基于调和分析的感潮河段水位流量关系研究

    Research on water level-discharge relationship in tidal river reaches based on harmonic analysis

    • 摘要: 水位流量关系在河流水文信息获取和水动力环境研究中具有重要意义。感潮河段水文站通常仅观测潮(水)位数据,需要通过水位流量关系推算实时流量。以潭江石咀站为例,采用潮位调和分析方法,探究其潮位变化规律及分潮贡献,提取去除径流影响的潮位数据和去除潮汐影响的河流水位数据;基于HEC-RAS一维水动力模型,模拟不同水位情景下的流量变化过程,并通过多元回归分析研究水位流量关系。结果表明:石咀站的水位流量关系受潮汐流和河流径流共同作用,潮汐流主导实时流量变化,表现为绳套型非稳定非单值关系,而河流径流则表现为稳定非单值关系。研究成果可应用于缺乏实测流量资料的感潮河段水位流量关系分析,为其水文计算预报、水动力环境研究等提供支持。

       

      Abstract: The water level-discharge relationship is crucial for obtaining hydrological information and studying the hydrodynamic environment of river systems.In tidal river reaches, hydrological stations typically observe only tidal level data, requiring real-time discharge to be estimated through the water level-discharge relationship.Using Shizui Station on the Tanjiang River as a case study, this study applies tidal harmonic analysis to investigate tidal variation patterns and the contributions of constituent tides.Tidal level data (excluding runoff influence) and river water levels (excluding tidal effects) are extracted.Based on the HEC-RAS one-dimensional hydrodynamic model, flow variations under different water level scenarios are simulated, and multiple regression analysis is conducted to examine the water level-discharge relationship.The results indicate that the water level-discharge relationship at Shizui Station is jointly influenced by tidal flow and river runoff.Tidal flow dominates real-time discharge variations, exhibiting an unstable, non-unique hysteresis loop pattern, whereas river runoff demonstrates a stable but non-unique relationship.These findings can aid in analyzing water level-discharge relationships in tidal river reaches lacking measured discharge data, supporting hydrological forecasting and hydrodynamic environment studies.

       

    /

    返回文章
    返回