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Geotechnical Feasibility Analysis of Compressed Air Energy Storage (CAES) in Bedded Salt Formations: a Case Study in Huai'an City, China

机译:层状盐岩层中压缩空气储能(CAES)的岩土工程可行性分析:以淮安市为例

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The lower reaches of the Yangtze River is one of the most developed regions in China. It is desirable to build compressed air energy storage (CAES) power plants in this area to ensure the safety, stability, and economic operation of the power network. Geotechnical feasibility analysis was carried out for CAES in impure bedded salt formations in Huai'an City, China, located in this region. First, geological investigation revealed that the salt groups in the Zhangxing Block meet the basic geological conditions for CAES storage, even though the possible unfavorable characteristics of the salt formations include bedding and different percentages of impurities. Second, mechanical tests were carried out to determine the mechanical characteristics of the bedded salt formations. It is encouraging that the samples did not fail even when they had undergone large creep deformation. Finally, numerical simulation was performed to evaluate the stability and volume shrinkage of the CAES under the following conditions: the shape of a single cavern is that of a pear; the width of the pillar is adopted as two times the largest diameter; three regular operating patterns were adopted for two operating caverns (internal pressure 9-10.5 MPa, 10-11.5 MPa, and 11-12.5 MPa), while the other two were kept at high pressure (internal pressure 10.5, 11.5, and 12.5 MPa) as backups; an emergency operating pattern in which two operating caverns were kept at atmospheric pressure (0.1 MPa) for emergency while the backups were under operation (9-10.5 MPa), simulated for 12 months at the beginning of the 5th year. The results of the analysis for the plastic zone, displacement, and volume shrinkage support the feasibility of the construction of an underground CAES power station.
机译:长江下游是中国最发达的地区之一。期望在该区域中建立压缩空气能量存储(CAES)发电厂,以确保电网的安全性,稳定性和经济运行。在该地区的中国淮安市,对不纯层状盐岩层中的CAES进行了岩土工程可行性分析。首先,地质调查表明,张兴区块的盐基满足了CAES储存的基本地质条件,尽管盐层可能的不利特征包括层理和不同百分比的杂质。第二,进行机械测试以确定层状盐岩层的机械特性。令人鼓舞的是,即使样品经历了大的蠕变变形,它们也不会失效。最后,在以下条件下进行了数值模拟,以评估CAES的稳定性和体积收缩率:单个洞穴的形状为梨的形状;柱子的宽度采用最大直径的两倍。对于两个工作洞穴(内部压力9-10.5 MPa,10-11.5 MPa和11-12.5 MPa)采用了三种常规的工作模式,而另外两个则保持高压(内部压力10.5、11.5和12.5 MPa)作为备份;一种紧急操作模式,其中两个操作洞穴在大气压(0.1 MPa)下保持紧急状态,而备用设备在操作中(9-10.5 MPa),在第5年开始时模拟了12个月。塑性区,位移和体积收缩的分析结果支持地下CAES电站建设的可行性。

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