长江流域资源与环境 >> 2018, Vol. 27 >> Issue (06): 1298-.doi: 10.11870/cjlyzyyhj201806013

• 生态环境 • 上一篇    下一篇

鄱阳湖主湖区与碟形湖水位变化及其对水质的影响

李海辉   

  1. (江西省鄱阳湖水利枢纽建设办公室,江西 南昌330009)
  • 出版日期:2018-06-20

Changes of Water Level in Main Lake Area of Poyang Lake and in Dish-shaped Sub-lake and Their Impacts on Water Quality

LI Hai-hui   


  1. (Jiangxi Province Water Conservancy Construction Office of Poyang Lake, Nanchang 330009,China)
  • Online:2018-06-20

摘要:  水位作为鄱阳湖重要的水文因子,对鄱阳湖水动力过程和水质变化具有重要影响。根据2014~2015年鄱阳湖主湖区和碟形湖水位、水质监测数据,分析了主湖区和碟形湖水位及主要水质指标的年内变化特征,阐述了主湖区和碟形湖水质对水位的响应特征。结果表明:(1)丰水期碟形湖与主湖区联通,碟形湖水位与主湖区水位呈直线型相关,枯水期碟形湖水位高于主湖区,主湖区年内月平均水位变异系数为0.13,而碟形湖年内月平均水位变异系数为0.08;(2)丰水期,主湖区和碟形湖的氮磷比分别为19.29和46.27,枯水期主湖区和碟形湖水体的氮磷比分别为17.88和40.39;(3)鄱阳湖主湖区水质主要指标与水位的相关性显著强于碟形湖,主湖区总氮、氨氮、总磷和溶解氧均与水位呈负相关性,而碟形湖中只有pH与水位有相关性;(4)枯水季节,碟形湖水体具有较高的总氮,而鄱阳湖主湖区则具有较高的总磷和氨氮。总之,枯水期进行合理的水位调控能够有效降低富营养化风险。
关键词: 水位;水质;碟形湖;鄱阳湖

Abstract: Water level, as a key hydrological factor of Poyang Lake, plays a crucial role in determining the hydro-dynamic process and water quality changes of the lake. Based on the monitoring data on water level and water quality of the main lake area of Poyang Lake and the dish-shaped sub-lake from 2014 to 2015, we examined the characteristics about the changes of the water level and major parameters of water quality within the year, and defined the characteristics about the response of water quality to water level. The results showed that: 1) during the wet season, the sub-lake is connected with the main lake area, and there is a linear correlation between water level of the sub-lake and that of the main lake area. During the dry season, the water level of the sub-lake is higher than that of the main lake area, the coefficient of variation for average monthly water level within the year in the main lake area was calculated to be 0.13, while that in the sub-lake was 0.08. 2) During the wet season, the N/P ratio in the main lake area and the sub-lake was recorded to be 19.29 and 46.27 respectively, while the figure was 17.88 and 40.39 respectively during the dry season. 3) The correlation between major water quality parameters and water level in the main lake area is significantly stronger than that in the sub-lake. The TN, NH3-N, TP and DO are found to be negatively correlated with water level in the main lake area, while there is only a correlation between pH and water level in the sub-lake. 4) During the dry season, the content of TN is high in the sub-lake, while that of TP and NH3-N is high in the main lake area. Overall, these results imply that optimizing water level management during the dry season can help effectively reduce the risk of eutrophication of Poyang Lake.
Key words:water level; water quality; dish-shaped lake; Poyang Lake

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