文章摘要
蒋定国,戴会超,王冰伟,刘伟.香溪河库湾春季营养盐空间差异性成因分析[J].水利学报,2013,44(5):
香溪河库湾春季营养盐空间差异性成因分析
Causing analysis on nutrients spatial difference in Xiangxi Bay of the Three Gorges Reservoir
  
DOI:
中文关键词: 香溪河库湾  水动力场  营养盐  空间分布
英文关键词: Xiangxi Bay  flow field  nutrients  spatial distribution
基金项目:
作者单位
蒋定国 三峡大学水利与环境学院湖北宜昌443002 
戴会超 1. 三峡大学水利与环境学院湖北宜昌443002 2. 河海大学水利水电学院江苏南京210098 
王冰伟 中国水利水电科学研究院北京100038 
刘伟 三峡大学水利与环境学院湖北宜昌443002 
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中文摘要:
      三峡蓄水后,香溪河库湾春季水体中营养盐分布呈明显的空间差异性,具体表现为总氮含量大致呈从上游到河口逐步升高的趋势,而总磷含量呈从上游到河口逐步降低趋势。为明确库湾水动力条件对库湾营养盐空间分布的影响,本文采用三维数学模型模拟了三峡蓄水后香溪河水动力场的分布,利用示踪方法分析了三峡蓄水初期香溪河库湾水动力场对春季营养盐时空分布的影响。结果表明,春季库湾近河口区域水体表现出明显的分层分向流动特征,长江干流水体与库湾水体间的交换作用显著,相应磷营养盐也随水流带出库湾,干流水体对香溪河库湾磷营养盐有明显的稀释作用,特殊的水动力条件是库湾营养盐空间分布差异性主要成因。研究可为三峡水库正常调度运行后香溪河库湾富营养化的控制和治理提供方法,也可为相似库湾营养盐的分布特征研究提供参考。
英文摘要:
      Significant spatial variation is observed on the distribution of nutrients in the Xiangxi River in spring after impounding of the Three Gorges Reservoir. Evidences show that the total phosphorus is decreasing gradually from the upstream to the estuary, while the total nitrogen is increasing. To clarify the effects of the hydrodynamic conditions on spatial distribution of nutrient in the Xiangxi River, a 3D numerical model is constructed to simulate the flow field of Xiangxi River after impounding of the Three Gorges Reservoir. Then a tracer method is introduced to analyze the hydrodynamic effects on the spatial and temporal distributions of nutrient in the Xiangxi River. The numerical results show that, in the spring, an obvious stratified flow field is found in the estuarine area. And strong/significant water exchanging is detected between the mainstream of the Yangtze River and the bay, and with the exchanging of water the phosphorus is transported out of the bay and is further diluted by the main stream of the Yangtze River. From the results, it can be concluded that the hydrodynamic conditions in the flow field of the estuarine area are the main cause of the spatial distribution of phosphorus in the Xiangxi Bay. This study provides a way to control and govern the eutrophication in the Xiangxi River for the normally scheduled operation period of the Three Gorges Reservoir, and also provides a reference for the research on the distribution of nutrients in bays similar to the Xiangxi River.
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