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Pumped-storage hydropower plants with underground reservoir: Influence of air pressure on the efficiency of the Francis turbine and energy production

机译:带有地下水库的抽水蓄能电站:气压对混流式水轮机效率和能源生产的影响

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Closed mines can be used as lower reservoirs of Underground Pumped-Storage Hydropower (UPSH) plants. The excavation of ventilation shafts is necessary to allow the exhalation of the trapped air which is displaced during the turbine process. This paper analyzes the influence of air pressure in the lower reservoir due to the energy losses in the ventilation shafts on the overall energy production. Analytical and three-dimensional CFD numerical models (using VOF formulation for two-phase flow) have been developed in order to know the influence of the air pressure on the turbine operation for the first time. The results obtained show that depending on the usual designs of the ventilation system, the pressure inside the reservoir may vary between 0.67 and 42 mH(2)O. The increase in pressure implies a reduction in the available net head and therefore, the stored energy decreases. The reduction in the generation of electricity could reach up to 62 MWh/cycle (12.5% of the available energy) for an installation of a Francis turbine with a flow rate at full load of 55 m(3)/s and 214 MW of power with a single air duct of 0.5 m in diameter. Economically, this would imply losses of more than 1.12 M(sic)/year. (C) 2019 Elsevier Ltd. All rights reserved.
机译:封闭的矿井可用作地下抽水蓄能水电站(UPSH)的下部水库。通风井的开挖是必要的,以允许排出在涡轮机过程中排出的滞留空气。本文分析了由于通风井中的能量损失而引起的下部储层中的气压对总能量产生的影响。为了首次了解气压对涡轮机运行的影响,已经开发了解析和三维CFD数值模型(使用VOF公式表示两相流)。获得的结果表明,根据通风系统的常规设计,储气罐内的压力可能在0.67至42 mH(2)O之间变化。压力的增加意味着可用净水头的减少,因此,存储的能量减少。对于安装有满载流量为55 m(3)/ s和214 MW功率的弗朗西斯涡轮机,发电量的减少可能会达到每周期62 MWh(可用能量的12.5%)单根风管直径为0.5 m。从经济上讲,这意味着每年将损失超过1.12 M(sic)。 (C)2019 Elsevier Ltd.保留所有权利。

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