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Comparison of spatial-temporal distribution characteristics of water temperatures between Lancang River and Mekong River

机译:澜沧江与湄公河水温时空分布特征比较

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摘要

Water temperature (WT) is one of the important indicators of water body physical properties. Understanding the characteristics of spatial-temporal variation on WT in the river continuum will help to develop the rational river-water-resource utilization plan, to avoid the possible ecology crisis, and to take full advantages of the natural resources in the involved region. As the biggest international river continuum in Asia, the Lancang-Mekong river subregion (known as Greater Mekong Subregion, GMS) has become a famous economic, political, and ecological natural territory. This study examined the spatial-temporal distribution characteristics of the Lancang River water. temperature, using the observational data of WT values from 11 hydrological stations in 1960s. Furthermore, the WT differences between Yunjinghong hydrological station (one representative station in China) and Chiang Saen hydrological station (one representative station in Thailand) were analyzed. Results indicated that: 1) Water temperature was higher in the lower part of the river continuum than the upper part. Latitude variation is the main influencing factor. This effect is more obvious in dry season than in rainy season, more obvious in winter than in summer, and more obvious of the average minimum WT than the average maximum WT, 2) WT difference between the upper and the lower parts of the river continuum was decreasing due to little increase of WT in the upper part (Yunjinghong hydrological station) and obvious decrease of the WT in the lower part (Chiang Saen hydrological station) during the research period. Therefore, the parameters of WT are affected by the latitude, and the Lancang-Mekong river continuum lies in the north-south direction, so the tropical aquatic creatures, such as the tropical aquatic fishes, cannot survive in the upper part of this river continuum in winter season, while in summer season, the tropical aquatic creatures properly swim to the upper stream. The water temperature in the lower Mekong River is mainly influenced by the regional water temperature and regional climate change.
机译:水温(WT)是水体物理性质的重要指标之一。了解河流连续体中WT的时空变化特征将有助于制定合理的河流水资源利用计划,避免可能发生的生态危机,并充分利用所涉地区的自然资源。作为亚洲最大的国际河流连续体,澜沧江-湄公河次区域(大湄公河次区域,GMS)已成为著名的经济,政治和生态自然地区。本研究考察了澜沧江水域的时空分布特征。利用1960年代11个水文站的WT值的观测数据。此外,分析了云景洪水文站(中国的一个代表站)和清盛水文站(泰国的一个代表站)之间的WT差异。结果表明:1)河流连续体下部的水温高于上部。纬度变化是主要影响因素。这种影响在旱季比雨季更明显,冬季比夏季更明显,并且平均最小WT比平均最大WT更为明显,2)河流连续体上下部分的WT差异在研究期内,由于上部(云景洪水文站)的WT几乎没有增加,而下部(清盛水文站)的WT却明显减少,因此,水的含量有所下降。因此,WT的参数受纬度的影响,澜沧江-湄公河的连续体位于南北方向,因此热带水生生物(如热带水生鱼类)无法在该河流连续体的上部生存。在冬季,而在夏季,热带水生生物会适当地游向上游。湄公河下游的水温主要受区域水温和区域气候变化的影响。

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