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Research on Hydrodynamics with Water Temperature Characteristics and Spring Algal Blooms in a Typical Tributary Bay of Three Gorges Reservoir

机译:三峡库典型支流湾水温特性及春季藻类盛开的研究

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摘要

After the impoundment of the Three Gorges Reservoir (TGR) in China, water environment problems induced by water temperature stratification in the Xiangxi Bay (XXB, a typical tributary bay of TGR) received wide attention. In this study, a 3-dimensional (3D) hydrodynamic and water temperature coupled model with the z-coordinate in the vertical direction was established with Delft3D software to simulate the continuous hydrodynamic and water temperature process of XXB in 2009, and the static stability and mixing depth were also analyzed. The results show that the upstream inflow is prevented from entering TGR with nutrients enriching and mixing in the upper and middle reach of XXB from winter to early spring, which is the primary cause of spring algal blooms in XXB. Therefore, measures such as improving the upstream hydrodynamic conditions and forcing the nutrients to flow into TGR in winter should be more effective in alleviating spring algal blooms than the artificial tide operation of TGR proposed by previous studies.
机译:在中国三峡库(TGR)蓄积之后,湘西湾水温分层诱导的水环境问题(XXB,TGR典型的TGR典型的TGR)受到广泛的关注。在这项研究中,3维(3D)的流体动力学和水温耦合模型与Delft3D软件建立了在垂直方向的z坐标,以模拟XXB的连续流体动力学和水温过程在2009年,和静态稳定性和还分析了混合深度。结果表明,防止上游流入进入TGR,从冬季到XXB的XXB的上部和中部到期源于繁殖和混合,这是XXB春季藻类盛开的主要原因。因此,诸如提高上游流体动力学条件和迫使营养物在冬季流入TGR的措施应该更有效地缓解春季藻类绽放,而不是先前研究提出的TGR的人工潮流。

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