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Modeling of temperature and turbidity in a natural lake and a reservoir connected by pumped-storage operations

机译:通过抽水作业连接的天然湖泊和水库的温度和浊度建模

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摘要

Pumped-storage (PS) systems are used to store electric energy as potential energy for release during peak demand. We investigate the impacts of a planned 1000 MW PS scheme connecting Lago Bianco with Lago di Poschiavo (Switzerland) on temperature and particle mass concentration in both basins. The upper (turbid) basin is a reservoir receiving large amounts of fine particles from the partially glaciated watershed, while the lower basin is a much clearer natural lake. Stratification, temperature and particle concentrations in the two basins were simulated with and without PS for four different hydrological conditions and 27 years of meteorological forcing using the software CE-QUAL-W2. The simulations showed that the PS operations lead to an increase in temperature in both basins during most of the year. The increase is most pronounced (up to 4℃) in the upper hypolimnion of the natural lake toward the end of summer stratification and is partially due to frictional losses in the penstocks, pumps and turbines. The remainder of the warming is from intense coupling to the atmosphere while water resides in the shallower upper reservoir. These impacts are most pronounced during warm and dry years, when the upper reservoir is strongly heated and the effects are least concealed by floods. The exchange of water between the two basins relocates particles from the upper reservoir to the lower lake, where they accumulate during summer in the upper hypolimnion (10 to 20 mg L~(-1)) but also to some extent decrease light availability in the trophic surface layer.
机译:抽水蓄能(PS)系统用于将电能存储为势能,以在高峰需求期间释放。我们调查了计划中的将Lago Bianco与Lago di Poschiavo(瑞士)连接起来的1000 MW PS方案对两个盆地中温度和颗粒质量浓度的影响。上部(浑浊的)盆地是一个储水池,从部分冰川化的流域接收大量细颗粒,而下部盆地则是一个更为清晰的天然湖泊。使用CE-QUAL-W2软件,在有和没有PS的情况下,针对四种不同的水文条件和27年的气象强迫,模拟了两个盆地的分层,温度和颗粒浓度。模拟显示,PS的操作导致一年中大部分时间两个盆地的温度升高。在夏季分层结束时,天然湖泊的上层水平面的上升最为明显(最高4摄氏度),部分原因是压力管道,泵和涡轮机的摩擦损失。其余的变暖来自与大气的强烈耦合,而水则滞留在较浅的上部水库中。这些影响在温暖和干燥的年份最为明显,这时上部水库被强烈加热,洪水淹没的影响最小。两个盆地之间的水交换将颗粒从上层水库转移到下层湖中,它们在夏季聚集在上层水层中(10至20 mg L〜(-1)),但在一定程度上也会降低颗粒物的光利用率。营养表面层。

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  • 来源
    《Water resources research》 |2012年第8期|p.W08508.1-W08508.19|共19页
  • 作者单位

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Surface Waters-Research and Management, Seestrasse 79, CH-6047 Kastanienbaum, Switzerland,Institute of Biogeochemistry and Pollutant Dynamics, ETH Zurich, Zurich, Switzerland;

    Swiss Federal Institute of Aquatic Science and Technology, Surface Waters-Research and Management, Seestrasse 79, CH-6047 Kastanienbaum, Switzerland,Institute of Biogeochemistry and Pollutant Dynamics, ETH Zurich, Zurich, Switzerland, Institute of Geological Sciences, University of Bern, Bern, Switzerland;

    Institute of Biogeochemistry and Pollutant Dynamics, ETH Zurich, Zurich, Switzerland,Eawag: Swiss Federal Institute of Aquatic Science and Technology, Surface Waters-Research and Management, Kastanienbaum, Switzerland,Physics of Aquatic Systems Laboratory, ENAC, EPFL, Lausanne, Switzerland;

    Eawag: Swiss Federal Institute of Aquatic Science and Technology, Surface Waters-Research and Management, Kastanienbaum, Switzerland;

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