首页> 外文期刊>Journal of Hydrology >3D hydrodynamic investigation of thermal regime in a large river-lake-floodplain system (Poyang Lake, China)
【24h】

3D hydrodynamic investigation of thermal regime in a large river-lake-floodplain system (Poyang Lake, China)

机译:大型河湖泛洪水系统中热制度的水动力调查(鄱阳湖,中国)

获取原文
获取原文并翻译 | 示例
           

摘要

Thermal regime and its response to meteorological and hydrological forcings play an important role in controlling water quality and ecosystem of lakes. Many large floodplain lakes are subjected to significant river-lake interactions and could benefit greatly from hydrodynamic modeling. The current work presents a first attempt to use a 3D hydrodynamic model and statistical methods to explore spatiotemporal variations and primary causal factors of thermal stability within a large river-lake-floodplain system (Poyang Lake, China). The hydrodynamic model successfully reproduced the lake hydrodynamics and thermal dynamics through a comparative analysis of field measurements. Simulation results revealed that the thermal stability of Poyang Lake exhibits similar spatial patterns between seasons; however, the lake is generally stratified during summer and early autumn. It is classified as partial mixed and full mixed during winter and spring. The thermal stratification may develop in the center area and eastern bay area of the lake, while the full mixing is likely to occur in the floodplains and the main flow channels. Statistics and simulations indicate that the air temperature, solar radiation and evaporation trigger a positive effect on the thermal stability of Poyang Lake, whereas a negative relationship is recognized due to the catchment river temperature. The responses of thermal stability to the meteorological and hydrological changes are much stronger in summer than other seasons, producing a significant seasonal thermal regime in the floodplain lake. Additionally, the dynamics in the lake water depth and associated hydrological regime are a major factor in maintaining the seasonal thermal stability of Poyang Lake. The findings of this study can support management of Poyang Lake as well as other similar floodplain lakes, by providing information on both water quality and ecosystem succession.
机译:热状况及其对气象和水文强迫响应在控制湖泊水质和生态系统具有重要作用。许多大型湖泊河滩受到显著江湖的相互作用,可以从水动力模型大大受益。当前的工作提出使用3D水动力模型和统计方法,以一个大江湖,漫滩系统(鄱阳湖,中国)中探索时空变化和热稳定性的主要偶然因素第一次尝试。流体动力学模型通过场测量的比较分析成功地再现湖泊流体力学和热动力学。仿真结果表明,鄱阳湖的热稳定性表现出季节之间相似的空间图案;然而,湖水一般夏季和初秋分层。冬季和春季期间,它被列为分混合并充分混合。热分层可以在中央区域和湖泊的东部海湾区域发展,同时充分搅拌很可能在洪泛区和主流动通道发生。统计和模拟表明,空气温度,太阳辐射和蒸发触发鄱阳湖的热稳定性有积极的作用,而负关系由于集水河流温度识别。热稳定性的气象和水文变化的响应是夏天比其他季节要强得多,生产在河滩湖显著季节性热状态。此外,在湖中水深及相关水文动力学是维护鄱阳湖季节热稳定性的主要因素。这项研究的结果可以支持鄱阳湖的管理,以及其他类似的洪泛平原湖泊,通过对水质和生态系统演替提供信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号