North China University of Water Resources and Electric Power, Zhengzhou 450045, China.
Key Laboratory for Environment and Disaster Monitoring and Evaluation of Hubei Province, Innovation Academy for Precision Measurement Science and Technology, CAS, Wuhan 430077, China.
Sci Total Environ. 2022 Oct 1;841:156598. doi: 10.1016/j.scitotenv.2022.156598. Epub 2022 Jun 8.
Water temperature is a major driver of riverine ecosystems and has an extremely significant impact on them. Understanding the multi-scale water temperature dynamics in a river basin is critical to analyze the water temperature status of rivers. In this study, the intra-annual and inter-annual time series of water temperature (WT) at Yichang station in the middle reaches of the Yangtze River over the past 62 years was analyzed using complex Morlet wavelet functions to reveal the complex structure of water temperature variation at multiple time scales. The ecological impact of water temperature changes on the reproduction of the "Four Major Chinese Carp" under the influence of the Three Gorges Dam (TGD). The results showed that the water temperature at Yichang Station has a multi-level time scale structure, with an increasing trend at the inter-annual scale from 1956 to 2017, but different variations at the seasonal scale, and the water temperature cycles at both the inter-annual and seasonal scales have time scale variations of about 8-14 years and 4-7 years, with obvious characteristics of WT variation stages. The inter-annual and summer scales will have low WT in 2017-2022 and high WT in 2023-2027, while the other seasonal scales will have high WT in the next few years, either in the short or medium term. The correlation between air temperature and WT is the most significant among the three drivers of air temperature, flow and rainfall, and the correlation between WT and the air temperature is the most significant in winter scale under the influence of the Three Gorges Dam construction. Since the completion of TGD in 2003, the summer drainage temperature has decreased and the breeding period of the "Four Major Chinese Carp" has been shortened by 30-40 days compared to that before the construction of TGD. The results of this study can be used as a basis for further exploration of the formation mechanism of river water temperature and provide a scientific basis for river ecological protection.
水温是河流生态系统的主要驱动因素,对其具有极其重要的影响。了解流域内多尺度水温动态对于分析河流水温状况至关重要。本研究采用复 Morlet 小波函数分析了过去 62 年来长江中游宜昌站水温的年内和年际时间序列,揭示了多时间尺度水温变化的复杂结构。三峡大坝(TGD)对“四大家鱼”繁殖的水温变化的生态影响。结果表明,宜昌站水温具有多层次的时间尺度结构,1956 年至 2017 年年际尺度呈上升趋势,但季节尺度存在不同的变化,年际和季节尺度的水温周期具有约 8-14 年和 4-7 年的时间尺度变化,具有明显的 WT 变化阶段特征。2017-2022 年,年际和夏季尺度的水温将较低,2023-2027 年水温将较高,而未来几年其他季节尺度的水温将较高,无论是短期还是中期。在气温、流量和降雨三个驱动因素中,气温与水温的相关性最为显著,而在三峡大坝建设的影响下,冬季水温与气温的相关性最为显著。自 2003 年三峡大坝建成以来,与大坝建设前相比,夏季排水温度降低,“四大家鱼”的繁殖期缩短了 30-40 天。本研究结果可作为进一步探索河流水温形成机制的基础,并为河流生态保护提供科学依据。