Long-term daily water temperatures unveil escalating water warming and intensifying heatwaves in the Odra river Basin, Central Europe

IF 8.5 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geoscience frontiers Pub Date : 2024-08-20 DOI:10.1016/j.gsf.2024.101916
Jiang Sun , Fabio Di Nunno , Mariusz Sojka , Mariusz Ptak , Quan Zhou , Yi Luo , Senlin Zhu , Francesco Granata
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Abstract

Water temperature is a critical indicator and weathervane of aquatic ecosystems. However, the vast majority of rivers lack long-term continuous and complete water temperature datasets. In this study, ensemble models by combining NARX (nonlinear autoregressive network with exogenous inputs) and air2stream were used to reconstruct daily river water temperatures for 27 hydrological stations in the Odra River Basin, one of the largest river systems in Europe. For each hydrological station, both the NARX and air2stream models were calibrated and validated, and the better-performed model was selected to reconstruct daily river water temperatures from 1985 to 2022. The results showed that hybrid modeling by combining NARX and air2stream is promising for reconstructing daily river water temperatures. Based on the reconstructed dataset, annual and seasonal trends of water temperature and characteristics of river heatwaves were evaluated. The results indicated that annual river water temperatures showed a consistent warming trend over the past 40 years with an average warming rate of 0.315 °C/decade. Seasonal river water temperatures indicated that summer warms faster, followed by autumn and spring, and winter river water temperatures showed an insignificant warming trend. River heatwaves are increased in frequency, duration, and intensity in the Odra River Basin, and 6 out of 27 hydrological stations have river heatwaves categorized as ‘severe’ and ‘extreme’, suggesting that mitigation measures are needed to reduce the impact of climate warming on aquatic systems. Moreover, results showed that air temperature is the major controller of river heatwaves, and river heatwaves tend to intensify with the warming of air temperatures.

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长期日水温揭示了中欧奥德拉河流域水温升高和热浪加剧的情况
水温是水生生态系统的重要指标和风向标。然而,绝大多数河流都缺乏长期连续和完整的水温数据集。本研究采用 NARX(具有外生输入的非线性自回归网络)和 air2stream 组合模型,重建了欧洲最大河流系统之一奥德拉河流域 27 个水文站的每日河流水温。对每个水文站的 NARX 模型和 air2stream 模型都进行了校准和验证,并选择性能较好的模型来重建 1985 年至 2022 年的每日河流水温。结果表明,结合 NARX 和 air2stream 的混合模型在重建河流日水温方面具有良好的前景。根据重建的数据集,评估了水温的年度和季节变化趋势以及河流热浪的特征。结果表明,在过去 40 年中,河流年水温呈持续变暖趋势,平均变暖速率为 0.315 ℃/十年。季节性河流水温表明,夏季变暖较快,其次是秋季和春季,冬季河流水温变暖趋势不明显。奥德拉河流域的河流热浪在频率、持续时间和强度上都有所增加,27 个水文站中有 6 个将河流热浪归类为 "严重 "和 "极端",这表明需要采取减缓措施来减少气候变暖对水生系统的影响。此外,研究结果表明,气温是河流热浪的主要控制者,河流热浪往往随着气温的升高而加剧。
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来源期刊
Geoscience frontiers
Geoscience frontiers Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
17.80
自引率
3.40%
发文量
147
审稿时长
35 days
期刊介绍: Geoscience Frontiers (GSF) is the Journal of China University of Geosciences (Beijing) and Peking University. It publishes peer-reviewed research articles and reviews in interdisciplinary fields of Earth and Planetary Sciences. GSF covers various research areas including petrology and geochemistry, lithospheric architecture and mantle dynamics, global tectonics, economic geology and fuel exploration, geophysics, stratigraphy and paleontology, environmental and engineering geology, astrogeology, and the nexus of resources-energy-emissions-climate under Sustainable Development Goals. The journal aims to bridge innovative, provocative, and challenging concepts and models in these fields, providing insights on correlations and evolution.
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