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Effects of temperature-control curtain on algae biomass and dissolved oxygen in a large stratified reservoir: Sanbanxi Reservoir case study

机译:温控帷幕对大型分层水库藻类生物量和溶解氧的影响:三板溪水库案例研究

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A temperature-control curtain (TCC) is a new technique of selective withdrawal for controlling the outflow temperature of a reservoir. A TCC can significantly affect the reservoir hydrodynamic and thermal structure, but its effects on water quality and ecology remain unknown. In this study, we developed and calibrated a hydrothermal-water quality model to numerically analyze how a TCC located 1 km from a dam affected algal biomass and water quality in a reservoir. According to our results, when a TCC was used, the mean annual chlorophyll a (Chl-a) concentrations in the reservoir decreased. Chl-a concentrations remained constant during the heating period until normal water levels were reached, and increased during the cooling period and decreased until yearend drawdown levels were reached. The dissolved oxygen (DO) concentrations decreased and the anoxic proportions increased throughout the year. The yearly mean Chl-a and DO concentrations in the reservoir declined continuously as the water-retaining proportion (P-r) of the TCC increased from 0 to 87.5%, while the anoxic proportion (DO < 2 mg/L) first increased and then decreased, peaking at a P-r of 62.5%. The change patterns of the anoxic proportion were consistent with those of thermal stability, demonstrating the applicability of thermal stability in predicting reservoir hypoxia. Moreover, the environmental impact of TCCs will increase under global warming, and TCCs can mitigate the increased algal biomass and further decrease DO in warmer climate conditions. Under a medium-high climate scenario, Representative Concentration Pathway 6.0, and a TCC having 75% P-r, the yearly mean Chl-a, DO concentrations, and anoxic proportions of Sanbanxi Reservoir are predicted to reach 10.7 mu g/L, 4.2 mg/L, and 39.6%, respectively, by 2046-2065. Thus, changes in the water environment and ecology (particularly the likely deterioration of water quality because of selective withdrawal under global warming) should be considered as a component of water management practices.
机译:温控帘(TCC)是一种选择性抽取的新技术,用于控制储层的流出温度。 TCC可以显着影响储层的水动力和热力结构,但是其对水质和生态的影响仍然未知。在这项研究中,我们开发并校准了水热水质量模型,以数值分析距水坝1公里处的TCC如何影响水库中的藻类生物量和水质。根据我们的结果,使用TCC时,储层中的年均叶绿素a(Chl-a)浓度降低。 Chl-a浓度在加热期间一直保持恒定,直到达到正常水位,在冷却期间增加,而在达到年末下降水平之前降低。全年溶解氧(DO)浓度降低,缺氧比例增加。随着TCC的持水率(Pr)从0增加到87.5%,储层中的年平均Chl-a和DO浓度连续下降,而缺氧率(DO <2 mg / L)先上升然后下降,在Pr为62.5%时达到峰值。缺氧比例的变化规律与热稳定性一致,证明了热稳定性在预测储层缺氧中的适用性。此外,在全球变暖下,TCC的环境影响将增加,TCC可以减轻藻类生物量的增加,并在气候变暖的条件下进一步降低DO。在中高气候情景下,代表浓度途径6.0和Pr含量为75%的TCC,三板溪水库的年平均Chl-a,DO浓度和缺氧比例预计将达到10.7μg/ L,4.2 mg / L到2046-2065年分别为L和39.6%。因此,应将水环境和生态的变化(特别是由于全球变暖导致选择性抽水而使水质下降)视为水管理实践的一部分。

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