首页> 外文会议>2011 International Symposium on Water Resource and Environmental Protection >Influence factors on hydrodynamics field in Xiangxi Bay of Three Gorges Reservoir, China
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Influence factors on hydrodynamics field in Xiangxi Bay of Three Gorges Reservoir, China

机译:三峡水库湘西湾水动力场的影响因素

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Hydrodynamic play an important role in eutrophication and algae bloom in Xiangxi Bay (XXB), which was the former Xiangxi River prior to the construction of the Three Gorges Reservoir (TGR). Field surveys show that the dominant species of rotifers in XXB changed considerably at the onset of the reservoir impoundment. Because of the change of hydrodynamic in XXB, a phytoplankton bloom was observed during the spring after TGR was impounded. Hydrodynamic distribution become very important in the phytoplankton bloom study and control in XXB. As it is difficult to obtain sufficient hydrodynamic information by field monitoring, a three-dimensional hydrodynamic model is developed in this paper to study the hydrodynamics distribution of XXB during spring. The study shows that water level of Three Gorges Dam(TGD) is the key factor to hydrodynamic distribution in XXB. The current situation of XXB only slight influence the upstream of XXB. The change of water level at TGD has little impact on the whole bay. Specifically, the influence of thermal density currents play an important role of the hydrodynamic distribution in XXB mouth. The study of influence factors on hydrodynamics field will help to clearly understand of algae bloom phenomenon in XXB, and also could provide technical support to the control of eutrophication and algae bloom in XXB and other bays of TGR.
机译:流体动力学在湘西湾(XXB)中的富营养化和藻类盛开中发挥着重要作用,在建造三峡库区(TGR)之前是前湘西。现场调查表明,XXB中的旋转器的主导物种在储层蓄水中的发生时变化了很大的变化。由于XXB中的流体动力学的变化,在TGR被扣除后,在春天期间观察到浮游植物绽放。流体动力学分布在浮游植物盛开的XXB中的绽放研究和控制中变得非常重要。由于难以通过现场监测获得足够的流体动力学信息,因此在本文中开发了三维流体动力学模型,以研究XXB在弹簧期间的流体动力学分布。该研究表明,三峡坝(TGD)的水位是XXB中流体动力分布的关键因素。 XXB目前的情况仅略微影响XXB的上游。 TGD水位的变化对整个海湾影响不大。具体地,热密度电流的影响在XXB嘴中发挥了流体动力分布的重要作用。对流体动力学领域的影响因素的研究将有助于清楚地了解XXB中的藻类绽放现象,也可以为XXB和TGR的其他海湾的富营养化和藻类进行控制提供技术支持。

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