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Utilize hydraulic characteristics in ecological landscape river planning—A case study on Beijing Tanglewood Music Valley

机译:水力特征在生态景观河流规划中的运用-以北京坦格伍德音乐谷为例

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For the general question of how to maintain self-purification when reclaimed water is used in ecological river planning, the authors took a case study on the design of the water cycle system in Beijing Tanglewood Music Valley where hydraulic characteristics were properly utilized to optimize the physical purification process in the landscape river and reservoir. Specifically, the authors analyzed the mechanism of increasing dissolved oxygen driven by spiral flows in river bends, proposed the relationship between geometric properties of river cross-section and the velocity and depth of river flow, and also suggested that an improved photosynthetic layer distribution, along with a better landscape view, could be reached by appropriately raising the bottom of the reservoir. In the details of water circulation design, the authors recommended an optimized layout for relative positions of water intake and backwater zone, which would force convection between upper and lower water layers to overcome the thermal resistance. This study could serve as a reference for future planning of water cycle system in ecological landscape project.
机译:对于在生态河流规划中使用再生水时如何保持自我净化的一般问题,作者以北京坦格伍德音乐谷的水循环系统设计为例,在该系统中,水力特性得到了适当的利用,从而优化了水质。景观河流和水库的净化过程。具体来说,作者分析了河弯处螺旋流驱动的溶解氧增加的机理,提出了河道横截面的几何特性与河道流速和深度之间的关系,并提出了改善的光合层分布的方法。可以通过适当升高水库底部达到更好的景观。在水循环设计的细节中,作者建议对进水口和回水区的相对位置进行优化布局,这将迫使上,下水层之间的对流以克服热阻。该研究可为生态景观工程中水循环系统的未来规划提供参考。

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