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Pressure response of large-scale compressed air energy storage in porous formations

机译:多孔形成中大规模压缩空气储存的压力响应

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Large-scale compressed air energy storage (CAES) in porous formations can contribute to compensate the strong daily fluctuations in renewable energy production. This work presents a hypothetical CAES scenario using a representative geological anticlinal structure in Northern Germany and performs numerical simulations to estimate pressure response in the storage formation. The results show that the induced pressure changes laterally throughout the storage formation are due to initial fill of the air storage. Because of high air compressibility, the pressure fluctuations caused by daily cyclic operation can only be observed in the gas phase which reaches a distance of roughly 500 m.
机译:多孔形成的大规模压缩空气储能(CAES)可以有助于补偿可再生能源生产中的强劲日常波动。 这项工作呈现了在德国北部代表地质逆线结构的假设CAE场景,并执行数值模拟以估计存储形成的压力响应。 结果表明,由于空气储存的初始填充,诱导压力横向变化。 由于空气压缩性高,只能在气相中观察到由日常循环操作引起的压力波动,其达到大约500μm的距离。

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