School of Water Conservancy, North China University of Water Resources and Electric Power, Zhengzhou 450046, China.
Int J Environ Res Public Health. 2021 Nov 16;18(22):12039. doi: 10.3390/ijerph182212039.
Water temperature, as one of the important water environment impact factors, has a significant impact on the survival and development of aquatic organisms. We selected water temperature data (1959-2017) from four key hydrological stations in the Yangtze River: Cuntan, Yichang, Hankou, and Datong. We analyzed the characteristics and variability of the Yangtze River hydrothermal regime by the Mann-Kendall method, wavelet analysis, and by the IHA-RVA method to analyze hydrothermal regime variations of the Yangtze River, and the response mechanisms of fish to variations in hydrothermal regimes were explored. The results show that (1) The annual average water temperature of the Yangtze River is warming, and Cuntan Station, Yichang Station, Hankou Station, and Datong Station have a sudden increase in temperature in 2002, 1995, 2003, and 2004, and the periodicity analysis demonstrates that Cuntan, Yichang, and Datong stations all have main periods of 24~32 years; (2) The overall variations of 32 hydrothermal indicators at Cuntan Station and Yichang Station reached 65% and 61%, which are close to the height variation; (3) With the construction of the Three Gorges Dam, the stagnant cooling effect caused the arrival date of the upper reproduction water temperature of "The four major fish species" to be delayed by about 23 days, and the stagnant heat effect caused the arrival date of the Chinese sturgeon reproduction upper limit water temperature to be delayed by about 30 days.
水温作为重要的水环境影响因素之一,对水生生物的生存和发展具有重要影响。本研究选取长江干流寸滩、宜昌、汉口和大通四个关键水文站 1959—2017 年的水温数据,采用 Mann-Kendall 法、小波分析和 IHA-RVA 方法分析长江水热情势特征及其变化,探讨鱼类对水热情势变化的响应机制。结果表明:(1)长江年平均水温呈升温趋势,且寸滩、宜昌、汉口和大通站在 2002 年、1995 年、2003 年和 2004 年出现突增升温现象,周期性分析表明寸滩、宜昌和大通站均存在 24~32 年的主周期;(2)寸滩站和宜昌站 32 项水热指标整体变化率达到 65%和 61%,接近极值变化;(3)三峡工程蓄水后,水体的滞温效应使“四大家鱼”上溯繁殖水温到达时间推迟了约 23 d,滞暖效应使中华鲟繁殖上限水温到达时间推迟了约 30 d。