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Opportunities and barriers to pumped-hydro energy storage in the United States

机译:美国抽水蓄能的机遇和障碍

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As concerns about global warming grow, societies are increasingly turning to the use of intermittent renewable energy resources, where energy storage becomes more and more important Pumped-hydro energy storage (PHES) is the most established technology for utility-scale electricity storage. Although PHES has continued to be deployed globally, its development in the United States has largely been dormant since the 1990s. In recent years, however, there has been a revival of commercial interests in developing PHES facilities. In this paper we examine the historical development of PHES facilities in the United States, analyze case studies on the controversies of disputed projects, examine the challenges to and conflicting views of future development in the United States, and discuss new development activities and approaches. The main limiting factors for PHES appear to be environmental concerns and financial uncertainties rather than the availability of technically feasible sites. PHES developers are proposing innovative ways of addressing the environmental impacts, including the potential use of waste water in PHES applications. In some cases, a properly designed PHES system can even be used to improve water quality through aeration and other processes. Such new opportunities and the increasing need for greater energy storage may lead policymakers to reassess the potential of PHES in the United States, particularly for coupling with intermittent renewable energy sources such as wind and solar power.
机译:随着人们对全球变暖问题的日益关注,社会越来越多地使用间歇性可再生能源,在这种情况下,储能变得越来越重要。抽水蓄能技术(PHES)是公用事业规模储能的最成熟技术。尽管PHES继续在全球范围内部署,但自1990年代以来,其在美国的发展一直处于停滞状态。但是,近年来,开发PHES设施的商业利益正在复苏。在本文中,我们研究了美国PHES设施的历史发展,分析了有争议的项目争议的案例研究,研究了美国未来发展的挑战和观点冲突,并讨论了新的发展活动和方法。 PHES的主要限制因素似乎是环境问题和财务不确定性,而不是技术上可行的站点的可用性。 PHES开发人员正在提出解决环境影响的创新方法,包括在PHES应用中潜在使用废水。在某些情况下,经过适当设计的PHES系统甚至可以用于通过曝气和其他过程来改善水质。此类新机遇以及对更大能量存储需求的增长可能导致决策者重新评估美国PHES的潜力,尤其是与间歇性可再生能源(例如风能和太阳能)结合使用时。

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