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首页> 外文期刊>Journal of Environmental Management >Coupled reservoir-river systems: Lessons from an integrated aquatic ecosystem assessment
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Coupled reservoir-river systems: Lessons from an integrated aquatic ecosystem assessment

机译:耦合水库 - 河流系统:综合水生生态系统评估的课程

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Sustainable reservoir-river management requires balancing complex trade-offs and decision-making to support both human water demands and ecological function. Current numerical simulation and optimization algorithms can guide reservoir-river operations for optimal hydropower production, irrigation, nutrient management, and municipal consumption, yet much less is known about optimization of associated ecosystems. This ten-year study demonstrates an ecosystem assessment approach that links the environmental processes to an ecosystem response in order to evaluate the impact of climatic forcing and reservoir operations on the aquatic ecosystems of a coupled headwater reservoir-river system. The approach uses a series of numerical, statistical, and empirical models to explore reservoir operational flexibility aimed at improving the environmental processes that support aquatic ecosystem function. The results illustrate that understanding the seasonal biogeochemical changes in reservoirs is critical for determining environmental flow releases and the ecological trajectory of both the reservoir and river systems. The coupled models show that reservoir management can improve the ecological function of complex aquatic ecosystems under certain climatic conditions. During dry hydrologic years, the high post-irrigation release can increase the downstream primary and macroinvertebrate production by 99% and 45% respectively. However, this flow release would reduce total fish biomass in the reservoir by 16%, providing management tradeoffs to the different ecosystems. Additionally, low post-irrigation flows during the winter season supports water temperature that can maintain ice cover in the downstream river for improved ecosystem function. The ecosystem assessment approach provides operational flexibility for large infrastructure, supports transparent decision-making by management agencies, and facilitates framing of environmental legislation.
机译:可持续水库 - 河流管理需要平衡复杂的权衡和决策,以支持人类需求和生态功能。目前的数值模拟和优化算法可以指导最佳水电站生产,灌溉,营养管理和城市消费的储层运营,但有关相关生态系统的优化,尚不少。这个十年的研究表明了一种将环境流程与生态系统响应联系起来的生态系统评估方法,以评估气候迫使和储层运营对耦合边缘水库 - 河流系统的水生生态系统的影响。该方法采用一系列数值,统计和实证模型来探索旨在改善水生生态系统功能的环境流程的水库运营灵活性。结果说明了解储层中的季节性生物地球化学变化对于确定储层和河流系统的环境流释放和生态轨迹至关重要。耦合模型表明,水库管理可以在某些气候条件下提高复杂水生生态系统的生态功能。在干水文岁月中,高后释放释放可以将下游原发性和大型脊椎动物产量增加99%和45%。然而,这种流动释放将减少储层总鱼生物量16%,为不同生态系统提供管理权衡。此外,冬季期间的低后灌流流动支持水温,可以在下游河中维持冰盖以改善生态系统功能。生态系统评估方法为大型基础设施提供操作灵活性,支持管理机构的透明决策,并促进环境立法的框架。

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