人民长江 ›› 2022, Vol. 53 ›› Issue (6): 1-13.doi: 10.16232/j.cnki.1001-4179.2022.06.001

• • 上一篇    下一篇

湄公河-洞里萨湖河湖关系与水文情势驱动响应研究——关键科学问题与技术实现路径

李昌文;黄艳   

  • 发布日期:2022-08-09

Study on river-lake relationship between Mekong River and Tonle Sap Lake and hydrological regime-driven response mechanism: key scientific issues and technical realization paths

LI Changwen1,2,3, HUANG Yan4   

  • Published:2022-08-09

摘要: 湄公河与洞里萨湖河湖关系是世界上著名江湖关系的典型代表,同时受上游来流、下游潮汐、区域风浪、洪泛区调蓄等影响,水情叠加互馈效应(遭遇、倒灌、补水、漫滩、顶托、调蓄)巨大,水文过程集成度高。从河湖水文情势变化规律、河湖耦合水文水动力学模型、河湖水量交换关系及水情驱动机制3个方面阐述了湄公河-洞里萨湖河湖关系与水文情势驱动响应机理研究进展,并研究了其关键科学问题与技术实现路径。结果表明:(1)湄公河与洞里萨湖水文-水动力作用机理复杂且尚不明晰,成为制约湄公河和洞里萨湖综合治理的瓶颈问题;(2)未来亟需加强研究的重点方向主要包括构建湄公河与洞里萨湖大型连通水网水文-水动力耦合模型,精细模拟河湖水情组合叠加效应的时空量演变特征,定量揭示洞里萨湖河湖互相转换特性,理清河湖交互规律的宏微观格局,定量评估径流、潮汐、风浪遭遇组合对河湖水量交换的影响量,阐明河湖水情-水动力条件-水通量交互-湖区水文节律的驱动机制和耦合协变响应规律,以及创建河湖水量交换关系内涵变化量与洞里萨湖全区域全过程水文情势变化量的定量关系知识图谱。研究成果对丰富江湖关系内涵、指导柬埔寨洪旱灾害应对、提高水文预报精度、确保河湖健康具有极其重要的科学理论意义和实践应用价值。

关键词: 河湖关系;河湖水量交换;驱动-响应机理;河湖耦合水文-水动力学模型;定量知识图谱;洞里萨湖;湄公河;

Abstract: The relation between Mekong River and Tonle Sap Lake is a representative of the world ’s famous river-lake relationships. It is affected by upstream flows, downstream tides, regional wind and waves, and flood regulation and storage. The superposition and mutual effect of water regime (encounter, reverse flow, flow supplement, overbank flow, backwater and storage) are huge with highly integrated hydrological processes. This paper expounds the research progress of the river-lake relationship between Mekong River and Tonle Sap Lake and the hydrological regime-driven response mechanism from three aspects: the changing law of the hydrological regime of the river and lake, the coupled hydrological and hydrodynamic model of the river and lake, the water exchange relationship between the river and the lake, and the hydrological regime-driven response mechanism. And this paper analyzes key scientific issues and technical realization paths. The results show that the hydrological-hydrodynamic mechanism of the Mekong River and the Tonle Sap Lake is very complex but unclear, which has become a bottleneck problem restricting the comprehensive management of the river and lake. The key research directions that need to be strengthened in the future mainly include: establishing a hydrology-hydrodynamic coupling model of the large-scale connected water network between Mekong River and the Tonle Sap Lake; finely simulating spatial-temporal-amount evolution characteristics of the superposition and combination effect of river and lake; quantitatively revealing the fluvial phase and lacustrine phase transition characteristics of Tonle Sap Lake; clarifying the macro and micro patterns of the interaction law between Mekong River and Tonle Sap Lake; quantitatively assessing the encountering impact of runoff, tide, wind and wave on river-lake water exchange; clarifying the driving mechanism and coupling covariant response law of river-lake water regime-hydrodynamic conditions-water flux interaction-hydrological rhythm in the lake area; creating a knowledge map of quantitative relationship between the connotation change of river-lake water exchange relationship and the process change of hydrological regime in the whole Tonle Sap Lake. The research results show important scientific theoretical significance and practical application value for enriching the connotation of river-lake relationship, guiding the response to flood and drought disasters in Cambodia, improving the accuracy of hydrological forecast, and ensuring the health of river and lake.

Key words: river-lake relationship; river-lake water exchange; drive-response mechanism; river-lake coupling hydrological-hydrodynamic model; quantitative knowledge map; Tonle Sap Lake; Mekong River