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首页> 外文期刊>Water Resources Management >Critical Environmental Flows to Support Integrated Ecological Objectives for the Yellow River Estuary, China
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Critical Environmental Flows to Support Integrated Ecological Objectives for the Yellow River Estuary, China

机译:支持中国黄河口综合生态目标的关键环境流量

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The volume of inflowing water needed to meet multiple demands in the Yellow River Estuary of China was examined and quantified. Pressure on available environmental flows comes from varied ecological objectives, including maintenance of freshwater habitat for hundreds of plant and animal species, salinity balance, sediment transport and general equilibrium of the hydrologic cycle. Temporal fluctuations of flow input and output were considered and the amount of water needed for both consumptive and non-consumptive uses was evaluated. The rule of summation was used to calculate consumptive water requirements and the rule of compatibility (i.e., maximum principle) was adapted to estimate the non-consumptive ones. It was determined that the minimum, medium and high levels of annual environmental flows are 134.22×10~8, 162.73×10~8 and 274.9×10~8 m~3, respectively, in the Yellow River Estuary, which represent 23.7, 28.7 and 48.5% of the natural river discharge. Water requirements differ across months. The months of May through June, August and October were identified as the most critical periods for maintaining the environmental flows. The basic purpose of water entering the system is to compensate for water losses due to evaporation and to maintain an acceptable level of salinity in the estuary. Sediment transport into and through the estuary area are likely to be directly impacted by variations in river discharge. Improved efficiency in the sediment transport regime of the Yellow River could potentially reduce environmental flow requirements of the estuary, thus freeing water resources for other beneficial uses.
机译:对黄河口满足多种需求的入水量进行了检查和量化。可利用的环境流量受到来自各种生态目标的压力,包括维护数百种动植物物种的淡水生境,盐分平衡,沉积物迁移和水文循环的总体平衡。考虑了流量输入和输出的时间波动,并评估了消费性和非消费性用水的需求量。使用求和规则来计算消耗水量,并使用相容性规则(即最大原理)来估算非消耗水量。经确定,黄河口的年最低,最高和最高年流量分别为134.22×10〜8、162.73×10〜8和274.9×10〜8 m〜3,分别为23.7、28.7。天然河流量的48.5%。不同月份的水需求量不同。五月至六月,八月和十月被确定为维持环境流量的最关键时期。进入系统的水的基本目的是补偿由于蒸发造成的水损失,并保持河口盐度在可接受的水平。进出河口区域的泥沙运输可能直接受到河流流量变化的影响。黄河泥沙输送机制效率的提高可能会降低河口的环境流量需求,从而将水资源释放给其他有益用途。

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