基于格子Boltzmann方法的航道整治建筑物影响下过饱和总溶解气体输移释放规律*
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国家自然科学基金项目(52109150);重庆市自然科学基金项目(cstc2020jcyj-msxmX0965);水利水运工程教育部重点实验室开放基金项目(SLK2021B11);重庆交通大学河海学院研究生科研创新基金项目(YC2021014)


Transport and release law of supersaturated total dissolved gas under influence of waterway regulation structures based on Lattice Boltzmann Method
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    摘要:

    基于双分布函数-浅水Lattice Boltzmann方法,建立了过饱和总溶解气体(TDG)输移模型,研究某电站下游航道整治建筑物对河道内TDG输移规律的影响。结果显示,整治建筑物的修建对主流区流态和TDG变化影响较小;航道整治建筑物对河道过饱和TDG时空分布的影响主要表征于整治建筑物局部区域范围内,整治建筑物坝田回流区流速降低,水体传质减弱,从而导致TDG浓度降低且低浓度区域面积增加,可以为鱼类提供一定避难空间。该研究为水体中TDG输移扩散的研究提供了一种新的方法,同时为改善电站泄水导致TDG过饱和对鱼类的不良影响和建设生态水道提供科学依据。

    Abstract:

    Based on the double distribution function shallow water Lattice Boltzmann Method,a transport model of supersaturated total dissolved gas (TDG) is established to study the influence of downstream channel regulation structures of a power station on the transport law of TDG in the river channel.The results show that the construction of regulation structures has little influence on the changes of flow pattern and TDG in the mainstream area.The influence of waterway regulation structures on the temporal and spatial distribution of supersaturated TDG is mainly characterized in the local area near the regulation structures.The flow velocity in the back-flow area of the dam field is reduced,and the mass transfer of the water body is weakened,resulting in the decrease of TDG concentration and the increase of the area of the low concentration area,which can provide a certain refuge space for fish.This study provides a new method for the study of TDG transport and diffusion in water bodies,and provides a scientific basis for improving the adverse effects of TDG supersaturation on fish caused by power station discharge and building ecological waterways.

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赵 旭,张春泽,马 倩,等.基于格子Boltzmann方法的航道整治建筑物影响下过饱和总溶解气体输移释放规律*[J].水运工程,2023(3):114-120.

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  • 在线发布日期: 2023-03-14
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