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A new generation of small hydro and pumped-hydro power plants: Advances and future challenges

机译:新一代小型水力发电厂和水力发电厂:进步与未来挑战

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Hydropower is not only a renewable and sustainable energy source, but its flexibility and storage capacity also makes it possible to improve grid stability and to support the deployment of other intermittent renewable energy sources such as wind and solar power. As a result, a renewed interest in pumped-hydro energy storage plants (PHES) and a huge demand for the rehabilitation of old small hydropower plants are emerging globally.As regards PHES, advances in turbine design are required to increase plant performance and flexibility and new strategies for optimizing storage capacity and for maximizing plant profitability in the deregulated energy market have to be developed.During the upgrading of old small hydropower plants, the main challenges to be faced are the design of new runners, that had to match the existing stationary parts, and the development of optimal sizing and management strategies to increase their economic appeal.This paper traces an overview of the prospects of pumped-hydro energy storage plants and small hydro power plants in the light of sustainable development. Advances and future challenges in both turbine design and plant planning and management are proposed. PHES and hybrid wind/solar-PHES are illustrated and discussed, as well as the limits and peculiarities of the new design strategies, based on computational fluid dynamics, for both PHES and small hydropower plants.
机译:水力发电不仅是可再生和可持续的能源,而且其灵活性和存储容量还可以提高电网的稳定性,并支持其他间歇性可再生能源的部署,例如风能和太阳能。因此,全球对抽水蓄能电站(PHES)的兴趣重新兴起,对旧的小型水力发电厂的修复需求也很大.PHES方面需要涡轮机设计方面的进步以提高电站的性能和灵活性,在放松管制的能源市场中,必须开发出优化存储容量和最大化工厂盈利的新策略。在旧的小型水力发电厂升级期间,面临的主要挑战是新水轮的设计,必须与现有的水轮机相匹配。零件,并制定最佳的规模和管理策略以增加其经济吸引力。本文从可持续发展的角度对抽水蓄能电站和小型水电站的前景进行了概述。提出了涡轮机设计以及工厂规划和管理方面的进步和未来挑战。对PHES和混合风/太阳能PHES进行了说明和讨论,以及基于计算流体动力学的PHES和小型水电站新设计策略的局限性和特殊性。

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