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首页> 外文期刊>Proceedings of the IEEE >Ocean Renewable Energy Storage (ORES) System: Analysis of an Undersea Energy Storage Concept
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Ocean Renewable Energy Storage (ORES) System: Analysis of an Undersea Energy Storage Concept

机译:海洋可再生能源存储(ORES)系统:海底能源存储概念分析

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摘要

Due to its higher capacity factor and proximity to densely populated areas, offshore wind power with integrated energy storage could satisfy $>$ 20% of U.S. electricity demand. Similar results could also be obtained in many parts of the world. The offshore environment can be used for unobtrusive, safe, and economical utility-scale energy storage by taking advantage of the hydrostatic pressure at ocean depths to store energy by pumping water out of concrete spheres and later allowing it to flow back in through a turbine to generate electricity. The storage spheres are an ideal complement to energy harvesting machines, such as floating wind turbines (FWTs). The system could provide near-base-load-quality utility-scale renewable energy and do double duty as the anchoring point for the generation platforms. Analysis indicates that storage can be economically feasible at depths as shallow as 200 m, with cost per megawatt hour of storage dropping until 1500 m before beginning to trend upward. The sweet spot occurs when the concrete wall thickness to withstand the hydrostatic pressure provides enough ballast mass, and this will depend on the strength of used concrete and reinforcement. In addition, the required concrete would use significant amounts of fly ash from coal-fired power plants, and the spheres can serve as artificial reefs.
机译:由于具有更高的容量因子并靠近人口稠密的地区,具有集成储能功能​​的海上风电可以满足 $> $ 20美国电力需求的百分比。在世界许多地方也可以获得类似的结果。通过利用海洋深处的静水压力通过将水从混凝土球体中抽出并随后允许其通过涡轮机流回去以储存能量,可以将海上环境用于不显眼,安全且经济的公用事业规模的能源存储。发电。存储领域是诸如风力涡轮机(FWT)之类的能量收集机的理想补充。该系统可以提供接近基本负荷质量的公用事业规模的可再生能源,并可以作为发电平台的锚点。分析表明,在浅至200 m的深度进行存储在经济上是可行的,每兆瓦时的存储成本在开始上升之前一直下降到1500 m。当混凝土壁厚承受静水压力提供足够的压载质量时,就会出现最佳点,这取决于所用混凝土和钢筋的强度。此外,所需的混凝土将使用大量燃煤发电厂产生的粉煤灰,并且球体可以用作人造礁石。

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