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Morphological Characteristics of Cambodia Mekong Delta and Tonle Sap Lake and Its Response to River-Lake Water Exchange Pattern

机译:柬埔寨Mekong Delta和Tonle Sap Lake的形态特征及其对河湖水交换模式的反应

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Tonle Sap Lake is the largest river-connected lake, buffer area and ecological zone of Mekong River, which plays a huge role in dispelling flood peak and compensating water, and the conservation of biological diversity. The river-lake relationship between Mekong River and Tonle Sap Lake is unique and has always been a major focus in the international community. The land terrain and under-water topography were used to analyze the morphological characteristics of Cambodia Mekong Delta and Tonle Sap Lake. Long series of hydrological data of river-lake controlling stations were used to analyze the water level variation characteristics and water volume exchange pattern between Mekong River and Tonle Sap Lake, and the response relationship to river-lake morphological characteristics were also researched. The results show that: Cambodia Mekong Delta and Tonle Sap Lake Area is low-lying and flat with gentle channel gradient and water surface gradient, making the relationship between water level and area (or volume) smooth. The channel storage capacity of Mekong River and Tonle Sap River is not enough compared to the inflow, so vast flooding plain is extremely prone to be inundated, making the flood relationships between the left and right banks become very complicated. Tonle Sap Lake is a seasonal freshwater lake with water flowing in and flowing out, and the timing and intensity of water exchange with Mekong River are closely related to the water flow resistance at the exit section of Tonle Sap Lake and the cross-sectional area of Tonle Sap River, which can be reflected by the river-lake water level difference and the water level of Tonle Sap River. Affected by the river-lake morphological characteristics, the water exchange intensity between Mekong River and Tonle Sap Lake is great. Tonle Sap Lake not only stores 14.4% of flood volume (39.7 billion m~(3)) from the Mekong River every year, but also supplies 29.7% of dry water (69.4 billion m~(3)) to the Mekong River. Influenced by the adjustment of the floodplain, the water level fluctuation of Mekong River and Tonle Sap Lake is slow, and the rising and droop rates of water level are positively correlated with the floodplain storage area. The research results will help to understand the relationship mechanism between Mekong River and Tonle Sap Lake and provide a scientific basis for the comprehensive governance of Cambodia Mekong Delta and Tonle Sap Lake Area.
机译:Tonle Sap Lake是湄公河最大的河流,缓冲区和生态区,在消除洪水峰和补偿水中起着巨大作用,以及生物多样性的保护。湄公河与唐山湖之间的河湖关系是独一无二的,一直是国际社会的重大关注。土地地形和水下地形用于分析柬埔寨Mekong Delta和Tonle Sap湖的形态特征。河湖控制站的长系列水文数据用于分析湄公河和凉席SAP湖泊之间的水位变化特性和水量交换模式,以及河湖形态特征的反应关系。结果表明:柬埔寨湄公河三角洲和Tonle Sap Lake地区是低洼的,平坦,温和的通道梯度和水面渐变,使水位和面积(或体积)之间的关系平滑。与流入相比,湄公河和洞赤河河的信道储存能力并不够,因此巨大的洪水平原极为易于淹没,使左右银行之间的洪水关系变得非常复杂。 Tonle Sap Lake是一个季节性淡水湖,流入和流动,与湄公河的水交换的时序和强度与Tonle Sap Lake的出口部分的水流阻力密切相关Tonle Sap River,可以反映在河湖水位差异和Tonle Sap River的水位。受到河湖形态特征的影响,湄公河和凉席湖泊之间的水交换强度很大。 Tonle Sap Lake每年距湄公河洪水卷(397亿M〜(3))储存14.4%,而且还为湄公河提供29.7%的干水(694亿M〜(3))。受洪泛区调整的影响,湄公河和凉席湖的水位波动缓慢,水位的上升和下垂率与洪泛平原储存区呈正相关。研究成果将有助于了解湄公河和凉席湖湖泊之间的关系机制,为柬埔寨湄公河三角洲和凉席湖区的综合治理提供了科学依据。

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