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评价不同环境水资源配置方案对干旱半干旱地区典型浅水湖泊水位的影响:基于综合模拟方法的视角。

Evaluating the influence of different environmental water allocation schemes on the water level of a typical shallow lake in semiarid regions: From the perspective of an integrated modeling approach.

机构信息

Beijing Key Laboratory of Urban Hydrological Cycle and Sponge City Technology, College of Water Sciences, Beijing Normal University, Beijing, 100875, China.

Beijing Key Laboratory of Urban Hydrological Cycle and Sponge City Technology, College of Water Sciences, Beijing Normal University, Beijing, 100875, China.

出版信息

Environ Res. 2022 Sep;212(Pt B):112991. doi: 10.1016/j.envres.2022.112991. Epub 2022 Apr 1.

Abstract

Many lakes in semiarid regions around the world rely on environmental water allocation to maintain the health of the lake ecosystem. However, under changing environments, the competition for water resources between human society and natural ecosystems has intensified. How to manage environmental water allocation more reasonably and precisely has become an important issue. The largest lake on the North China Plain, Baiyangdian Lake (BYDL), is a typical lake facing such challenges. To provide feasible strategies for sustainable water allocation to BYDL, with the proper parameterization of hydrological processes, this study developed a 10-day temporal scale lake water level prediction model to quantify how environmental water allocation regulates the BYDL water level under different hydroclimatic conditions. Evaluation of model performance revealed that environmental water allocation rather than natural climatic periodicity dominates the variation in the BYDL water level. The model structure could be further improved with consideration of more detailed observations of both the surface runoff entering BYDL and the water area beneath the canopy of the reeds in BYDL. Analysis of 72 model simulation scenarios indicated that water allocations from multiple sources are indispensable and that the water resources that guarantee maintaining the BYDL water level within the ecologically suitable range vary substantially under different hydroclimatic conditions. More elaborate allocation plans are required both to improve the water quality and health of the aquatic ecosystem of BYDL and to reduce the risk of flooding. The findings from this study are valuable for guiding the implementation of environmental water allocations to lakes in semiarid regions worldwide.

摘要

许多世界上半干旱地区的湖泊依赖于环境水资源分配来维持湖泊生态系统的健康。然而,在不断变化的环境下,人类社会和自然生态系统对水资源的竞争加剧。如何更合理、更精确地管理环境水资源分配已成为一个重要问题。中国北方平原最大的湖泊白洋淀(BYDL)就是面临此类挑战的典型湖泊之一。为了为 BYDL 的可持续水资源分配提供可行的策略,本研究在适当参数化水文过程的基础上,开发了一个 10 天时间尺度的湖泊水位预测模型,以量化在不同水文气候条件下环境水资源分配如何调节 BYDL 水位。模型性能评估表明,环境水资源分配而不是自然气候周期性主导着 BYDL 水位的变化。通过考虑更详细的白洋淀表面径流输入和芦苇冠层下水面的观测,可以进一步改进模型结构。对 72 个模型模拟情景的分析表明,多源水资源分配是必不可少的,在不同的水文气候条件下,保证 BYDL 水位在生态适宜范围内的水资源也有很大差异。需要更精细的分配计划,以改善白洋淀水生生态系统的水质和健康,并降低洪水风险。本研究的结果对于指导世界范围内半干旱地区湖泊环境水资源分配的实施具有重要价值。

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