir releases

机译:了解上游水库释放下的河流水库系统中的水流动力学和密度流

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A three-dimensional flow and temperature model was applied for a 124km river-reservoir system from Lewis Smith Dam tailrace to Bankhead Lock & Dam, Alabama. The model was calibrated against measured water levels, temperatures, velocities and flow rates from 4 May to 3 September 2011 under small constant release (2.83m(3)/s) and large intermittent releases (similar to 140m(3)/s) from an upstream reservoir. Distributions of simulated flow and temperatures and particle tracking at various locations were analyzed which revealed the complex interactions of density currents, dynamic surface waves and solar heating. Flows in the surface and bottom layers moved in both upstream and downstream directions. If there was small constant release only from Smith Dam, simulated bottom temperatures at Cordova were on average 4.8 degrees C higher than temperatures under actual releases. The momentum generated from large releases pushed bottom density currents downstream, but the released water took several days to reach Cordova.
机译:从刘易斯·史密斯水坝尾水到阿拉巴马州班克德·洛克和大坝,在124公里的河流水库系统中应用了三维流动和温度模型。该模型针对从2011年5月4日至9月3日的小水量恒定释放(2.83m(3)/ s)和大水量间歇释放(类似于140m(3)/ s)下从2011年5月4日至9月3日测量的水位,温度,速度和流量进行了校准。上游水库。分析了模拟流动和温度的分布以及在不同位置的粒子跟踪,揭示了密度电流,动态表面波和太阳加热的复杂相互作用。表层和底层中的流向上游和下游方向移动。如果只有史密斯水坝有少量恒定释放,那么科尔多瓦的模拟底部温度平均比实际释放温度高4.8摄氏度。大量释放产生的动量将底部密度流推向下游,但释放的水花了几天才到达科尔多瓦。

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