面对气候变化,利用混合分布分析通过规划大坝水库后的水流变化:波兰尼萨河案例研究

IF 3.1 Q2 WATER RESOURCES
Łukasz Gruss, M. Wiatkowski, M. Połomski, Łukasz Szewczyk, P. Tomczyk
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引用次数: 0

摘要

气候变化和极端天气事件有可能增加洪水和水文干旱的发生。大坝水库的运行可以减轻或加剧这种影响。本研究旨在评估在水文条件和气候变化的背景下,规划中的Kamieniec Ząbkowicki大坝水库对Nysa Kłodzka河流量模式的影响。在研究中,利用40年的一系列水文观测资料,在数值模型中模拟了河谷水流的变化。本文对天然河谷和同一河谷加设水库坝进行了模拟。流动模拟表明,大坝运行增加了下游流量值,减少了极端高流量事件的变异性。此外,混合对数正态分布表明,大坝的运行导致低流量和极端高流量事件的变异性减小。此外,该模型还表明,在大坝建设前后,中流条件保持相对稳定和相似。Mann-Kendall趋势试验、Sen斜率趋势试验和创新趋势分析表明,大坝对水流趋势有显著影响,减少了负向趋势。这种水工结构可以稳定和调节流量,特别是在应对气候变化时。这些发现突出了大坝在减轻洪水风险和支持水资源管理方面的有效性。考虑大坝在适应气候变化影响的水文条件变化中的作用是至关重要的。在实际应用中,水库管理对水流的有效调节至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Changes in Water Flow after Passing through the Planned Dam Reservoir Using a Mixture Distribution in the Face of Climate Change: A Case Study of the Nysa Kłodzka River, Poland
Climate change and extreme weather events have the potential to increase the occurrences of flooding and hydrological droughts. Dam reservoir operation can mitigate or aggravate this impact. This study aims to evaluate the influence of the planned Kamieniec Ząbkowicki dam reservoir on the flow patterns of the Nysa Kłodzka river in the context of changing hydrological conditions and climate change. In the study, a 40-year observational series of hydrological data was used to simulate changes in water flow through the river valley in a numerical model. This simulation was conducted both for the natural river valley and for the same river valley but with the added reservoir dam. Flow simulations revealed that dam operation increased downstream flow values, reducing variability in extreme high-flow events. Addition, the mixture log-normal distribution shows that the operation of the dam resulted in a reduction in the variability of both low flows and extreme high-flow events. Furthermore, the model illustrates that moderate-flow conditions remain relatively stable and similar before and after dam construction. The Mann–Kendall trend test, Sen slope trend test and Innovative Trend Analysis indicated that the dam had a significant impact on flow trends, reducing the negative trend. This hydrotechnical structure stabilizes and regulates flows, especially in response to climate-induced changes. These findings highlight the effectiveness of the dam in mitigating flood risk and supporting water resource management. It is essential to consider the role of the dam in adapting to changing hydrological conditions influenced by climate change. For practical application, efficient flow regulation by reservoir administration is crucial.
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来源期刊
Hydrology
Hydrology Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.90
自引率
21.90%
发文量
192
审稿时长
6 weeks
期刊介绍: Journal of Hydrology publishes original research papers and comprehensive reviews in all the subfields of the hydrological sciences, including water based management and policy issues that impact on economics and society. These comprise, but are not limited to the physical, chemical, biogeochemical, stochastic and systems aspects of surface and groundwater hydrology, hydrometeorology, hydrogeology and hydrogeophysics. Relevant topics incorporating the insights and methodologies of disciplines such as climatology, water resource systems, ecohydrology, geomorphology, soil science, instrumentation and remote sensing, data and information sciences, civil and environmental engineering are within scope. Social science perspectives on hydrological problems such as resource and ecological economics, sociology, psychology and behavioural science, management and policy analysis are also invited. Multi-and interdisciplinary analyses of hydrological problems are within scope. The science published in the Journal of Hydrology is relevant to catchment scales rather than exclusively to a local scale or site. Studies focused on urban hydrological issues are included.
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