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Ecological Optimal Operation of Hydropower Stations to Maximize Total Phosphorus Export

机译:水电站的生态最佳运行,最大限度地磷原

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摘要

Abstract Cascade reservoirs have interrupted the distribution and transportation of nutrients, which brings environmental and ecological problems. However, the current ecological operation methods focusing on the hydrologic regime cannot solve these problems. This paper presents an ecological optimal operation method that aims at restoring the transport pattern of biogenic substances. First, this paper establishes an optimization model that combines multiobjective reservoir operations with a dynamic mass balance calculation of total phosphorus (TP), taking the maximum TP export as the ecological objective, and a traditional model taking hydrologic regime as the ecological objective for further comparison. Then, the upper Mekong River Basin (i.e., the Lancang River Basin) is taken as a case study to investigate the competitive relationship between power generation and TP export under varying minimum outputs. The mechanism of TP export is then analyzed and the concept of optimum period for TP export is proposed. The results and analyses show that a competitive relationship between the power generation originates from the differences between the optimal operation processes for maximum TP export and maximum power generation. Lower water level, lower flow in nonflood season, and higher flow in flood season, especially in the optimum period for TP export are conducive to TP export. This method is then compared to the traditional method, which considers hydrologic regimes as the ecological objective under different conditions. The results show that reservoirs with higher sedimentation coefficient and larger capacity should consider more about the biogenic substances; otherwise, the hydrologic regime and biogenic substances can be substituted for each other to some extent.
机译:摘要级联水库中断了营养的分布和运输,带来了环境和生态问题。然而,目前专注于水文制度的生态运行方法无法解决这些问题。本文提出了一种生态最佳运行方法,旨在恢复生物物质的运输模式。首先,本文建立了一种优化模型,将多目标储层运算与总磷(TP)的动态质量平衡计算相结合,以最大的TP出口作为生态目标,以及传统模型采用水文制度作为生态目标进行进一步比较。 。然后,上湄公河流域(即澜沧江盆地)作为一个案例研究,探讨了不同最小产出下发电和TP出口之间的竞争关系。然后分析了TP输出的机制,提出了TP输出最佳期限的概念。结果和分析表明,发电之间的竞争关系来自最佳TP导出和最大发电的最佳运行过程之间的差异。较低的水位,较低流动的非污水季节,洪水季节较高,特别是在TP出口最佳期间有利于TP出口。然后将该方法与传统方法进行比较,这将水文制度视为不同条件下的生态物镜。结果表明,具有较高沉降系数和更大容量的储层应更多地考虑生物原质;否则,水文制度和生物原质可以在一定程度上彼此取代。

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